Publications

List of publications

2026

  1. Fluks M., Rak A., Ajduk A. 2026. Cytoplasmic movement velocity in unfertilized mouse oocytes: a supportive but not definitive marker of embryo quality. Theriogenology. 251:117725.
    doi:10.1016/j.theriogenology.2025.117725
  2. Winek E., Szczepańska K., Bednarek M., Wolińska-Nizioł L., Suwińska A. 2026. Reduced activin A levels impair urogenital system development and compromise female mouse fertility. Mol Hum Reprod. 32(1):gaag007.
    doi:10.1093/molehr/gaag007
  3. Antczak W., Szpila M., Sałas K., Daszczuk P., Linke V., Miączyńska M., Dziembowski A., Gewartowska O. 2026. Degron models: a toolbox for rapid in vivo depletion of essential proteins regulating mRNA metabolism. Commun Biol.
    doi:10.1038/s42003-026-09828-z
  4. Kuliński T.M., Gewartowska O., Mahé M., Kasztelan K., Durys N., Stroynowska-Czerwińska A., Jedynak-Slyvka M., Owczarek E.P., Chaudhury D., Nowotny M., Pękowska A., Séraphin B., Dziembowski A. 2026. DIS3 mutations enhance AID-driven translocations during B-cell activation, promoting transformation to multiple myeloma. Nat Commun.
    doi:10.1038/s41467-026-70386-3
  5. Spiewla T., Czubak K., Pilch Z., Baranowski M.R., Krawczyk P.S., Affek K., Antczak W., Szulc-Gasiorowska M., Chmielinski S., Mroczek S., Brouze M., Nowis D., Golab J., Dziembowski A., Jemielity J., Kowalska J. 2026. PolyA tail segmentation improves the stability of the template DNA and increases the translatability of in vitro transcribed mRNA. Nucleic Acids Res. 54(2):gkaf1412.
    doi:10.1093/nar/gkaf1412

2025

  1. Morawski M., Krasnodębski M., Rochoń J., Kubiszewski H., Marzęcki M., Topyła D., Murat K., Staszewski M., Szczytko J., Maleszewski M., Grąt M. 2025. Decellularized liver matrices for expanding the donor pool – evaluation of existing protocols and future trends. Biomolecules 15, 98.
    doi:10.3390/biom15010098
  2. Kłos M., Maleszewski M. 2025. Zwierzęta modyfikowane genetycznie jako źródło organów do ksenotransplantacji. Kosmos 74, 37-57.
    doi:10.12775/KOSMOS.2025.004
  3. Krawczyk K., Leszczyńska Z., Maleszewski M. 2025. Regression of trophectodermal protrusions in the mouse blastocyst correlates with primitive endoderm formation. Anim. Sci. Pap. Rep., 43, 511-520.
    doi:10.2478/aspr-2025-0032
  4. Ajduk A., Tamborski S., Szkulmowski M. 2025. Optical Coherence Microscopy for Oocyte Imaging. Methods Mol Biol. 2946:87-102.
    doi:10.1007/978-1-0716-4658-8_7
  5. Trela-Kobędza E., Ajduk A. 2025. The impact of bisphenol A and its analogs on female reproductive health. Reprod Biol. 25(3):101028.
    doi:10.1016/j.repbio.2025.101028
  6. Winek E., Szczepańska K., Wolińska-Nizioł L., Zgódka K., Vaskovicova M., Drutovic D., Suwińska A. 2025. Maternal/zygotic knockout and droplet digital polymerase chain reaction analysis question the role of activin A in preimplantation mouse embryo development. Biol Reprod. 113(6):1375-1389.
    doi:10.1093/biolre/ioaf189
  7. Winek E., Wolińska-Nizioł L., Szczepańska K., Szpakowska A., Gewartowska O., Wysocka I., Grzesiak M., Suwińska A. 2025. Zygotic activin A is dispensable for the mouse preimplantation embryo development and for the derivation and pluripotency of embryonic stem cells. Biol Reprod. 2025 Jan 14;112(1):31-45.
    doi:10.1093/biolre/ioae156
  8. Kompaníková P., Attri K., Czimer D., Hubiernatorova A., Trela-Kobędza E., Zimčík D. 2025. Advancing developmental biology in Central Europe: report from the V4SDB meeting 2025. Biol Open. 2025 Dec 15;14(12):bio062360.
    doi:10.1242/bio.062360
  9. Gumińska N., Pauzin F.P., Kuźniewska B., Miłek J., Wardaszka-Pianka P., Krawczyk P.S., Mroczek S., Jeleń S., Pagenhart P.U., Bramham C.R., Dziembowski A., Dziembowska M. 2025. Polyadenylation landscape of in vivo long-term potentiation in the rat brain. RNA. 31(12):1712-1734.
    doi:10.1261/rna.080485.125
  10. Wasinska-Kalwa M., Mamot A., Czubak K., Frankowska K., Rajkiewicz A.A., Spiewla T., Warminski M., Pilch Z., Szulc-Gasiorowska M., Siekan K., Dziembowski A., Nowis D., Golab J., Kowalska J., Jemielity J. 2025. Chemical circularization of in vitro transcribed RNA for exploring circular mRNA design. Nat Commun. 16(1):6455.
    doi:10.1038/s41467-025-61775-1
  11. Krawczyk P.S., Mazur M., Orzeł W., Gewartowska O., Jeleń S., Antczak W., Kasztelan K., Brouze A., Matylla-Kulińska K., Gumińska N., Tarkowski B., Owczarek E.P., Affek K., Turowski P., Tudek A., Sroka M., Śpiewla T., Kusio-Kobiałka M., Wesołowska A., Nowis D., Golab J., Kowalska J., Jemielity J., Dziembowski A, Mroczek S. 2025. Re-adenylation by TENT5A enhances efficacy of SARS-CoV-2 mRNA vaccines. Nature. 641(8064):984-992.
    doi:10.1038/s41586-025-08842-1
  12. Brouze M., Szpila M., Czerwińska A., Antczak W., Mroczek S., Kuliński T.M., Hojka-Osińska A., Cysewski D., Gewartowska O., Adamska D., Gruchota J., Borsuk E., Dziembowski A. 2025. DIS3L, cytoplasmic exosome catalytic subunit, is essential for development but not cell viability in mice. RNA. 31(5):646-662.
    doi:10.1261/rna.080350.124
  13. Gumińska N., Matylla-Kulińska K., Krawczyk P.S., Maj M., Orzeł W., Mackiewicz Z., Brouze A., Mroczek S., Dziembowski A. 2025. Direct profiling of non-adenosines in poly(A) tails of endogenous and therapeutic mRNAs with Ninetails. Nat Commun. 16(1):2664.
    doi:10.1038/s41467-025-57787-6
  14. Czarnocka-Cieciura A., Brouze M., Gumińska N., Mroczek S., Gewartowska O., Krawczyk P.S., Dziembowski A. 2025. Comprehensive analysis of poly(A) tails in mouse testes and ovaries using Nanopore Direct RNA Sequencing. Sci Data. 12(1):43.
    doi:10.1038/s41597-024-04226-8
  15. Filimonow K, Szczepańska K, Meglicki M, Wolińska-Nizioł L, Suwińska A, Maleszewski M. 2025. Downregulation of Pecam-1 is insufficient to redefine embryonic stem cells’ fate toward PrE in chimaeric mouse blastocysts. Theriogenology 234:1–8.
    doi:10.1016/j.theriogenology.2024.11.022

2024

  1. Czarnocka-Cieciura A., Poznański J., Turtola M., Tomecki R., Krawczyk P.S., Mroczek S., Orzeł W., Saha U., Jensen T.H., Dziembowski A., Tudek A. 2024. Modeling of mRNA deadenylation rates reveal a complex relationship between mRNA deadenylation and decay. EMBO J. 43(24):6525-6554.
    doi:10.1038/s44318-024-00258-3
  2. Krawczyk P.S., Tudek A., Mroczek S., Dziembowski A. 2024.Transcriptome-Wide Analysis of mRNA Adenylation Status in Yeast Using Nanopore Sequencing. Methods Mol Biol. 2024;2723:193-214.
    doi:10.1007/978-1-0716-3481-3_12
  3. Krawczyk K., Oślislok M., Gałązkiewicz A., Szpila M., Maleszewski M. 2024. Cell number regulation occurs during the pre-gastrulation period of postimplantation development in double chimeric mouse embryos. Int. J. Dev. Biol. 68: 127-133
    doi:10.1387/ijdb.240138mm
  4. Brouze M., Czarnocka-Cieciura A., Gewartowska O., Kusio-Kobiałka M., Jachacy K., Szpila M., Tarkowski B., Gruchota J., Krawczyk P., Mroczek S., Borsuk E., Dziembowski A. 2024. TENT5-mediated polyadenylation of mRNAs encoding secreted proteins is essential for gametogenesis in mice. Nat Commun. 22;15(1):5331.
    doi:10.1038/s41467-024-49479-4
  5. Rydzanicz M., Kuzniewska B., Magnowska M., Wójtowicz T., Stawikowska A., Hojka A., Borsuk E., Meyza K., Gewartowska O., Gruchota J., Miłek J., Wardaszka P., Chojnicka I., Kondrakiewicz L., Dymkowska D., Puścian A., Knapska E., Dziembowski A., Płoski R., Dziembowska M. 2024. Mutation in the mitochondrial chaperone TRAP1 leads to autism with more severe symptoms in males. EMBO Mol Med. 16(11):2976-3004.
    10.1038/s44321-024-00147-6
  6. Winek E., Wolińska-Nizioł L., Szczepańska K., Szpakowska A., Gewartowska O., Wysocka I., Grzesiak M., Suwińska A. 2024. Zygotic activin A is dispensable for the mouse preimplantation embryo development and for the derivation and pluripotency of embryonic stem cells. Biology of Reproduction,2024 Nov;16(11):2976-3004.
    10.1093/biolre/ioae156
  7. Soszyńska A, Krawczyk K, Szpila M, Winek E, Szpakowska A, Suwińska A. 2024. Exposure of chimaeric embryos to exogenous FGF4 leads to the production of pure ESC-derived mice. Theriogenology. Jul 1;222:10-21.
    doi:10.1016/j.theriogenology.2024.03.017
  8. Fluks M, Milewski R, Tamborski S, Szkulmowski M, Ajduk A. Spindle shape and volume differ in high- and low-quality metaphase II oocytes. Reproduction. 2024 Mar 19;167(4):e230281.
    doi: 10.1530/REP-23-0281
  9. Sobkowiak A, Fluks M, Kosyl E, Milewski R, Szpila M, Tamborski S, Szkulmowski M, Ajduk A. 2024. The number of nuclei in compacted embryos, assessed by optical coherence microscopy, is a non-invasive and robust marker of mouse embryo quality. Mol Hum Reprod. Mar 28;30(4)
    doi:10.1093/molehr/gaae012
  10. Morawiec S., Ajduk A., Stremplewski P., Kennedy B.F, Szkulmowski M. 2024. Full-field optical coherence microscopy enables high-resolution label-free imaging of the dynamics of live mouse oocytes and early embryos. Commun Biol. 2024 Aug 27;7(1):1057
    doi:10.1038/s42003-024-06745-x
  11. Fluks M., Collier R., Walewska A., Bruce A., Ajduk A. 2024. How great thou ART: biomechanical properties of oocytes and embryos as indicators of quality in assisted reproductive technologies. Front. Cell Dev. Biol., 12, 1342905.
    doi:10.3389/fcell.2024.1342905

