The recent and unanticipated successes in both cloning sheep using nuclei from adult fibroblasts and in solving many forms of infertility by ICSI, now raises questions as to whether a combination of these approaches will result in reliable and efficient methods for propagating valuable research models, especially NHPs. The technologies routinely available for creating invaluable rodent models for various diseases and many serious human disorders are sometimes not appropriately studied in these lower mammals. Furthermore, spontaneous mutations resulting in unique animals to investigate diseases (e.g., retinitis pigmentosa) are periodically discovered in NHP colonies, and the ability to propagate these animals is vital for future investigations. For these reasons, there are strong justification for developing reliable and effective methods for propagating identical NHPs. While electrofusion of blastomere nuclei with enucleated rhesus oocytes resulted in two offspring (one male, the other female) in 1996, last year's attempts have not been successful. ICNI holds bright promise as an alternative approach for propagating identical NHPs. To that end, this application seeks to sequentially perfect ICNI capabilities and develop new animal resources by addressing twenty-three questions in four Specific Aims: 1) Is ICSI an effective and efficient method for propagating rhesus monkeys?; 2) Is ROSI an effective method for propagation?; 3) Is blastomere ICNI, using blastomere nuclei obtained from rhesus monkey embryos injected into unfertilized enucleated oocytes, an effective and efficient method of propagation?; and 4) Is somatic ICNI, using nuclei obtained from somatic cells cultured from adult and fetal rhesus tissues and injected into unfertilized enucleated oocytes, an effective and efficient method of propagation? By expanding the manner in which reproduction is achieved, the utility of this model for propagating important research animals will be greatly enhanced. ICNI may well find uses as a reliable, routine approach for propagating invaluable research animal resources for the entire biomedical research community.

Agency
National Institute of Health (NIH)
Institute
National Center for Research Resources (NCRR)
Type
Resource-Related Research Projects (R24)
Project #
1R24RR013632-01
Application #
2740297
Study Section
National Center for Research Resources Initial Review Group (RIRG)
Project Start
1998-09-30
Project End
2003-09-29
Budget Start
1998-09-30
Budget End
1999-09-29
Support Year
1
Fiscal Year
1998
Total Cost
Indirect Cost
Name
Oregon Regional Primate Research Center
Department
Type
DUNS #
City
Beaverton
State
OR
Country
United States
Zip Code
97006
Phillips, Kimberley A; Kochunov, Peter (2011) Tracking development of the corpus callosum in fetal and early postnatal baboons using magnetic resonance imaging. Open Neuroimag J 5:179-85
Simerly, Calvin; McFarland, Dave; Castro, Carlos et al. (2011) Interspecies chimera between primate embryonic stem cells and mouse embryos: monkey ESCs engraft into mouse embryos, but not post-implantation fetuses. Stem Cell Res 7:28-40
Ben-Yehudah, Ahmi; Navara, Christopher S; Redinger, Carrie J et al. (2010) Pluripotency genes overexpressed in primate embryonic stem cells are localized on homologues of human chromosomes 16, 17, 19, and X. Stem Cell Res 4:25-37
Kochunov, Peter; Duff Davis, Michael (2010) Development of structural MR brain imaging protocols to study genetics and maturation. Methods 50:136-46
Simerly, Calvin R; Castro, Carlos A; Jacoby, Ethan et al. (2010) Assisted Reproductive Technologies (ART) with baboons generate live offspring: a nonhuman primate model for ART and reproductive sciences. Reprod Sci 17:917-30
Kochunov, Peter; Castro, Carlos; Davis, Duff M et al. (2010) Fetal brain during a binge drinking episode: a dynamic susceptibility contrast MRI fetal brain perfusion study. Neuroreport 21:716-21
Tachibana, Masahito; Sparman, Michelle; Sritanaudomchai, Hathaitip et al. (2009) Mitochondrial gene replacement in primate offspring and embryonic stem cells. Nature 461:367-72
Simerly, Calvin R; Navara, Christopher S; Castro, Carlos A et al. (2009) Establishment and characterization of baboon embryonic stem cell lines: an Old World Primate model for regeneration and transplantation research. Stem Cell Res 2:178-87
Momcilovi?, Olga; Choi, Serah; Varum, Sandra et al. (2009) Ionizing radiation induces ataxia telangiectasia mutated-dependent checkpoint signaling and G(2) but not G(1) cell cycle arrest in pluripotent human embryonic stem cells. Stem Cells 27:1822-35
Navara, Christopher S; Mich-Basso, Jocelyn D; Redinger, Carrie J et al. (2007) Pedigreed primate embryonic stem cells express homogeneous familial gene profiles. Stem Cells 25:2695-704

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