26. Man gets genetically altered pig’s heart transplant in first-of-its-kind procedure. 2022, January 11). Fox News Retrieved from https://www.bbc.com/news/world-us-canada-59944889.
27. Douglas, C., Maciulyte, V, Zohren, J. et al. (2021). CRISPR-Cas9 effectors facilitate generation of single-sex litters and sex-specific phenotypes. Nat Commun 12,6926. https://doi.org/10.1038/s41467-021-27227-2.
28. Wei, Y., Yang C.-R., Zhao Zh.-Ao. (2022, March 7). Viable offspring derived from single unfertilized mammalian oocytes. PNAS 119(12). DOI: https://doi.org/10.1073/pnas.2115248119.
29. Bohnsack, J.P., Zhang H., Wandling G. (2022, May 4). Targeted epigenomic editing ameliorates adult anxiety and excessive drinking after adolescent alcohol exposure. Science Advances 8(18). DOI: 10.1126/sciadv.abn2748.
30. Taylor, J.H., Walton, J.C., McCann, K.E. et al. (2022, May 5). CRIS-PR-Cas9 editing of the arginine-vasopressin Via receptor produces paradoxical changes in social behavior in Syrian hamsters. PNAS 119(19). DOI: https://doi.org/10.1073/pnas.2121037119.
31. Shirai, Y„Piulachs, M.-D., Belles X. et al. (2022, May 23). DIPA-CRISPR is a simple and accessible method for insect gene editing. Cell 2(5); 100215. Retrieved from https://www.cell.com/cell-reports-methods/fulltext/S2667-2375(22)00078-9.
Глава 5
1. Berkowitz, A.L., Miller, M.B., Mir, S.A., et. al. (2016). Glioproliferative Lesion of the Spinal Cord as a Complication of “Stem-Cell Tourism”. N Engl J Med. 375: 196–198. DOI: 10.1056/NEJMcl600188.
2. Podgorny, O., Peunova, N., Park, J.-H., Enikolopov, G. (2018, February 13). Triple S-Phase Labeling of Dividing Stem Cells.
Stem Cell Reports, 10(2), pp. 615–626. https://doi.Org/10.1016/j. stemcr.2017.12.020.
3. Iwafuchi, M., Cuesta, I., Donahue, G. et al. (2020). Gene network transitions in embryos depend upon interactions between a pioneer transcription factor and core histones. Nat Genet 52, 418–427. https://doi.org/10.1038/s41588-020-0591-8.
4. Xu P.-F., Houssin, N., Ferri-Lagneau K.F. et al. (2014, April 4). Construction of a Vertebrate Embryo from Two Opposing Morphogen Gradients. Science 344(6179), pp. 87–89. DOI: 10.1126/ science.1248252.
5. Xu, P.F., Borges, R.M., Fillatre, J. et al. (2021). Construction of a mammalian embryo model from stem cells organized by a morphogen signalling centre. Nat Commun 12, 3277. https://doi. org/10.1038/s41467-021-23653-4.
6. Шутова M. Индуцированные плюрипотентные стволовые клетки // Биология, ПостНаука. – 2012. – 17 декабря. – Режим доступа: http://postnauka.ru/video/7365.
7. Yang J-H., Науапо М., Griffin Р.Т. (2023) Loss of epigenetic information as a cause of mammalian aging. Cell. Vol. 186, 2, p. 305–326.E27. DOI: https://doi.Org/10.1016/j.cell.2022.12.027
8. Nagpal, N.. Wang, J., Zeng J., et al. (2020). Small-Molecule PAPD5 Inhibitors Restore Telomerase Activity in Patient Stem Cells, Cell Stem Cell, 26(6), pp. 896–909.e8. https://doi.0rg/lO.lOl6/j. stem.2020.03.016 Retrieved from https://www.sciencedirect.com/ science/article/pii/S1934590920301387?via%3Dihub.
9. Lee, J., Bignone, P.A., Coles, L.S. et al. (2020). Induced pluripotency and spontaneous reversal of cellular aging in supercentenarian donor cells. BBRC, 525(3), pp. 563–569, https://doi.Org/10.1016/j. bbrc.2020.02.092. Retrieved from https://www.sciencedirect.com/ science/article/pii/S0006291X20303661?via%3Dihub.
10. Cyranoski, D. (2019, September 02). Woman is fi rst to receive cornea made from “reprogrammed” stem cells. Nature News. doi. org/10.1038/d41586-019-02597-2.
11. Hayashi, R., Ishikawa, Y., Sasamoto, Y. et al. Co-ordinated ocular development from human iPS cells and recovery of corneal function. Nature 531, 376–380 (2016). doi.org/10.1038/naturel7000.
12. Cyranoski, D. (2019, March 15). Japan poised to allow reprogrammed’ stem-cell therapy for damaged corneas. Nature News, https://doi.org/10.1038/d41586-019-00860-0.
13. Lesli, M. (2021, March 17). Researchers re-create key human embryo stage in lab. Science, doi: 10.1126/science.abi5723 Retrieved from https://www.science.org/content/article/researchers-re-create-key-humanembryo-stage-lab.
14. Could humans ever regenerate a heart? A new study suggests the answer is yes’ (2017, January 26). Peer-Reviewed Publication University of Florida. Proceedings of the National Academy of Sciences. Retrieved from https://www.eurekalert.org/news-releases/498753.
15. Researchers use stem cells to regenerate the external layer of a human heart (2017, January 11). Peer-Reviewed Publication Penn State. Nature Biomedical Engineering. Retrieved from https:// www.eurekalert.org/news-releases/767684.
16. Bannier-Hhlaount, M., Post Y, Korving, J. (2021, July 1). Exploring the human lacrimal gland using organoids and singlecell sequencing Cell 28(7), pp. 1221–1232.E7. DOI: https://doi. org/10.1016/j.stem.2021.02.024.
17. Lütolf, M. (2020, September 16). Next-gen organoids grow and function like real tissues. EPFL. https://actu.epfl.ch/news/next-gen-organoidsgrow-and-function-like-real-tis/.