2023

  1. Trela E., Walewska A. 2023. Developmental Biology: from genes to functional organism – news from the 3rd Meeting of the Visegrád Group Society for Developmental Biology. Int J Dev Biol. 2023;67(4):109-114
    doi:10.1387/ijdb.230228et
  2. Czajkowska K, Ajduk A. 2023. Mitochondrial activity and redox status in oocytes from old mice: The interplay between maternal and postovulatory aging. Theriogenology. Jul 1;204:18-30.
    doi:10.1016/j.theriogenology.2023.03.022
  3. Filimonow, K. Bańska, M.M., Maleszewski, M. 2023. Localization of embryonic stem cells lacking E-cadherin in mouse blastocyst. Anim. Sci. Pap. Rep., 41, 281-292.
    doi:10.2478/aspr-2023-0012
  4. Soszyńska, A., Filimonow, K., Wigger, M., Wołukanis, K., Gross, A., Szczepańska, K., Suwińska, A. 2023. Multi-level Fgf4- and apoptosis-dependent regulatory mechanism ensures the plasticity of ESC-chimaeric mouse embryo. Development, 150
    doi:10.1242/dev.201756
  5. Dobosz, A.M., Janikiewicz, J.,Krogulec, E.A., Ajduk,A., Szpila, M., Nieznańska, H., Szczepankiewicz,A.A., Wypych,D., Dobrzyn, A. 2023. Inhibition of stearoyl-CoA desaturase 1 in the mouse impairs pancreatic islet morphogenesis and promotes loss of β-cell identity and α-cell expansion in the mature pancreas. Mol. Metab. 67,101659.
    doi:10.1016/j.molmet.2022.101659

2022

  1. Kuzniewska, B., Rejmak, K., Nowacka, A., Ziółkowska, M., Milek, J., Magnowska, M., Gruchota, J., Gewartowska, O., Borsuk, E., Salamian, A., Dziembowski, A., Radwanska, K., Dziembowska, M. 2022. Disrupting interaction between miR-132 and Mmp9 3’UTR improves synaptic plasticity and memory in mice. Front. Mol. Neurosci. 15, 924534.
    doi:10.3389/fnmol.2022.924534
  2. Boiani M, Duncan FE, on behalf of the MHR-ISSCR guidelines working group (in alphabetical order: Ajduk A, Bolcun-Filas E, Bowles J, Lodde V, Menkhorst E, Roelen B, Wallingford M, Wistuba J) 2022. A reproductive science perspective: deliberations on the stem cell guidelines update. Mol Hum Reprod. 28, gaac008.
    doi:10.1093/molehr/gaac008
  3. Borsuk, E., Michalkiewicz, J., Kubiak,J.Z., Kloc, M. 2022. Histone Modifications in Mouse Pronuclei and Consequences for Embryo Development. In: “Results and Problems in Cell Differentiation”, vol.70, eds.Jacek Z. Kubiak and Małgorzata Kloc, Springer Nature Switzerland AG, pp. 397-418.
    doi:10.1007/978-3-031-06573-6
  4. Krawczyk, K., Wilczak, K., Szczepańska, K., Maleszewski, M., Suwińska, A. 2022. Paracrine interactions through FGFR1 and FGFR2 receptors regulate the development of preimplantation mouse chimaeric embryo. Open Biol., 11, 220193.
    doi:10.1098/rsob.220193
  5. Fluks, M., Tamborski, Sz., Szkulmowski, M., Ajduk, A. 2022. Optical coherence microscopy allows for quality assessment of immature mouse oocytes. Reproduction
    doi:10.1530/REP-22-0178

2021

  1. Graham, C.F., Windsor, S., Ajduk, A., Trinh, T., Vincent, A., Jones, C., Coward, K., Kalsi D, Zernicka-Goetz, M., Swann, K., Thomas, A.L.R. 2021. Dynamic shapes of the zygote and two-cell mouse and human. Biol. Open, 10, bio059013.
    doi:10.1242/bio.059013
  2. Suwińska, A., Winek, E. 2021. Chimery z udziałem pluripotentnych komórek macierzystych jako narzędzie w badaniach biomedycznych. Post. Biochem., 67, 395-409.
    doi:10.18388/pb.2021_414
  3. Ajduk, A., Sadkowska, M., Gronek, Z., Płocienniak, A., Stodulska, A. 2021. Plastic — (nie)fantastic? O wpływie bisfenolu A na funkcjonowanie oocytów i zarodków ssaków. Post. Biochem., 67, 349-361.
    doi:10.18388/pb.2021_413
  4. Krawczyk, K., Kosyl, E., Częścik-Łysyszyn, K., Wyszomirski, T., Maleszewski. M. 2021. Developmental capacity is unevenly distributed among single blastomeres of 2-cell and 4-cell stage mouse embryos. Sci. Rep., 11, 21422.
    doi:10.1038/s41598-021-00834-1
  5. Filimonow, K., Wawrzyniak, M., Maleszewski, M. 2021. Injection of higher DNA concentration into pronucleus as putative troubleshooting for generating transgenic mice. Anim. Sci. Pap. Rep., 39, 225-235.
    PDF
  6. Bora, P., Gahurova, L., Mašek, T., Hauserova, A., Potěšil, D., Jansova, D., Susor, A., Zdráhal, Z., Ajduk, A., Pospíšek M., & Bruce A.W. 2021. p38-MAPK-mediated translation regulation during early blastocyst development is required for primitive endoderm differentiation in mice. Communications Biology, 4, 788.
    doi:10.1038/s42003-021-02290-z

2020

  1. Czajkowska, K., Walewska, A., Ishikawa, T. Szczepańska, K., Ajduk, A. 2020. Age-related alterations in fertilization-induced Ca2+ oscillations depend on the genetic background of mouse oocytes. Biol. Reprod., 103, 986-999.
    doi:10.1093/biolre/ioaa139
  2. Bilska, A., Kusio-Kobiałka, M., Krawczyk, P.S., Gewartowska, O., Tarkowski, B., Kobyłecki, K., Nowis, D., Golab, J., Gruchota, J.,Borsuk, E., Dziembowski, A., Mroczek, S. 2020. Immunoglobulin expression and the humoral immune response is regulated by the non-canonical poly(A) polymerase TENT5C. Nat Commun. 27, 2032.
    doi:10.1038/s41467-020-15835-3
  3. Yamauchi, Y., Ajduk, A., Ward, M.A. 2020. Oocytes from female mice on MF1 genetic background are not suitable for assisted reproduction. Biol. Reprod.
    doi:10.1093/biolre/ioz224
  4. Szpila, M., Humięcka, M., Bożyk, K., Paterczyk, B., Suwińska, A., Maleszewski, M., Tarkowski, AK. 2020. Attempts to obtain fully xenogeneic fetuses in rat↔mouse model. Biol. Reprod., 102, 499-510.
    doi:10.1093/biolre/ioz185

2019

  1. Szpila, M., Walewska, A., Sabat-Pośpiech, D., Strączyńska, P., Ishikawa, T., Milewski, R., Szczepańska, K., Ajduk, A. 2019. Postovulatory ageing modifies sperm-induced Ca2+ oscillations in mouse oocytes through a conditions-dependent, multi-pathway mechanism. Sci. Rep., 9, 11859.
    doi:10.1038/s41598-019-48281-3
  2. Fluks, M,, Szczepańska, K., Ishikawa, T., Ajduk, A. 2019. Transcriptional status of mouse oocytes corresponds with their ability to generate Ca2+ release. Reproduction, 157: 465–474
    doi:10.1530/REP-18-0625
  3. Ajduk, A., Szkulmowski, M. 2019. Light microscopy of mammalian gametes and embryos: methods and applications. Int. J. Dev. Biol., 63: 235-244.
    doi:10.1387/ijdb.180300aa
  4. Soszyńska, A., Klimczewska., K., Suwińska, A. 2019. FGF/ERK signaling pathway: how it operates in mammalian preimplantation embryos and embryo-derived stem cells. Int. J. Dev. Biol., 63: 171-186.
    doi:10.1387/ijdb.180408as
  5. Fishel, S., Hadjantonakis, A-K., Plusa, B., Rienzi, L., Yamanaka, Y., Suwińska, A., Ajduk, A. 2019. Breakthroughs and challenges of modern developmental biology and reproductive medicine. Int. J. Dev. Biol., 63: 77-82.
    doi:10.1387/ijdb.180398aa
  6. Suwińska, A., Ajduk, A. 2019. Early mammalian development: from basic research to the clinic. Int. J. Dev. Biol., 63: 73-75.
    doi:10.1387/ijdb.180409as
  7. Ajduk, A., Duncan, E.J. 2019. From genes to environment in shaping of an embryo: understanding embryonic-extraembryonic interactions at the BSDB autumn meeting in Oxford. Dev. Genes Evolution.
    doi:10.1007/s00427-019-00628-6
  8. Filimonow, K., Saiz, N., Suwińska, A., Wyszomirski, T., Grabarek, J.B., Ferretti, E., Piliszek, A., Plusa, B., Maleszewski, M. 2019. ­No evidence of involvement of E-cadherin in cell fate specification or the segregation of Epi and PrE in mouse blastocysts. PLOS One, 14(2)e0212109.
    doi:10.1371/journal.pone.0212109

