Chimaeras, complementation, and controlling the male germline.
暂无分享,去创建一个
[1] T. Meuwissen,et al. 266. On the advantage of identifying causal genetic variants for genomic prediction , 2022, Proceeding of 12th World Congress on Genetics Applied to Livestock Production (WCGALP).
[2] Ferdinand von Meyenn,et al. Exclusive generation of rat spermatozoa in sterile mice utilizing blastocyst complementation with pluripotent stem cells , 2022, Stem cell reports.
[3] T. Wakayama,et al. Healthy cloned offspring derived from freeze-dried somatic cells , 2022, Nature Communications.
[4] Alison L. Van Eenennaam,et al. Synergistic power of genomic selection, assisted reproductive technologies, and gene editing to drive genetic improvement of cattle , 2022, CABI Agriculture and Bioscience.
[5] J. Lammers,et al. Human blastoids model blastocyst development and implantation , 2021, Nature.
[6] J. Nichols,et al. Pluripotent stem cells related to embryonic disc exhibit common self-renewal requirements in diverse livestock species , 2021, Development.
[7] Jun Wu,et al. The road to generating transplantable organs: from blastocyst complementation to interspecies chimeras. , 2021, Development.
[8] M. Kanatsu-Shinohara,et al. Spermatogonial stem cell transplantation into nonablated mouse recipient testes , 2021, Stem cell reports.
[9] David J. Jörg,et al. Transient suppression of transplanted spermatogonial stem cell differentiation restores fertility in mice , 2021, Cell stem cell.
[10] F. Tang,et al. Establishment of bovine expanded potential stem cells , 2021, Proceedings of the National Academy of Sciences.
[11] Zhenfang Wu,et al. Spermatogonial Stem Cell Transplantation in Large Animals , 2021, Animals : an open access journal from MDPI.
[12] M. Surani,et al. Blastocyst complementation using Prdm14-deficient rats enables efficient germline transmission and generation of functional mouse spermatids in rats , 2021, Nature Communications.
[13] K. White,et al. Improvements in Gene Editing Technology Boost Its Applications in Livestock , 2021, Frontiers in Genetics.
[14] R. Snell,et al. Testes of DAZL null neonatal sheep lack prospermatogonia but maintain normal somatic cell morphology and marker expression , 2020, Molecular reproduction and development.
[15] Jun Wu,et al. Derivation of sheep embryonic stem cells under optimized conditions. , 2020, Reproduction.
[16] Shogo Matoba,et al. Generation of chimeric mice with spermatozoa fully derived from embryonic stem cells using a triple-target CRISPR method for Nanos3† , 2020, Biology of reproduction.
[17] Y. Liu,et al. Donor-derived spermatogenesis following stem cell transplantation in sterile NANOS2 knockout males , 2020, Proceedings of the National Academy of Sciences.
[18] G. Laible,et al. Embryo-mediated genome editing for accelerated genetic improvement of livestock , 2020 .
[19] M. Kanatsu-Shinohara,et al. Autologous transplantation of spermatogonial stem cells restores fertility in congenitally infertile mice , 2020, Proceedings of the National Academy of Sciences.
[20] Pingping Xing,et al. Establishment of Etv5 gene knockout mice as a recipient model for spermatogonial stem cell transplantation , 2020, bioRxiv.
[21] D. Page,et al. Mammalian germ cells are determined after PGC colonization of the nascent gonad , 2019, Proceedings of the National Academy of Sciences.
[22] F. Savvulidi,et al. Manipulation of spermatogonial stem cells in livestock species , 2019, Journal of Animal Science and Biotechnology.
[23] Lia S. Campos,et al. Establishment of porcine and human expanded potential stem cells , 2019, Nature Cell Biology.
[24] P. Mombaerts,et al. The testicular soma of Tsc22d3 knockout mice supports spermatogenesis and germline transmission from spermatogonial stem cell lines upon transplantation , 2019, Genesis.
[25] J. Nichols,et al. Defined conditions for propagation and manipulation of mouse embryonic stem cells , 2019, Development.
[26] H. Nakauchi,et al. An interspecies barrier to tetraploid complementation and chimera formation , 2018, Scientific Reports.
[27] J. Stejskal,et al. Embryos and embryonic stem cells from the white rhinoceros , 2018, Nature Communications.
[28] R. Brinster,et al. Spermatogonial stem cells† , 2018, Biology of Reproduction.
[29] A. Oudenaarden,et al. Blastocyst-like structures generated solely from stem cells , 2018, Nature.
[30] D. F. Carlson,et al. TALEN‐mediated gene targeting in porcine spermatogonia , 2018, Molecular reproduction and development.
