期刊文献+

Application of three-dimensional culture systems to study mammalian spermatogenesis, with an emphasis on the rhesus monkey (Macaca mulatta) 被引量:6

Application of three-dimensional culture systems to study mammalian spermatogenesis, with an emphasis on the rhesus monkey (Macaca mulatta)
原文传递
导出
摘要 In vitro culture of spermatogonial stem cells (SSCs) has generally been performed using two-dimensional (2D) culture systems; however, such cultures have not led to the development of complete spermatogenesis. It seems that 2D systems do not replicate optimal conditions of the seminiferous tubules (including those generated by the SSC niche) and necessary for spermatogenesis. Recently, one of our laboratories has been able to induce proliferation and differentiation of mouse testicular germ cells to meiotic and postmeiotic stages including generation of sperm in a 3D soft agar culture system (SACS) and a 3D methylcellulose culture system (MCS). It was suggested that SACS and MCS form a special 3D microenvironment that mimics germ cell niche formation in the seminiferous tubules, and thus permits mouse spermatogenesis in vitro. In this review, we (1) provide a brief overview of the differences in spermatogenesis in rodents and primates, (2) summarize data related to attempts to generate sperm in vitro, (3) report for the first time formation of colonies/clusters of cells and differentiation of meiotic (expression of CREM-1) and postmeiotic (expression of acrosin) germ cells from undifferentiated spermatogonia isolated from the testis of prepubertal rhesus monkeys and cultured in SACS and MCS, and (4) indicate research needed to optimize 3D systems for in vitro primate spermatogenesis and for possible future application to man. In vitro culture of spermatogonial stem cells (SSCs) has generally been performed using two-dimensional (2D) culture systems; however, such cultures have not led to the development of complete spermatogenesis. It seems that 2D systems do not replicate optimal conditions of the seminiferous tubules (including those generated by the SSC niche) and necessary for spermatogenesis. Recently, one of our laboratories has been able to induce proliferation and differentiation of mouse testicular germ cells to meiotic and postmeiotic stages including generation of sperm in a 3D soft agar culture system (SACS) and a 3D methylcellulose culture system (MCS). It was suggested that SACS and MCS form a special 3D microenvironment that mimics germ cell niche formation in the seminiferous tubules, and thus permits mouse spermatogenesis in vitro. In this review, we (1) provide a brief overview of the differences in spermatogenesis in rodents and primates, (2) summarize data related to attempts to generate sperm in vitro, (3) report for the first time formation of colonies/clusters of cells and differentiation of meiotic (expression of CREM-1) and postmeiotic (expression of acrosin) germ cells from undifferentiated spermatogonia isolated from the testis of prepubertal rhesus monkeys and cultured in SACS and MCS, and (4) indicate research needed to optimize 3D systems for in vitro primate spermatogenesis and for possible future application to man.
出处 《Asian Journal of Andrology》 SCIE CAS CSCD 2015年第6期972-980,I0009,共10页 亚洲男性学杂志(英文版)
关键词 in vitrospermatogenesis methylcellulose culture system MONKEY PRIMATES soft agar culture system three-dimensional culture system in vitrospermatogenesis methylcellulose culture system monkey primates soft agar culture system three-dimensional culture system
  • 相关文献

参考文献2

二级参考文献32

  • 1Huleihel M, AbuElhija M, Lunenfeld E. In vitro culture of testicular germ cells: regulatory factors and limitations. Growth Factors 2007; 25: 236-51.
  • 2Ehmcke J, Wistuba J, Schlatt S. Spermatogonial stem cells: questions, models and perspectives. Hum Reprod Update 2006; 12: 275-82.
  • 3Creemers LB, den Ouden K, van Pelt AMM, de Rooij DJ. Maintenance of adult mouse type A spermatogonia in vitro: influence of serum and growth factors and comparison with prepubertal spermatogonial cell culture. Reproduction 2002; 124: 791-9.
  • 4Hasthorpe S, Barbic S, Farmer PJ, Hutson JM. Neonatal mouse gonocyte proliferation assayed by an In vitro clonogenic method. J Reprod Fertil1999; 116: 335-44.
  • 5Izadyar F, den Ouden K, Creemers LB, Posthuma G, Parvinen M et al. Proliferation and differentiation of bovine type A spermatogonia during long-term culture. Biol Reprod 2003; 68: 272-81.
  • 6Sofikitis N, Pappas E, Kawatani A, Baltogiannis D, Loutradis 0 et al. Efforts to create an artificial testis: culture systems of male germ cells under biochemical conditions resembling the seminiferous tubular biochemical environment. Hum Reprod Update 2005; 11: 229-59.
  • 7Tesarik J, Greco E, Mendoza C. Assisted reproduction with In vitro cultured testicular spermatozoa in cases of severe germ cell apoptosis. a pilot study. Hum Reprod2001; 16: 2640-5.
  • 8Sousa M, Cremades N, Alves C, Silva J, Barros A. Developmental potential of human spermatogenic cells co-cultured with Sertoli cells. Hum Reprod 2002; 17: 161-72.
  • 9Nagano M, Ryu BY, Brinster CJ, Avarbock MR, Brinster R. Maintenance of mouse male germ line stem cells In vitro. Biol Reprod 2003; 68: 2207-14.
  • 10Kanatsu-Shinohara M, Ogonuki N, Inoue K, Miki H, Ogura A et al. Long-term proliferation in culture and germline transmission of mouse male germline stem cells. Biol Reprod 2003; 69: 612-6.

共引文献24

同被引文献15

引证文献6

二级引证文献8

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部