2018

  1. Borsuk, E., Kubiak, J.Z. 2018. In vitro culture of mouse oocytes for meiotic maturation. In: Mouse Oocyte Development: Methods and Protocols, Methods in Molecular Biology, vol. 1818. ed. by M-H. Verlhac and M-E Terret, Springer Verlag, pp. 13-21
    doi:10.1007/978-1-4939-8603-3_2
  2. Milewski, R., Szpila, M., Ajduk, A.M. 2018. Dynamics of cytoplasm and cleavage divisions correlates with preimplantation embryo development. Reproduction, 155, 1-14
    doi:10.1530/REP-17-0230
  3. Klimczewska, K., Kasperczuk, A., Suwińska, A. 2018. The regulative nature of mammalian embryos. Curr. Top. Dev. Biol., 128:105-149
    doi:10.1016/bs.ctdb.2017.10.010

2017

  1. Wigger, M., Świtoń, K., Filimonow, K., Plusa, B., Maleszewski, M., Suwinska, A. 2017. Plasticity of the inner cell mass in mouse blastocyst is restricted by the activity of FGF/MAPK pathway. Sci. Rep., 7, 15136
    doi:10.1038/s41598-017-15427-0
  2. Mroczek S., Chlebowska J., Kuliński T.M., Gewartowska O., Gruchota J., Cysewski D., Liudkovska V., Borsuk E., Nowis D., Dziembowski A. 2017. The non-canonical poly(A) polymerase FAM46C acts as an onco-suppressor in multiple myeloma. Nature Comm. 8:619
    doi:10.1038/s41467-017-00578-5
  3. Ajduk, A., Strauss, B., Pines, J., Zernicka-Goetz, M. 2017. Delayed APC/C activation extends the first mitosis of mouse embryos. Sci Rep.,7(1):9682.
    doi: 10.1038/s41598-017-09526-1
  4. Karnowski, K., Ajduk, A., Wieloch, B., Tamborski, S., Krawiec, K., Wojtkowski, M., Szkulmowski, M. 2017. Optical coherence microscopy as a novel, non-invasive method for the 4D live imaging of early mammalian embryos. Sci Rep.,7(1):4165.
    doi: 10.1038/s41598-017-04220-8
  5. Bożyk, K., Gilecka, K., Humięcka, M., Szpila, M., Suwińska, A., Tarkowski, A.K. 2017. Mouse↔rat aggregation chimaeras can develop to adulthood., Dev Biol., 427, 106-120.
    doi: 10.1016/j.ydbio.2017.05.002
  6. Milewski, R., Ajduk, A.M. 2017. Time-lapse imaging of cleavage divisions in embryo quality assessment. Reproduction, 154, R37–R53
    doi: 10.1530/REP-17-0004
  7. Kubiak, J.Z., Ciemerych, M.A., Żernicka-Goetz, M., Borsuk, E., Modliński, J.A., Maleszewski, E. 2017. Nulla Dies Sine Linea – Andrzej Krzysztof Tarkowski, embriolog, 1933-2016. Kosmos, 66, 1-5. PDF
  8. Humięcka, M., Szpila, M., Kłoś, P., Maleszewski, M., Szczepańska, K. 2017. Mouse blastomeres acquire ability to divide asymmetrically before compaction. PLOS One, 12(3): e0175032.
    doi:10.1371/journal.pone.0175032
  9. Borsuk E., Jachowicz J., Kloc M., Tassan J.P., Kubiak J.Z. Role of Cdc6 during oogenesis and early embryo development in mouse and Xenopus laevis. W “Signaling-mediated control of cell division” ed. Swathi Arur 59 tom seria Results and Problems in Cell Differentiation, Springer-Verlag (2017), str. 201-211
    doi:10.1007/978-3-319-44820-6_7
  10. Borsuk, E., Waksmundzka, M., Szczepańska, K., Ajduk, A., Maleszewski, M., Suwińska, A., Humięcka, M., Bożyk, K., Szpila, M., Czołowska, R., Rogulska, T., Ożdżeński, W., Modliński, J.A., Kubiak, J.Z., Ciemerych, M.A. 2017. In Memoriam – Prof. Andrzej Krzysztof Tarkowski (1933-2016)., Int J Dev Biol. 61,1-2.
    doi: 10.1387/ijdb.160422mm

2016

  1. Czajkowska, K., Ajduk, A. 2016. Wpływ starzenia na przebieg oscylacji [Ca2+]i w zapłodnionych oocytach ssaków. Postępy Nauk Medycznych, 29, 45-51.
  2. Ajduk, A., Zernicka-Goetz, M. 2016. Polarity and cell division orientation in the cleavage embryo: from worm to human. Mol. Hum. Rep., 22, 691-703.
    doi: 10.1093/molehr/gav068
  3. Humięcka, M., Krupa, M., Guzewska, M.M., Maleszewski, M., Suwińska, A. 2016. ESCs injected into the 8-cell stage mouse embryo modify pattern of cleavage and cell lineage specification. Mech. Develop., 141, 40-50.
    doi: 10.1016/j.mod.2016.06.002

2014

  1. El Dika M., Laskowska-Kaszub K., Koryto M., Dudka D., Prigent C., Tassan J-P, Kloc M., Polanski Z., Borsuk E., Kubiak J.Z. (2014) CDC6 controls dynamics of the first embryonic M-phase entry and progression via CDK1 inhibition. Dev. Biol. 396, 67- 80
    doi:10.1016/j.ydbio.2014.09.023
  2. Ajduk, A., Biswas Shivhare, S., Zernicka-Goetz, M. 2014. The basal position of nuclei is one pre-requisite for asymmetric cell divisions in the early mouse embryo. Dev. Biol., 392, 133-140.
    doi: 10.1016/j.ydbio.2014.05.009
  3. Kubiak, J.Z., Maleszewski, M. 2014. Prof. Andrzej K. Tarkowski – pionier embriologii eksperymentalnej ssaków, [Professor Andrzej K. Tarkowski – pioneer of experimental mammalian embryology]. Kosmos, 63, 149-153.
  4. Krupa, M., Mazur, E., Szczepańska, K., Filimonow, K., Maleszewski, M., Suwińska, A. 2014. Allocation of inner cells to epiblast vs. primitive endoderm in the mouse embryo is biased but not determined by the round of asymmetric divisions (8->16 and 16->32-cells). Dev. Biol., 385, 136-148.
    doi: 10.1016/j.ydbio.2013.09.008

2013

  1. Filimonow, K., Krupa, M., Suwińska, A. 2013. Pierwsze decyzje rozwojowe: różnicowanie komórek w przedimplantacyjnym zarodku. Post. Biochem., 59, 131 – 143
  2. Ajduk, A, Zernicka-Goetz, M. 2013. Quality control of embryo development. Molecular Aspects of Medicine.
    doi: 10.1016/j.mam.2013.03.001
  3. Balakier, H., Xiao, R., Zhao, J., Zaver, S., Dziak, E., Szczepanska, K., Opas, M., Yie, S., Librach, C. 2012. Expression of survivin in human oocytes and preimplantation embryos. Fertil. Steril. 99, 518-525.
    doi: 10.1016/j.fertnstert.2012.09.020
  4. Ajduk, A., Jędrusik, A., Zernicka-Goetz, M. 2013. Oocyte polarity and its developmental significance. In ‘Oogenesis’ ed. by Coticchio G. et al. Springer;
    doi: 10.1007/978-0-85729-826-3_18

2012

  1. Ajduk, A. 2012. Nadzieja z probówki. Wiedza i Życie, 12, 46-50.
  2. Vogt E.J., Meglicki M., Hartung K.I., Borsuk, E., Behr R. 2012. Importance of the pluripotency factor LIN28 in the mammalian nucleolus during early embryonic development. Development 139, 4514-4523
    doi: 10.1242/dev.083279
  3. Jaglarz M.K., Bazile F., Laskowska K., Polański Z., Chesnel F., Borsuk, E., Kloc M., Kubiak J.Z. 2012. Association of TCTP with centrosome and microtubules. Biochemistry Research International, vol. 2012, Article ID 541906, 8 pages, 2012.
    doi: 10.1155/2012/541906
  4. Ajduk, A., Zernicka-Goetz, M. 2012. Coming to terms. The Scientist, 12, 30-35.
  5. Ajduk, A., Zernicka-Goetz, M. 2012. Advances in embryo selection methods. F1000 Biology Reports, 4, 11
    doi: 10.3410/B4-11
  6. Suwińska, A. 2012. Preimplantation mouse embryo: developmental fate and potency of blastomeres. Results and Problems in Cell Differentiation, vol. 55, Mouse Development: From Oocyte to Stem Cells. Kubiak, J.Z. [ed.], Springer, pp. 141-163.
    doi: 10.1007/978-3-642-30406-4_8
  7. Kloc M., Ghobrial R., Borsuk E., Kubiak J.Z. 2012. Polarity and asymmetry during mouse oogenesis and oocyte maturation. Results and Problems in Cell Differentiation, vol. 55, Mouse Development: From Oocyte to Stem Cells. Kubiak, J.Z. [ed.], Springer, pp. 23-44.
    doi: 10.1007/978-3-642-30406-4_2
  8. Meglicki M., Teperek-Tkacz M., Borsuk E. 2012. Appearance and heterochromatin localization of HP1α in early mouse embryos depends on cytoplasmic clock and H3S10 phosphorylation. Cell Cycle 11(11), 2189-2205
    doi: 10.4161/cc.20705
  9. Kondratiuk, I., Bazydło, K., Maleszewski, M., Szczepańska, K. 2012. Delay of polarization event increases the number of Cdx2-positive blastomeres in mouse embryo. Dev. Biol. 368, 54-62.
    doi: 10.1016/j.ydbio.2012.05.013
  10. Maleszewski M., 2012. Tajemnice płci. Wiedza i Życie, 2, 54-57
  11. Marteil, G., Gagne, J-P., Borsuk, E., Richard-Parpaillon, L., Poirier, G.G., Kubiak, J.Z. 2012. Proteomics reveals a switch in CDK1-associated proteins upon M-phase exit during the Xenopus laevis oocyte to embryo transition. Int. J. Biochem. Cell Biol. 44, 53-64.
    doi: 10.1016/j.biocel.2011.09.003

2011

  1. Suwińska, A., Ciemerych, M.A. 2011. Factors regulating pluripotency and differentiation in early mammalian embryos and embryo-derived stem cells. Vitam. Horm., 87, 1-37.
    doi: 10.1016/B978-0-12-386015-6.00022-6
  2. Maleszewski, M. 2011. Zapłodnienie i zapłodnienie in vitro, [Fertilization and fertilization in vitro]. Kosmos, 60, 5-16.
  3. Szczepańska, K., Stańczuk, Ł., Maleszewski, M. 2011. Oct4 protein remains in trophectoderm until late stages of mouse blastocyst development. Reprod. Biol., 11, 145-156.
  4. Szczepańska, K., Stańczuk, Ł., Maleszewski, M. 2011. Isolated mouse inner cell mass is unable to reconstruct trophectoderm. Differentiation, 82, 1-8.
    doi: 10.1016/j.diff.2011.04.001

