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Spermatogonial Stem Cells in Higher Primates: Are There Differences from Those in Rodents?

Overview
Journal Reproduction
Date 2009 Nov 3
PMID 19880674
Citations 79
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Abstract

Spermatogonial stem cells (SSCs) maintain spermatogenesis throughout the reproductive life of mammals. While A(single) spermatogonia comprise the rodent SSC pool, the identity of the stem cell pool in the primate spermatogenic lineage is not well established. The prevailing model is that primate spermatogenesis arises from A(dark) and A(pale) spermatogonia, which are considered to represent reserve and active stem cells respectively. However, there is limited information about how the A(dark) and A(pale) descriptions of nuclear morphology correlate with the clonal (A(single), A(paired), and A(aligned)), molecular (e.g. GFRalpha1 (GFRA1) and PLZF), and functional (SSC transplantation) descriptions of rodent SSCs. Thus, there is a need to investigate primate SSCs using criteria, tools, and approaches that have been used to investigate rodent SSCs over the past two decades. SSCs have potential clinical application for treating some cases of male infertility, providing impetus for characterizing and learning to manipulate these adult tissue stem cells in primates (nonhuman and human). This review recounts the development of a xenotransplant assay for functional identification of primate SSCs and progress dissecting the molecular and clonal characteristics of the primate spermatogenic lineage. These observations highlight the similarities and potential differences between rodents and primates regarding the SSC pool and the kinetics of spermatogonial self-renewal and clonal expansion. With new tools and reagents for studying primate spermatogonia, the field is poised to develop and test new hypotheses about the biology and regenerative capacity of primate SSCs.

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References
1.
Yoshida S, Takakura A, Ohbo K, Abe K, Wakabayashi J, Yamamoto M . Neurogenin3 delineates the earliest stages of spermatogenesis in the mouse testis. Dev Biol. 2004; 269(2):447-58. DOI: 10.1016/j.ydbio.2004.01.036. View

2.
Mikkola M, Sironen A, Kopp C, Taponen J, Sukura A, Vilkki J . Transplantation of normal boar testicular cells resulted in complete focal spermatogenesis in a boar affected by the immotile short-tail sperm defect. Reprod Domest Anim. 2006; 41(2):124-8. DOI: 10.1111/j.1439-0531.2006.00651.x. View

3.
Clermont Y . Two classes of spermatogonial stem cells in the monkey (Cercopithecus aethiops). Am J Anat. 1969; 126(1):57-71. DOI: 10.1002/aja.1001260106. View

4.
Simorangkir D, Marshall G, Plant T . A re-examination of proliferation and differentiation of type A spermatogonia in the adult rhesus monkey (Macaca mulatta). Hum Reprod. 2009; 24(7):1596-604. PMC: 2698324. DOI: 10.1093/humrep/dep051. View

5.
Fritz I . Reflections on the evolution of the regulation of spermatogenesis. Prog Clin Biol Res. 1986; 226:371-88. View