Abuelo D. Clinical significance of chimerism // Am J Med Genet C Semin Med Genet. — 2009. — Т. 151C, вып. 2. — С. 148—51. — doi:10.1002/ajmg.c.30213. — PMID19378333.
Chen K., Chmait R. H., Vanderbilt D., Wu S., Randolph L. Chimerism in monochorionic dizygotic twins: case study and review // Am J Med Genet A. — 2013. — Т. 161A, вып. 7. — С. 1817—24. — doi:10.1002/ajmg.a.35957. — PMID23703979.
Fu, R., Yu, D., Ren, J., Li, C., Wang, J., Feng, G., ... & Zhou, Q. (2020). Domesticated cynomolgus monkey embryonic stem cells allow the generation of neonatal interspecies chimeric pigs. Protein & cell, 11(2), 97-107. PMC6954905doi:10.1007/s13238-019-00676-8
Simerly, C., McFarland, D., Castro, C., Lin, C. C., Redinger, C., Jacoby, E., ... & Schatten, G. (2011). Interspecies chimera between primate embryonic stem cells and mouse embryos: monkey ESCs engraft into mouse embryos, but not post-implantation fetuses. Stem cell research, 7(1), 28-40. PMID21543277PMC5053765doi:10.1016/j.scr.2011.03.002
Liu, T., Li, J., Yu, L., Sun, H. X., Li, J., Dong, G., ... & Gu, Y. (2021). Cross-species single-cell transcriptomic analysis reveals pre-gastrulation developmental differences among pigs, monkeys, and humans. Cell discovery, 7(1), 1-17. PMID33531465PMC7854681doi:10.1038/s41421-020-00238-x
doi.org
Rayon, T., & Briscoe, J. (2021). Cross-species comparisons and in vitro models to study tempo in development and homeostasis. Interface Focus, 11(3), Article ID:20200069 https://doi.org/10.1098/rsfs.2020.0069
Zheng, C., Hu, Y., Sakurai, M. et al. (2021). Cell competition constitutes a barrier for interspecies chimerism. Nature 592, 272–276 https://doi.org/10.1038/s41586-021-03273-0
Abuelo D. Clinical significance of chimerism // Am J Med Genet C Semin Med Genet. — 2009. — Т. 151C, вып. 2. — С. 148—51. — doi:10.1002/ajmg.c.30213. — PMID19378333.
Chen K., Chmait R. H., Vanderbilt D., Wu S., Randolph L. Chimerism in monochorionic dizygotic twins: case study and review // Am J Med Genet A. — 2013. — Т. 161A, вып. 7. — С. 1817—24. — doi:10.1002/ajmg.a.35957. — PMID23703979.
Wu, J., Platero-Luengo, A., Sakurai, M., Sugawara, A., Gil, M. A., Yamauchi, T., ... & Belmonte, J. C. I. (2017). Interspecies chimerism with mammalian pluripotent stem cells. Cell, 168(3), 473-486. {{PMID 28129541 PMCID: PMC5679265 DOI: 10.1016/j.cell.2016.12.036}}
Fu, R., Yu, D., Ren, J., Li, C., Wang, J., Feng, G., ... & Zhou, Q. (2020). Domesticated cynomolgus monkey embryonic stem cells allow the generation of neonatal interspecies chimeric pigs. Protein & cell, 11(2), 97-107. PMC6954905doi:10.1007/s13238-019-00676-8
Simerly, C., McFarland, D., Castro, C., Lin, C. C., Redinger, C., Jacoby, E., ... & Schatten, G. (2011). Interspecies chimera between primate embryonic stem cells and mouse embryos: monkey ESCs engraft into mouse embryos, but not post-implantation fetuses. Stem cell research, 7(1), 28-40. PMID21543277PMC5053765doi:10.1016/j.scr.2011.03.002
Liu, T., Li, J., Yu, L., Sun, H. X., Li, J., Dong, G., ... & Gu, Y. (2021). Cross-species single-cell transcriptomic analysis reveals pre-gastrulation developmental differences among pigs, monkeys, and humans. Cell discovery, 7(1), 1-17. PMID33531465PMC7854681doi:10.1038/s41421-020-00238-x
Yu N., Kruskall M. S., Yunis J. J., Knoll J. H., Uhl L., Alosco S., Ohashi M., Clavijo O., Husain Z., Yunis E. J., Yunis J. J., Yunis E. J. Disputed maternity leading to identification of tetragametic chimerism // N Engl J Med. — 2002. — Т. 346, вып. 20. — С. 1545—52. — PMID12015394.