2010

  1. Tarkowski, A.K., Suwińska, A., Czołowska, R., Ożdżeński, W., 2010. Individual blastomeres of 16-and 32-cell mouse embryos are able to develop into foetuses and mice. Developmental Biology, 348, 190–198
    doi:10.1016/j.ydbio.2010.09.022
  2. Teperek-Tkacz M., Meglicki M., Pasternak M., Kubiak J.Z., Borsuk E., 2010. Phosphorylation of histone H3 serine 10 in early mouse embryos: Active phosphorylation at late S phase and differential effects of ZM447439 on first two embryonic mitoses. Cell Cycle, 9(23), 4674-87.
    doi:10.4161/cc.9.23.14023
  3. Bielak-Żmijewska A., Sikora-Polaczek, M., Nieznański, K., Mosieniak,G., Kolano, A., Maleszewski, M., Styrna, J., Sikora E., 2010. Curcumin disrupts meiotic and mitotic divisions through spindle impairment and inhibition of cdk1 activity. Cell Prolif., 43, 354-364.
    doi:10.1111/j.1365-2184.2010.00684.x
  4. Żyłkiewicz, E., Nowakowska, J., Maleszewski, M. 2010. Decrease in CD9 content and reorganization of microvilli may contribute to the oolemma block to sperm penetration during fertilization of mouse oocyte. Zygote, 18, 195-201
    doi:10.1017/S0967199409990189
  5. Witkowska, A., Ciemerych, M.A., Suwińska, A. 2010. Ludzkie zarodkowe komórki macierzyste – regulacja pluripotencji i różnicowania. Post. Biol. Kom., 37, 23-40. (in Polish with short English abstract).
  6. Suwińska, A., Lenkiewicz, A. 2010. Pierwsze linie komórkowe w zarodku myszy – źródło zarodkowych komórek macierzystych. Post. Biol. Kom., 37, 3-21. (in Polish with short English abstract).
  7. Suwinska, A., Tarkowski, A.K., Ciemerych, M.A. 2010. Pluripotency of bank vole embryonic cells depends on FGF2 and activin A signaling pathways. Int. J. Dev.Biol., 54, 113-124
    doi: 10.1387/ijdb.082704as
  8. Borsuk, E., Czolowska, R. 2010. Factors engaged in reactivation of DNA replication in the nuclei of growing mouse oocytes introduced into the cytoplasm of parthenogenetic one-cell embryos. Int. J. Dev. Biol., 54, 21-31.
    doi: 10.1387/ijdb.092873eb

2009

  1. Borsuk, E. 2009. Regulation of transcription during mouse oocyte development. [w:] Cell Cycle and Development in Vertebrates, Research Signpost, Trivandrum, Kerala, India, pp. 159-180.
  2. Schneider, M., Förster, H., Seiler, A., Wehnes, H., Boersma, A., Sinowatz, F., Neumüller, C., Walch, A., Hrabé de Angelis, M., Wurst,W., Ursini, F., Roveri, A., Maleszewski, M., Maiorino, M., Conrad, M. 2009. Mitochondrial glutathione peroxidase 4 disruption causes male infertility. FASEB J., 23. 3233-3242.
  3. Maciejewska, Z., Polański, Z., Kisiel, K., Kubiak, J.Z., Ciemerych, M.A. 2009. Spindle assembly checkpoint-related failure perturbs early embryonic divisions and reduces reproductive performance of LT/Sv mice. Reproduction, 137, 931-942..
  4. Konopka, W., Duniec, K., Klejman, A., Wawrzyniak, M., Owczarek, D., Gawrys, L., Maleszewski, M., Mallet, J., Kaczmarek, L. (2009) Tet system in the brain: transgenic rats and lentiviral vectors approach. Genesis, 47, 274-280.

2008

  1. Ajduk, A., Ciemerych, M.A., Nixon, V., Swann, K., Maleszewski, M. 2008. Fertilization differently affects the levels of cyclin B1 and MPF activity in maturing and metaphase II mouse oocytes. Reproduction, 136, 741-752.
  2. Hupalowska, A., Kalaszczyńska, I., Hoffmann, S., Tsurumi, Ch., Kubiak,J.Z., Polański, Z., Ciemerych, M.A. 2008. Metaphase I arrest in LT/Sv mouse oocytes involves the spindle assembly checkpoint. Biol. Reprod., 79, 1102-1110.
  3. Suwińska, A., Czołowska, R., Ożdżeński, W., Tarkowski, A.K. 2008. Blastomeres of the mouse embryo lose totipotency after the fifth cleavage division: expression of Cdx2 and Oct4 and developmental potential of inner and outer blastomeres of 16- and 32-cell embryos. Dev. Biol., 332, 133-144.
  4. Bielak-Żmijewska, A., Kolano, A., Szczepańska, K., Maleszewski, M., Borsuk, E. 2008. Cdc42 protein acts upstream of IQGAP1 and regulates cytokinesis in mouse oocytes and embryos. Dev. Biol., 332, 21-32.
  5. Archacka, K., Ajduk, A., Pomorski, P., Szczepańska, K., Maleszewski, M., Ciemerych, M.A. 2008. Defective calcium release during fertilization of maturing LT/Sv oocytes. Int. J. Dev. Biol., 52, 903-912.
  6. Ajduk, A., Małagocki, A., Maleszewski, M. 2008. Cytoplasmic maturation of mammalian oocytes: development of a mechanism responsible for sperm-induced Ca2+ oscillations. Reproductive Biology, 8, 3-22.
  7. Ciemerych, M. A., Yu, Q., Szczepańska, K. Siciński, P. 2008. CDK4 activity in mouse embryos expressing a single D-type cyclin. Int. J. Dev. Biol., 52, 299-305.
  8. Kubiak, J.Z., Ciemerych, M.A., Hupałowska, A., Sikora-Polaczek, M., Polański, Z. 2008. On the transition from the meiotic to mitotic cell cycle during early mouse development. Int. J. Dev. Biol., 52, 201-217.
  9. Maleszewski, M., Tarkowski, A.K., 2008. Early mammalian embryo: my love. An interview with Andrzej K. Tarkowski. Int. J. Dev. Biol., 52, 163-169.
  10. Tarkowski, A.K., Maleszewski, M., Rogulska, T., Ciemerych, M.A., Borsuk, E. 2008. Mammalian and avian embryology at Warsaw University (Poland) from XIX century to the present. Int. J. Dev. Biol., 52, 121-134.
  11. Kloc, M., Maleszewski, M., Tarkowski, A. K. 2008. Developmental Biology in Poland. Preface. Int. J. Dev. Biol., 52: 93-96.
  12. Kubiak, J.Z., Chesnel, F., Richard-Parpaillon, L., Bazile, F., Pascal, A., Polanski, Z., Sikora-Polaczek, M., Maciejewska, Z., Ciemerych, M.A. 2008. Temporal regulation of the first mitosis in Xenopus and mouse embryos. Mol. Cell Endocrinol., 282, 63-69.
  13. Meglicki M., Zientarski M., Borsuk E. 2008. Constitutive heterochromatin during mouse oogenesis: the pattern of histone H3 modifications and localization of HP1a and HP1b proteins. Mol. Reprod. Dev., 75, 414-428.

2007

  1. Maleszewski, M. 2007. Komórki macierzyste – czy dzisiejsza wiedza potwierdza wiązane z nimi oczekiwania? [w:] Komórki macierzyste – mity i rzeczywistość, Ośrodek Wydawnictw Naukowych, Poznań str. 9 – 18.
  2. Ajduk, A. 2007. Rola jonów wapnia w aktywacji rozwoju zarodkowego ssaków. Post. Biol. Kom., 34, 713-727. (in polish with short english abstract).
  3. Yamauchi Y., Doe B., Ajduk A., Ward, M.A. 2007. Genomic DNA damage in mouse transgenesis. Biol. Reprod., 77, 803-812.
  4. Yamauchi Y., Ajduk A., Riel J.M., Ward M.A. 2007. Ejaculated and epididymal mouse spermatozoa are different in their susceptibility to nuclease-dependent DNA damage and in their nuclease activity. Biol. Reprod.,77, 636-647.
  5. Jędrusik, A., Ajduk, A., Pomorski, P., Maleszewski, M. 2007. Mouse oocytes fertilised by ICSI during in vitro maturation retain the ability to be activated after reinsemination in metaphase II and can generate Ca2+ oscillations. BMC Developmental Biology, 7, 72.
  6. Ćwiczenia z biologii rozwoju zwierząt (pod redakcją Marka Maleszewskiego). 2007. Wydawnictwa Uniwersytetu Warszawskiego. Str. 183.
  7. Świech Ł., Kisiel K., Czołowska R., Zientarski M., Borsuk E. 2007 Accumulation and dynamics of proteins of MCM family during mouse oogenesis and first embryonic cell cycle. Int. J. Dev. Biol., 51, 283-295.

2006

  1. Archacka, K., Ciemerych, M.A. 2006. Rola czynnika cytostatycznego w regulacji mejozy oocytów ssaków. Post. Biol. Kom., 33, 509-523. (in polish with short english abstract)
  2. Hiiragi, T., Alarcon, V., Fujimori, T., Louvet-Vallee, S., Maleszewski, M., Marikawa, Y., Maro, B., Solter, D. 2006. Where do we stand now? – mouse early embryo patterning meeting in Freiburg, Germany. 2005. Int. J. Dev. Biol., 50, 581-588.
  3. Waksmundzka, M., Wiśniewska, A., Maleszewski, M. 2006. Allocation of cells in mouse blastocyst is not determined by the order of cleavage of the first two blastomeres. Biol. Reprod., 75, 582-587.
  4. Ajduk, A., Yamauchi, Y., Ward, M. 2006. Sperm chromatin remodeling after intracytoplasmic sperm injection differs from that of in vitro fertilization. Biol. Reprod. 75,442-451.
  5. Sikora-Polaczek, M., Hupałowska, A.,Polański, Z., Kubiak, J.Z., Ciemerych, M.A. 2006. The first mitosis of the mouse embryo is prolonged by transitional metaphase arrest. Biol. Reprod. 74, 734-743.
  6. Komorowski, S., Baranowska, B., Maleszewski, M. 2006. CD9 protein appears on growing mouse oocytes at the time when they develop the ability to fuse with spermatozoa. Zygote, 14, 119-123.