[31] Suyatno,et al. Long‐term culture of undifferentiated spermatogonia isolated from immature and adult bovine testes , 2018, Molecular reproduction and development.
[32] Keiichiro Suzuki,et al. Efficient derivation of stable primed pluripotent embryonic stem cells from bovine blastocysts , 2018, Proceedings of the National Academy of Sciences.
[33] Yi Zheng,et al. Long-Term Propagation of Porcine Undifferentiated Spermatogonia. , 2017, Stem cells and development.
[34] Melissa J. Oatley,et al. Glycolysis-Optimized Conditions Enhance Maintenance of Regenerative Integrity in Mouse Spermatogonial Stem Cells during Long-Term Culture , 2017, Stem cell reports.
[35] Ki-Eun Park,et al. Generation of germline ablated male pigs by CRISPR/Cas9 editing of the NANOS2 gene , 2017, Scientific Reports.
[36] P. Mombaerts,et al. Exclusive transmission of the embryonic stem cell‐derived genome through the mouse germline , 2016, Genesis.
[37] M. Kanatsu-Shinohara,et al. Fertility of Male Germline Stem Cells Following Spermatogonial Transplantation in Infertile Mouse Models1 , 2016, Biology of reproduction.
[38] Tetsuya Ito,et al. Generation of exogenous germ cells in the ovaries of sterile NANOS3-null beef cattle , 2016, Scientific Reports.
[39] Takashi Yamamoto,et al. Genome Editing in Mouse Spermatogonial Stem Cell Lines Using TALEN and Double-Nicking CRISPR/Cas9 , 2015, Stem cell reports.
[40] Carole Ober,et al. Targeted Germline Modifications in Rats Using CRISPR/Cas9 and Spermatogonial Stem Cells. , 2015, Cell reports.
[41] A. Zarnani,et al. Isolation, identification, and culture of goat spermatogonial stem cells using c-kit and PGP9.5 markers , 2012, Journal of Assisted Reproduction and Genetics.
[42] B. Oback,et al. Nuclear Transfer for Cloning Animals , 2011 .
[43] K. Murphy,et al. Complex ovarian defects lead to infertility in Etv5-/- female mice. , 2011, Molecular human reproduction.
[44] Jianwu Wang,et al. Effect of microinjection of a single IVF-derived blastomere on the development of cloned embryos at the eight-cell stage in bovine. , 2010, Cellular reprogramming.
[45] Hsu-hsin Chen,et al. A murine ESC-like state facilitates transgenesis and homologous recombination in human pluripotent stem cells. , 2010, Cell stem cell.
[46] M. Oshimura,et al. Production of knockout mice by random or targeted mutagenesis in spermatogonial stem cells. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[47] R. Brinster,et al. Growth factors essential for self-renewal and expansion of mouse spermatogonial stem cells. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[48] H. Nagashima,et al. Sex Differentiation and Germ Cell Production in Chimeric Pigs Produced by Inner Cell Mass Injection into Blastocysts , 2004, Biology of reproduction.
[49] S. Toyokuni,et al. Restoration of fertility in infertile mice by transplantation of cryopreserved male germline stem cells. , 2003, Human reproduction.
[50] H. Cooke,et al. Spermatogenesis in testes of Dazl null mice after transplantation of wild-type germ cells. , 2003, Reproduction.
[51] T. Honjo,et al. Functional Assessment of Self-Renewal Activity of Male Germline Stem Cells Following Cytotoxic Damage and Serial Transplantation1 , 2003, Biology of reproduction.
[52] T. Shinohara,et al. Remodeling of the postnatal mouse testis is accompanied by dramatic changes in stem cell number and niche accessibility , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[53] D. Anderson,et al. Semen characteristics and production of germ cells in male sheep-goat chimeras , 1995 .
[54] T. Kojima,et al. Production of chimeric pigs and the analysis of chimerism using mitochondrial deoxyribonucleic acid as a cell marker. , 1994, Biology of reproduction.
[55] A. Handyside,et al. Sex chimaerism, fertility and sex determination in the mouse. , 1991, Development.
[56] E. P. Evans,et al. Chromosomal sex and distribution of functional germ cells in a series of chimeric mice. , 1985, Experimental cell research.
[57] E. M. Tucker,et al. Tetraparental sheep chimaeras induced by blastomere transplantation. Changes in blood type with age. , 1974, Immunology.
[58] C. Wrenzycki. In Vitro Production of (Farm) Animal Embryos , 2018 .
[59] M. Kanatsu-Shinohara,et al. Serum- and Feeder-Free Culture of Mouse Germline Stem Cells1 , 2011, Biology of reproduction.
[60] M. Yoshino,et al. Fetal Ovotestes in XX.DARRLR.XY Chimeric Mice Develop into Testes in Adults. , 1994 .