2005

  1. Tarkowski, A.K., Jagiełło, K., Czołowska, R., Ożdżeński, W. 2005. Mouse chimaeras developed from electrofused blastocysts: new evidence for developmental plasticity of the inner cell mass. Int. J. Dev. Biol., 49, 909-914.
  2. Tarkowski, A.K., Ożdżeński, W., Czołowska, R. 2005. Identical triplets and twins developed from isolated blastomeres of 8- and 16-cell mouse embryos supported with tetraploid blastomeres. Int. J. Dev. Biol., 49, 825-832.
  3. Suwińska, A., Ożdżeński, W., Waksmundzka, M., Tarkowski, A.K. 2005. Experimentally produced diploid<->triploid mouse chimaeras develop up to adulthood. Mol. Reprod. Dev., 72, 362-376.
  4. Krukowska, A., Tarkowski, A.K. 2005. Mouse zygotes with one diploid pronucleus formed as a result of ICSI can develop normally beyond birth. Mol. Reprod. Dev., 72, 346-353.
  5. Yu, Q., Ciemerych, M.A., Siciński, P. 2005. Ras and Myc can drive oncogenic cell proliferation through individual D-cyclins. Oncogene, 24, 7114-7119.
  6. Szczepańska, K., Maleszewski, M. 2005. LKB1/PAR4 protein is asymmetrically localized in mouse oocytes and associates with meiotic spindle. Gene Expr. Patterns, 6, 86-93.
  7. Borsuk, E., Milik, E. 2005. Fully grown mouse oocyte contains transcription inhibiting activity which acts through histone deacetylation. Mol. Reprod. Dev. 71, 509-515.
  8. Ciemerych, M.A., Sicinski, P., 2005. Cell cycle in mouse development. Oncogene, 24, 2877-2898.

2004

  1. Maleszewski, M., Selwood, L., 2004. Induced parthenogenetic activation of ovulated oocytes of marsupial Sminthopsis macroura. Reprod. Fert. Dev., 16, 599-604.
  2. Chróścicka, A., Komorowski, S., Maleszewski, M. 2004. Both blastomeres of the mouse 2-cell embryo contribute to the embryonic portion of the blastocyst. Mol. Reprod. Dev. 68, 308-312.
  3. Ajduk, A., Maleszewski, M. 2004. Sperm-derived activating ability does not persist in mouse oocytes inseminated during in vitro maturation. Mol. Reprod. Dev. 68, 240-249.

2003

  1. Góźdź, A., Szczepańska-Sadowska, E., Maśliński, W., Kumosa, M., Szczepańska, K., Dobruch, J. 2003. Differential expression of vasopressin V1a and V1b receptors mRNA in the brain of renin transgenic TGR(mRen2)27 and Sprague-Dawley rats. Brain. Res. Bull., 59, 399-403.
  2. Komorowski, S., Szczepańska, K., Maleszewski, M. 2003. Sperm-induced and protease-induced oolemma block to sperm penetration have different mechanisms. Int. J. Dev. Biol., 47, 65-69.

2002

  1. Tarkowski, A.K. 2002. Flexibility and patterning in early mammalian development: a dilemma for embryologist. A Commemorative Lecture. W: Japan Prize 2002, The Science and Technology Foundation of Japan, Tokyo, pp 91-100.
  2. Tarkowski, A.K. 2002. Klonowanie ssaków. W: Molekularne podstawy rozrodczości człowieka i innych ssaków. (red. M. Kurpisz), Termedia Wydawnictwa Medyczne, Poznań, str 361-369.
  3. Szczygieł, M., Maleszewski, M., Kurpisz, M. 2002. Molekularne podstawy interakcji pomiędzy plemnikiem a komórką jajową. W: Molekularne podstawy rozrodczości człowieka i innych ssaków (red. M. Kurpisz), Termedia Wydawnictwa Medyczne, Poznań, str 305-314.
  4. Rogulska, T. 2002. Kształtowanie narządów osiowych i wczesne ośrodki indukcji u płazów i ptaków. W: Molekularne mechanizmy rozwoju zarodkowego (red. H. Krzanowska i W. Sokół-Misiak), Wydawnictwo Naukowe PWN, Warszawa, str 203-226.
  5. Maleszewski, M. 2002. Zapłodnienie i początek rozwoju ssaków. W: Molekularne mechanizmy rozwoju zarodkowego (red. H. Krzanowska i W. Sokół-Misiak), Wydawnictwo Naukowe PWN, Warszawa, str 203-226.
  6. Góźdź, A., Szczepańska-Sadowska, E., Szczepańska, K., Maśliński, W., Łuszczyk, B. 2002. Vasopressin VIa, VIb V2 receptors mRNA in the kidney and heart of the renin transgenic TGR (mREN2)27 and Sprague Dawley rats. J. Physiol. Pharmacol. 53, 349-357.
  7. Borsuk, E., Maleszewski, M. 2002. DNA replication and RNA synthesis in thymocyte nuclei microinjected into the cytoplasm of artificially activated mouse eggs. Zygote, 10, 229-238.

2001

  1. Kubiak, J.Z., Ciemerych, M.Z. 2001. Cell cycle regulation in early mouse embryos. In: The cell cycle and development. (Ed. G.Bock, G. Cardew and J. Gautier). Wiley, Chichester (Novartis Foundation Symposium 237), pp 79-92.
  2. Tarkowski, A.K., Ożdżeński, W., Czołowska, R. 2001. How many blastomeres of the 4-cell embryo contribute cells to the mouse body? Int. J. Dev. Biol. 45, 811-816.
  3. Tarkowski, AK., Ożdżeński, W., Czołowska, R. 2001. Mouse singletons and twins developed from isolated diploid blastomeres supported with tetraploid blastomeres. Int. J. Dev. Biol. 45, 591-596.
  4. Waksmundzka, M., Debey, P. 2001. Electric field-mediated BrUTP uptake by mouse oocytes, eggs, and embryos. Mol. Reprod. Dev., 58, 173-179.

2000

  1. Winston, N., Bourgain-Guglielmetti, F., Ciemerych, M.A., Kubiak, J.Z, Senamaud-Beaufort, C., Carrington, M., Brechot, C., Sobczak-Thepot, J. 2000. Early development of mouse embryos null mutant for the cyclin A2 gene occurs in the absence of maternally derived cyclin A2 gene products. Dev. Biol., 223, 139-53.
  2. Mystkowska, E.T., Komar, A., Rogulska, T. 2000. Chorioallantoic membrane test for the irritative potential of chemical substances and cosmetics as an alternative to the draize rabbit eye test (modification of the Het-Cam test). Acta Pol. Toxicol. 8, 46-60.
  3. Maleszewski, M. 2000. Różnicowanie się komórek we wczesnych stadiach rozwoju myszy [Cellular differentiation in early development of the mouse, in Polish]. Postępy Biologii Komórki, 27, suplement 15, 133-144.
  4. Grabarek, J., Zernicka-Goetz, M. 2000. Progression of mouse oocytes from metaphase I to metaphase II is inhibited by fusion with G2 cells. Zygote, 8, 145-151.
  5. Czołowska, R, Borsuk, E. 2000. Induction of DNA replication in the germinal vesicle of the growing mouse oocyte. Dev. Biol. 223, 205-15.
  6. Ciemerych, M.A., Mesnard, D., Zernicka-Goetz, M. 2000. Animal and vegetal poles of the mouse egg predict the polarity of the embryonic axis, yet are nonessential for development. Development 127, 3467-74.
  7. Amirand, C., Mentre, P., van de Geijn, S., Waksmundzka, M., Debey, P. 2000. Intracellular pH in one-cell mouse embryo differs between subcellular compartments and between interphase and mitosis. Biol. Cell, 92, 409-419.

1999

  1. Tarkowski, A.K. 1999. Kilka uwag embriologa na temat zagrożeń i korzyści zastosowania techniki klonowania w odniesieniu do człowieka [Few reflections of an embryologist on the benefits and threats of the technique of cloning as applied to man, in Polish]. Medycyna Wieku Rozwojowego, 3, suplement I do nr 3, 7-12.
  2. Tarkowski, A.K. 1999. Cóż tam panie w embriologii (ssaków)? Zarodki trzymają się mocno? [Cloning and gametic imprinting in mammals, in Polish]. Postępy Biologii Komórki, 26, suplement12, 3-7.
  3. Kuwana, T., Rogulska T. 1999. Migratory mechanisms of chick primordial germ cells toward gonadal anlage. Cell. Mol. Biol., 45, 725-737.
  4. Ciemerych, M.A., B. Maro, J.Z. Kubiak 1999. Control of duration of first two mitoses in a mouse embryo. Zygote, 7, 293-300.
  5. Ciemerych, M.A., J.Z. Kubiak 1999. Transient reactivation of CSF in parthenogenetic one-cell mouse embryos. Biol. Cell, 91, 641-647.
  6. Maleszewski, M., K. Koziak, D. Maluchnik, E. Borsuk, A.K. Tarkowski 1999. Delayed sperm incorporation into parthenogenetic mouse eggs: Sperm nucleus decondensation and development of resulting embryos. Mol. Reprod. Dev. 54, 303-310.
  7. Maleszewski, M. 1999. Molekularne mechanizmy zapłodnienia u ssaków. [(Molecular mechanisms of mammalian fertilization), in polish]. Postępy Biologii Komórki 26 suppl., 117-119.

1998

  1. Maleszewski, M. 1998. Techniques of assisted fertilization in mammals. Anim. Sci. Papers and Reports, 16, 23-26.
  2. Ciemerych, M.A., A.K. Tarkowski, J.Z. Kubiak 1998. Autonomous activation of histone H1 kinase, cortical activity and microtubule organization in one- and two-cell mouse embryos. Biol. Cell 90, 557-564.
  3. Ciemerych, M.A. 1998. Regulacja dojrzewania mejotycznego oocytów oraz pierwszych cyklów mitotycznych w zarodkach myszy [(Control of meiosis in oocytes and first meiotic divisions in mouse embryos), in polish]. Postępy Biologii Komórki 25, 549-570.
  4. Tarkowski, A.K. 1998. Mouse chimaeras revisited: recollections and reflections. Int. J. Dev. Biol. 42, 903-908.
  5. Tarkowski, A.K. 1998. Klonowanie i klony zwierząt [(Cloning and clones in animals), in polish]. Kosmos 47, 209-222.
  6. Maleszewski, M. 1998. Zastosowanie metod wspomaganego zapłodnienia w badaniach rozrodu ssaków. [(Techniques of assisted fertilization in mammals), in polish]. 47, 201-208.
  7. Ciemerych, M.A., Kubiak, J.Z. 1998. Cytostatic activity develops during meiosis I in oocytes of LT/Sv mice. Dev. Biol. 200, 198-211.
  8. Krukowska, A., Wielkopolska, E., Czołowska, R., Maleszewski, M., Tarkowski, A.K. 1998. Mouse oocytes and parthenogenetic eggs lose the ability to be penetrated by spermatozoa after fusion with zygotes. Zygote 6, 321-328.
  9. Szöllösi, D., Czołowska, R., Borsuk E., Szöllösi M.S., Debey, P. 1998. Nuclear envelope removal/maintenance determines the structural and functional remodelling of embryonic red blood cell nuclei in activated mouse oocytes. Zygote 6, 65-73.
  10. Maleszewski., M., Kuretake, S., Evenson, D., Yanagimachi, H., Bjordahl., J., Yanagimachi, R., 1998. Behavior of transgenic mouse spermatozoa with galline protamine. Biol. Reprod. 58, 8-14.

1997

  1. Płusa, B., Ciemerych, M.A., Borsuk, E., Tarkowski, A.K. 1997. Transcription and DNA replication of sperm nuclei introduced into blastomeres of 2-cell mouse embryos. Zygote, 5, 289-299.
  2. Waksmundzka, M., Czołowska, R., Tarkowski, A.K. 1997. Haploid maternal genome derived from early diplotene oocytes can substitute for the female pronucleus in preimplantation mouse development. Mol. Reprod. Dev. 48, 488-495.
  3. Ożdżeński, W., Szczęsny, E., Tarkowski, A.K. 1997. Postimplantation development of mouse blastocysts with two separate inner cell masses. Anat. Embryol, 195, 467-471.

1996

  1. Borsuk, E., Szöllösi, M.S., Besombes, D., Debey, P. 1996. Fusion with activated mouse oocytes modulates the transcriptional activity of introduced somatic cell nuclei. Exp. Cell Res., 225, 93-101.
  2. Pyrzynska, B., Maleszewski, M., Maluchnik, D., 1996. Mouse oocytes penetrated by sperm at GV or GVBD stage lose the ability to fuse with additional spermatozoa. Zygote, 4, 123-128.
  3. Maleszewski, M., Kimura, Y., Yanagimachi, R., 1996. Sperm membrane incorporation into oolemma contributes to oolemma block to sperm penetration: evidence based on intracytoplasmic sperm injection experiments in the mouse. Mol. Reprod. Dev., 44, 256-259.
  4. Kuretake, S., Maleszewski, M., Tokumasu, A., Fujimoto, H., Yanagimachi, R., 1996. Inadequate function of sterile tw5/tw32 spermatozoa overcome by intracytoplasmic sperm injection. Mol. Reprod. Dev., 44, 230-233.
  5. Czołowska, R., Tarkowski, A.K., 1996. First meiosis of early dictyate nuclei from primordial oocytes in mature and activated mouse oocytes. Zygote, 4, 73-80.
  6. Borsuk, E., Vautier, D., Szöllösi, M.S., Besombes, D., Debey, P. 1996. Development-dependent localization of nuclear antigens in growing mouse oocytes. Mol. Reprod. Dev., 43, 376-386.
  7. Sokół-Misiak, W., Rogulska, T. 1996. Early mortality and developmental anomalies in chick embryos examined without and after introduction of of reporter LacZ gene. Animal Science Papers and Reports, 14, 211-221.

1995

  1. Sokół-Misiak, W., Rogulska, T. 1995. Developmental anomalies in quail-chick transgenic chimaeras obtained by aggregation in ovo blastodermal cells of quail and chick. Animal Science Papers and Reports, 13, 205-214.
  2. Mystkowska-Bączkowska, E.T., Komar, A., Samosamos-­Zielińska, J., Stroińska, W., Rogulska, T. 1995. Ocena przydatności błony omoczniowo-kosmówkowej zarodka kury do testowania drażniących właściwości substancji chemicznych. (Assessment of the choriaoallantoic membrane of the chick embryo to test irritation potential of chemical and cosmetic products). Roczn. PZH, 46, 407-415 (In Polish, with English Summary).
  3. Maleszewski, M., Yanagimachi, R., 1995. Spontaneous and sperm-induced activation of oocytes in LT/Sv strain mice. Develop. Growth Diff., 37, 679-685.
  4. Maleszewski, M. 1995. Sperm nuclei entering parthenogenetically activated mouse oocytes before the first mitosis transform into pronuclei. An ultrastructural study. Anat. Rec., 243, 516-518.
  5. Maleszewski, M., Kline, D., Yanagimachi, R. 1995. Activation of hamster zona-free oocytes by homologous and heterologous spermatozoa. J. Reprod. Fertil., 105, 99-107.
  6. Maleszewski, M. 1995. Sulphydryl reagent iodoacetamide inhibits progression of meiosis and sperm transformation in mouse oocytes fertilised in vitro. Zygote, 3, 75-79.
  7. Żernicka-Goetz, M., Ciemerych, M. A., Kubiak, J. Z., Tarkowski, A. K. and Maro, B. 1995. Cytostatic factor inactivation is induced by a calcium-dependent mechanism present until the second cell cycle in fertilized but not in parthenogenetically activated mouse eggs. J. Cell Sci., 108, 469-474.
  8. Ciemerych, M.A. 1995. Chromatin condensation activity and cortical activity during the first three cell cycles of a mouse embryo. Mol. Reprod. Dev., 41, 416-424.

1994

  1. Waksmundzka M., 1994. Development of rat x mouse hybrid embryos produced by microsurgery. J. Exp. Zool., 269, 551-559.
  2. Maluchnik D., Borsuk E., 1994. Sperm entry into fertilised mouse eggs. Zygote, 2, 129-131.
  3. Żernicka-Goetz, M. 1994. Activation of embryonic genes during pre­implantation rat development. Mol. Reprod. Dev., 38, 30-35.
  4. Szöllösi, M.S., Borsuk E., Szöllösi D. 1994. Relationship between sperm nucleus remodelling and cell cycle progression of fragments of mouse parthenogenotes. Mol. Reprod. Dev., 37, 146-156.

1993

  1. Maleszewski M., Bielak A. 1993. Sperm penetration in parthenogenetic mouse embryos triggers a plasma membrane block to polyspermy. Zygote 1, 237-242.
  2. Wisniewski, J., Maleszewski, M., Krawczyk, Z., Gedamu, L. 1993. An upstream region of the rat spermatogenesis-specific heat-shock-like Hst70 gene confers testis-specific expression in transgenic mice. Eur.J. Biochem., 212, 137-143.
  3. Ciemerych, M.A., Czołowska, R. 1993. Differential chromatin condensation of female and male pronuclei in mouse zygotes. Mol. Reprod. Dev., 34, 73-80.
  4. Żernicka-Goetz, M., Weber, M., Maro, B. 1993. Full activation of rat oocyte by protein synthesis inhibition requires protein phosphatase activity. Int. J. Dev. Biol., 37, 273-277.
  5. Żernicka-Goetz, M., Maro, B. 1993. Okadaic acid affects spindle organization in metaphase II-arrested rat oocytes. Short note. Exp. Cell Res., 207, 189-193.
  6. Żernicka-Goetz, M., Kubiak, J.Z., Antony, C., Maro, B. 1993. Cytoskeletal organization of rat oocytes during metaphase II arrest and following abortive activation: a study by confocal laser scanning microscopy. Mol. Reprod. Dev., 35, 165-179.

1992

  1. Rogulska, T., Klotz, A.G., Łaszczych-Łupińska, J. 1992. Influence of chick or quail embryonic testes on the reproductive system of the quail embryo. Biol. Struct. Morphog., 4, 23-27.
  2. Jankowska-Steifer, E., Mystkowska, E.T., Ożdżeński, W. 1992. Hermaphroditism in young mouse chimeras. Biol. Struct. Morphog., 4, 78-80.
  3. Czołowska, R., Szöllösi, D., Szöllösi, M. S. 1992. Changes in embryonic 8-cell nuclei transferred by means of cell fusion to mouse eggs. Int. J. Dev. Biol. 36, 543-553.
  4. Maleszewski, M. 1992. Behavior of sperm nuclei incorporated into parthenogenetic mouse eggs prior to the first cleavage division Mol. Reprod. Dev., 33, 215-221.

1991

  1. Kubiak, J.Z. 1991. Cleavage divisions of bisected sea urchin egg and zygotes: implications for centrosome role and inheritance. Eur. Arch. Biol., 102, 103-109.
  2. Kubiak, J.Z. 1991. Cell cycle-dependent behavior of microtubules in hybrids of mouse oocytes and blastomeres. Int. J. Dev. Biol., 35, 1-7.
  3. Kubiak, J.Z., Prather R.S., Maul, G.G., Schatten, G. 1991. Cytoplasmic modification of the nuclear lamina during pronuclear-like transformation of mouse blastomere nuclei. Mech. Dev., 35, 103-111.
  4. Prather, R.S., Kubiak, J., Maul, G.G., First, N.L., Schatten, G. 1991. The expression of nuclear lamin A and C epitopes is regulated by the developmental stage of the cytoplasm in mouse oocytes or embryos. J. exp. Zool., 257, 110-114.
  5. Borsuk, E. 1991. Anucleate fragments of parthenogenetic eggs and of maturing oocytes contain complementary factors required for development of a male pronucleus. Mol. Reprod. Dev., 29, 150-156.
  6. Żernicka-Goetz, M. 1991. Spontaneous and induced activation of rat oocytes. Mol. Reprod. Dev., 28, 169-176.
  7. Modliński, J.A., Smorąg Z. 1991. Preimplantation development of rabbit embryos after transfer of embryonic nuclei into different cytoplasmic environment. Mol. Reprod. Dev., 28, 361-372.

1990

  1. Szöllösi, D., Szöllösi, M. S., Czołowska, R., Tarkowski, A.K. 1990. Sperm penetration into immature mouse oocytes and nuclear changes during maturation: an EM study. Biol. Cell, 69, 53-64.
  2. Maleszewski, M. 1990. Decondensation of mouse sperm chromatin in cell-free extracts: a micromethod. Mol. Reprod. Dev., 27, 244-248.
  3. Maro, B., Kubiak, J., Gueth, C., De Pennart, H., Houliston, E., Weber, M., Antony, C., Aghion, J. 1990. Cytoskeleton organization during oogenesis, fertilization and preimplantation development of the mouse. Int. J. Dev. Biol., 34, 127-137.
  4. Modliński, J.A., Gerhauser, D., Lioi, B., Winking, H., Illmensee, K. 1990. Nuclear transfer from teratocarcinoma cells into mouse oocytes and eggs. Development, 108, 337-348.
  5. Tarkowski, A.K. 1990. Cytoplasmic control of the transformation of sperm nucleus into male pronucleus. In: Advances in Assisted Reproductive Technologies (eds. S. Mashiach et al.), Plenum Press, New York and London. pp. 807-813.

1989

  1. Illmensee, K., Gerhauser, D., Lioi, B., Modliński, J.A. 1989. Developmental potential of nuclei from mouse teratocarcinoma cells. Naturwissenshaften, 76, 582-684.
  2. Borsuk, R., Tarkowski, A.K. 1989. Transformation of sperm nuclei into male pronuclei in nucleate and anucleate fragments of parthenogenetic mouse eggs. Gamete Res., 24, 471-481.
  3. Kubiak, J.Z. 1989. Mouse oocytes gradually develop the capacity for activation during the metaphase II arrest. Dev. Biol.,136, 537-545.

1988

  1. Szöllösi, D., Czołowska, R., Szöllösi, M. S., Tarkowski, A.K. 1988. Remodelling of mouse thymocyte nuclei depends on the time of their transfer into activated, homologous oocytes. J. Cell Sci., 91, 603-613.
  2. Borsuk, E., Mańka, R. 1988. Behavior of sperm nuclei in intact and bisected metaphase II mouse oocytes fertilized in the presence of colcemid. Gamete Res., 20, 365-376.

1987

  1. Maleszewski, M. 1987. Chromatin condensation factors in the life cycle of eukaryotic cells. Postępy Biologii Komórki, 14, 307-325 (in Polish).
  2. Rogulska, T., Ożdżeński, W. 1987. Autonomous development of embryonic testes of the quail (Coturnix coturnix japonica L.) cultured as intracoelomic grafts. Zoologica Poloniae, 34, 221-224.
  3. Skrzecz, I., Karasiewicz, J. 1987. Decompaction and recompaction of mouse preimplantation embryos. Roux’s Dev. Biol., 196, 397-400.
  4. Ozil, J.P., Modliński, J.A. 1987. Electric field induced fusion of blastomeres. In: Future Aspects in Human In Vitro Fertilization. (eds. W. Feichtinger and P. Kameter). Springer Verlag, Berlin – Heidelberg, pp. 213-217.
  5. Modliński, J.A., Ozil, J.P. 1987. Experimental polyembryony in mammals. In: Future Aspects in Human In Vitro Fertilization. (eds. W. Feichtinger and P. Kameter). Springer Verlag, Berlin – Heidelberg, pp. 225-231.

1986

  1. Rogulska, T., Karasiewicz, J., Ożdżeński, W. 1986. Ćwiczenia z biologii rozwoju. Rozwój zarodkowy owodniowców: kury i myszy. (red. T. Rogulska). Wydawnictwa Uniwersytetu Warszawskiego. Str. 127.
  2. Sołtyńska, M.S., Szöllösi D., Czołowska R. 1986. Post-fusion reaction of mouse oocyte cortex to incorporated thymocyte cells. Biol. Cell, 57, 135-142.
  3. Szöllösi, D., Czołowska, R., Sołtyńska, M. S., Tarkowski, A.K. 1986. Remodelling of thymocyte nuclei in activated mouse oocytes: an ultrastructural study. Europ. J. Cell Biol., 42, 140-151.
  4. Ozil, J.P., Modliński, J.A. 1986. Effects of electric field on fusion rate and survival of 2-cell rabbit embryos. J. Embryol. exp. Morph., 96, 211-228.
  5. Czołowska, R., Waksmundzka, M., Kubiak, J.Z., Tarkowski, A.K. 1986. Chromosome condensation activity in ovulated metaphase II oocytes assayed by fusion with interphase blastomeres. J. Cell Sci., 84, 129-138.
  6. Szöllösi, D., Czołowska, R., Sołtyńska, M. S., Tarkowski, A.K. 1986. Ultrastructure of cell fusion and premature chromosome condensation (PCC) of thymocyte nuclei in metaphase II mouse oocytes. Biol. Cell, 56, 239-250.
  7. Rogulska, T., Zając, H. 1986-1987. Meiotic prophase in the left embryonic testis of the Japanese quail (Coturnix coturnix japonica L.). Arch. Anat. micr. Morph. exp., 75, 127-134.
  8. Karasiewicz, J., Sołtyńska, M.S. 1986. Effects of cytochalasin B on the cleavage furrow in mouse blastomeres. Roux’s Archiv. Dev. Biol. 194, 137-141.

1985

  1. Sołtyńska, M.S., Bałakier, H., Witkowska, A., Karasiewicz, J. 1985. Binucleate cells in mouse morulae. Roux’s Archiv. Dev. Biol. 194, 173-177.
  2. Kubiak, J. Z., Tarkowski, A.K. 1985. Electrofusion of mouse blastomeres. Exp. Cell Res., 157, 561-566.
  3. Karasiewicz, J., Sołtyńska, M. 1985. Ultrastructural evidence for the presence of actin filaments in mouse eggs at fertilization. Roux’s Archiv. Dev. Biol., 194, 369-372.
  4. Karasiewicz, J., Modliński, J.A. 1985. Dislocation of gold particles in the cytoplasm of mouse zygotes during cleavage. Roux’s Archiv. Dev. Biol., 194, 495-497.
  5. Kaczanowski, A., Gaertig, J., Kubiak, J. 1985. Effect of the antitubulin drug nocodazole on meiosis and post meiotic development in Tetrahymena thermophila. Exp. Cell Res., 158, 244-256.

1984

  1. Waksmundzka, M., Krysiak, E., Karasiewicz, J., Czołowska, R., Tarkowski, A.K. 1984. Autonomous cortical activity in mouse eggs controlled by a cytoplasmic clock. J. Embryol. exp. Morph., 79, 77-96.
  2. Ożdżeński, W., Presz, M. 1984. Precocious initiation of meiosis by male germ cells of the mouse. Arch. Anat. micr. Morph. exp., 73, 1-7.
  3. Czołowska, R., Modliński, J. A., Tarkowski, A.K. 1984. Behaviour of thymocyte nuclei in non-activated and activated mouse oocytes. J. Cell Sci., 69, 19-34.
  4. Bałakier, H. 1984. Endogenous peroxidase in the visceral endoderm of early mouse embryos. J. exp. Zool., 231, 243-248.

1983

  1. Tarkowski, A.K. 1983. Cytoplasmic control of the transformation of sperm nucleus into male pronucleus in the mouse: an experimental approach. In: The Sperm Cell, Proc. 4th Int. Symp. on Spermatology (ed. J. Andre), M. Nijhoff Publ., The Hague-Boston-London, pp. 253-257.
  2. Pisarek, W., Czołowska, R. 1983. Nuclear size, cell size and nucleo-cytoplasmic ratio in cleaving mouse embryos with normal and reduced cell volume. Acta Biol. Cracov. s. Zool., 25, 35-43.
  3. Czołowska, R. 1983. Nuclear size and nucleo-cytoplasmic ratio in cleaving mouse embryos of different ploidy. Acta Biol. Cracov., s. Zool., 25, 45-50.

1982

  1. Witkowska, A. 1982. Fertilization of zona-free rat eggs with mouse spermatozoa: the fate of sperm nuclei up to the first cleavage division. Folia Biol., (Kraków) 30, 105-112.
  2. Tarkowski, A.K., Wojewódzka, M. 1982. A method for obtaining chimaeric mouse blastocysts with two separate inner cell masses: a preliminary report. J. Embryol. exp. Morph., 71, 215-221.
  3. Tarkowski, A.K. 1982. Nucleo-cytoplasmic interactions in oogenesis and early embryogenesis in the mouse. In: Embryonic Development, Part A: Genetic Aspects (eds. M. . M. Burger and R. Weber), Alan R. Liss, Inc., New York, pp. 407-416.
  4. Rogulska, T. 1982. Primordial germ cells in the fragments of unincubated chick blastoderm cultured in ovo. Zoologica Poloniae, 29, 5-12.
  5. Borsuk, E. 1982. Preimplantation development of gynogenetic diploid mouse embryos. J. Embryol. exp. Morph., 69, 215-222.
  6. Bałakier, H., Pedersen, R.A. 1982. Allocation of cells to inner cell mass and trophectoderm lineages in preimplantation mouse embryos. Dev. Biol., 90, 352-362.

1981

  1. Witkowska, A. 1981. Pronuclear development and the first cleavage division in polyspermic mouse eggs. J. Reprod. Fert., 62, 493-498.
  2. Modliński, J.A. 1981. The fate of inner cell mass and trophectoderm nuclei transplanted to fertilized mouse eggs. Nature, London, 292, 342-343.
  3. Karasiewicz, J. 1981. Electron microscopic studies of cytokinesis in metazoan cells. In “Cellular Dynamics: Mitosis/Cytokinesis” (eds. A.M. Zimmerman and A. Forer), Academic Press, New York, pp. 419-436.

1980

  1. Ożdżeński, W., Czołowska, R. 1980. Lipid inclusions in oocytes and preimplantation embryos of different strains of mice. Folia Morph. 4, 497-502.
  2. Modliński, J.A. 1980. Preimplantation development of microsurgically obtained haploid and homozygous diploid mouse embryos and effects of pretreatment with cytochalasin B on enucleated eggs. J. Embryol. exp. Morph., 60, 153-161.
  3. Modliński, J.A., McLaren, A. 1980. A method for visualizing the chromosomes of the second polar body of the mouse eggs. J. Embryol. exp. Morph., 60, 93-97.
  4. Szöllösi, D., Bałakier, H., Czołowska, R., Tarkowski, A.K. 1980. Ultrastructure of cell hybrids between mouse oocytes and blastomeres. J. exp. Zool., 213, 315-325.
  5. Bałakier, H., Tarkowski, A.K. 1980. The role of germinal vesicle karyoplasm in the development of male pronucleus in the mouse. Exp. Cell Res., 128, 79-85.
  6. Tarkowski, A.K. 1980. Fertilization of nucleate and anucleate egg fragments in the mouse. Exp. Cell Res., 128, 73-77.
  7. Tarkowski, A.K., Bałakier, H. 1980. Nucleo-cytoplasmic interactions in cell hybrids between mouse oocytes, blastomeres and somatic cells. J. Embryol. exp. Morph., 55, 319-330.

1956 – 1979

  1. Bałakier, H. 1979. Interspecific heterokaryons between oocytes and blastomeres of the mouse and the bank vole. J. exp. Zool., 209, 323-329.
  2. Mystkowska, E.T., Ożdżeński, W., Niemierko, A. 1979. Factors regulating the degree and extent of experimental chimaerism in the mouse. J. Embryol. exp. Morph., 51, 217-225.
  3. Tarkowski, A.K. 1978. Germ cells in XX-XY mouse chimeras. In: Genetic Mosaics and Chimeras in Mammals (ed. L. B. Russell), Plenum Press, New York and London, pp. 135-142.
  4. Niemierko, A., Opas, J. 1978. Manipulation of ploidy in the mouse. In: Methods in Mammalian Reproduction, vol. 2, (ed. J.C. Daniel), Academic Press, New York-San Francisco-London, pp. 49-65.
  5. Modliński, J.A. 1978.  Transfer of embryonic nuclei to fertilised mouse eggs and development of tetraploid blastocysts. Nature, London, 273, 466-467.
  6. Opas, J., Sołtyńska, M.S. 1978. Reorganization of the cortical layer during cytokinesis in mouse blastomeres Exp. Cell Res., 113, 208-211.
  7. Bałakier, H. 1978. Induction of maturation in small oocytes from sexually immature mice by fusions with meiotic or mitotic cells. Exp. Cell Res., 112, 137-141.
  8. Bałakier, H., Czołowska, R. 1977. Cytoplasmic control of nuclear maturation in mouse oocytes. Exp. Cell Res., 110, 466-470.
  9. Opas, J. 1977. Effects of cytochalasin B on cytokinesis in mouse blastomeres. I. Light microscopy study. Dev. Biol., 61, 373-377.
  10. Tarkowski, A.K., Witkowska, A., Opas, J. 1977. Development of cytochalasin B-induced tetraploid and diploid/tetraploid mosaic mouse embryos. J. Embryol. exp. Morph., 41, 47-64.
  11. Opas, J. 1977. Effects of extremely low osmolarity on fertilized mouse eggs. J. Embryol. exp. Morph., 37, 65-77.
  12. Tarkowski, A.K. 1977. In vitro development of haploid mouse embryos produced by bisection of one-cell fertilized eggs. J. Embryol. exp. Morph., 38, 187-202.
  13. Ożdżeński, W., Rogulska, T., Bałakier, H., Brzozowska, M., Rembiszewska, A., Stępińska, U. 1976. Influence of embryonic and adult testis on the differentiation of embryonic ovary in the mouse. Arch. Anat. micr. Morph. exp., 65, 285-294.
  14. Rogulska, T. 1976. The effect of transection of the duck blastoderm on the orientation of the embryo, In: International Symposium on Early Avian Development, Antwerp, 22-24 May 1975, pp. 101-105.
  15. Ożdżeński, W., Mystkowska, E.T. 1976.  Implantation and early post­implantation development of the bank vole Clethrionomys glareolus, Schreber. J. Embryol. exp. Morph., 35, 535-543.
  16. Ożdżeński, W., Mystkowska, E.T. 1976. Stages of pregnancy of the bank vole. Acta Theriologica, 21, 279-286.
  17. Tarkowski, A.K., Rossant, J. 1976. Haploid mouse blastocysts developed from bisected zygotes. Nature, London, 259, 663-665.
  18. Bałakier, H., Tarkowski, A.K. 1976. Diploid parthenogenetic mouse embryos produced by heat-shock and cytochalasin B. J. Embryol. exp. Morph., 35, 25-39.
  19. Tarkowski, A.K. 1975. Induced parthenogenesis in the mouse. In: The Developmental Biology of Reproduction, 33rd Symposium of the Society for Developmental Biology (ed. C. L. Markert and J. Papaconstantinou), Academic Press, New York-San Francisco-London, pp. 107-129.
  20. Niemierko, A. 1975. Induction of triploidy in the mouse by cytochalasin B. J. Embryol. exp. Morph., 34, 279-289.
  21. Modliński, J.A. 1975. Haploid mouse embryos obtained by microsurgical removal of one pronucleus. J. Embryol. exp. Morph. , 33, 897-905.
  22. Mystkowska, E.T. 1975. Development of mouse-bank vole interspecific chimaeric embryos. J. Embryol. exp. Morph., 33, 731-744.
  23. Komar, A. 1973. Parthenogenetic development of mouse eggs activated by heat-shock. J. Reprod. Fert., 35, 433-443.
  24. Witkowska, A. 1973. Parthenogenetic development of mouse embryos in vivo. II. Postimplantation development J. Embryol. exp. Morph., 30, 547-560.
  25. Witkowska, A. 1973. Parthenogenetic development of mouse embryos in vivo. I. Preimplantation development. J. Embryol. exp. Morph., 30, 519-545.
  26. Ożdżeński, W. 1972. Differentiation of the genital ridges of mouse embryos in the kidney of adult mice. Arch. Anat. micr. Morph. exp., 61, 267-278.
  27. Tarkowski, A.K. 1972. Comments on the application of cell fusion techniques to the study of mammalian embryology. Adv. Biosc., 8, 275-278.
  28. Czołowska, R. 1972. The fine structure of the “germinal cytoplasm” in the egg of Xenopus laevis. Wilhelm Roux’ Archiv, 169, 335-344.
  29. Wróblewska, J. 1971. Developmental anomaly in the mouse associated with triploidy. Cytogenetics, 10, 199-207.
  30. Tarkowski, A.K. 1971. Recent studies on parthenogenesis in the mouse. J. Reprod. Fert., Suppl. 14, 31-39.
  31. Rogulska, T., Ożdżeński, W., Komar, A. 1971. Behaviour of mouse primordial germ cells in the chicken embryo. J. Embryol. exp. Morph., 25, 155-164.
  32. Tarkowski, A.K. 1971. Development of single blastomeres. In: Methods in Mammalian Embryology (ed. J.C. Daniel, Jr.), W.H. Freeman & Co., San Francisco, pp. 172-185.
  33. Tarkowski, A.K. 1970. The nature of blastomere differentiation in early mammalian development – epigenetic or intrinsic? In: Cellular interactions in differentiation and growth, Nauka, Moscow, pp. 117-125, (in Russian).
  34. Tarkowski, A.K. 1970. Germ cells in natural and experimental chimeras in mammals. Phil. Trans. Roy. Soc. Lond., B, 259, 107-111.
  35. Tarkowski, A.K. 1970. Are the genetic factors controlling sex differentiation of somatic and germinal tissues stable or labile? Fogarty International Center Proc. No. 2., Symposium “Environmental Influences on Genetic Expression. Biological & Behavioral Aspects of Sexual Differentiation. (eds. N. Kretchmer & D.N. Walcher). U. S. Government Printing Office, Washington, D.C., pp. 49-60.
  36. Modliński, J.A. 1970. The role of the zona pellucida in the development of mouse eggs in vivo. J. Embryol. exp. Morph., 23, 539-547.
  37. Mystkowska, E.T., Tarkowski, A.K. 1970. Behaviour of germ cells and sexual differentiation in late embryonic and early postnatal mouse chimeras. J. Embryol. exp. Morph., 23, 395-405.
  38. Tarkowski, A.K., Witkowska, A., Nowicka, J. 1970. Experimental parthenogenesis in the mouse. Nature, London, 226, 162-165.
  39. Tarkowski, A.K., Smorawińska, M., Janota-Bassalik, L. 1970. Short-lived infection with enterococci of mouse oviduct following mating. J. Reprod. Fert., 21, 289-292.
  40. Tarkowski, A.K. 1969. Consequences of sex chromosome chimerism for sexual differentiation in mammals. Annales d’Embryologie et de Morphogenese, Suppl. 1, 211-222.
  41. Komar, A. 1969. Primordial germ cells in chick germinal crescent developing as chorio-allantoic or intra-coelomic graft. Zoologica Poloniae, 19, 517-523.
  42. Ożdżeński, W. 1969. Fate of primordial germ cells in the transplanted hind gut of mouse embryos. J. Embryol. exp. Morph., 22, 505-510.
  43. Rogulska, T., Komar, A. 1969. The relationship between the orientation of the early chick embryos and the shape of the egg shell. Experientia, 25, 990-991.
  44. Adamczewska-Andrzejewska, K.A. 1969. Estimations of number of young born on the basis of placental scars count in the laboratory mouse. Acta Theriologica, 14, 263-267.
  45. Rogulska, T. 1969. Migration of the chick primordial germ cells from the intracoelomically transplanted germinal crescent into the genital ridge. Experientia, 25, 631-632.
  46. Wróblewska, J., Dyban, A.P. 1969. Chromosome preparations from mouse embryos during early organogenesis: dissociation after fixation, followed by air drying. Stain Tech., 44, 147- 150.
  47. Rogulska,T. 1968. Primordial germ cells in normal and transected duck blastoderms. J. Embryol. exp. Morph., 20, 247-260.
  48. Rogulska, T. 1968. The effect of transection of the duck blastoderm on the orientation of the embryo. J. Embryol. exp. Morph., 20, 237-245.
  49. Ożdżeński, W. 1967. Observations on the origin of primordial germ cells in the mouse. Zoologica Poloniae, 17, 367-379.
  50. Mystkowska, E.T., Tarkowski, A.K. 1968. Observations on CBA/p-CBA-T6T6 mouse chimeras. J. Embryol. exp. Morph. 20, 33-52.
  51. Tarkowski, A.K., Wróblewska, J. 1967. Development of blastomeres of mouse eggs isolated at the 4- and 8-cell stage. J. Embryol. exp. Morph., 18, 155-180.
  52. Tarkowski, A.K. 1966. An air-drying method for chromosome preparations from mouse eggs. Cytogenetics, 5, 394-400.
  53. Rogulska, T. 1965. The development of the pelvic girdle of the chick embryo (Gallus domesticus L.) after the extirpation of the posterior limb bud. Zoologica Poloniae, 15, 65-78.
  54. Tarkowski, A.K. 1965. Embryonic and postnatal development of mouse chimaeras. In: Ciba Foundation Symposium on Preimplantation Stages of Pregnancy (eds. G. W. Wolstenholme & M. O’Connor), J. & A. Churchill Ltd., London, pp. 183-193.
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