Literature DB >> 16932264

Technology insight: In vitro culture of spermatogonial stem cells and their potential therapeutic uses.

Hiroshi Kubota1, Ralph L Brinster.   

Abstract

Male germline stem cells--spermatogonial stem cells (SSCs)--self-renew and produce large numbers of differentiating germ cells that become spermatozoa throughout postnatal life and transmit genetic information to the next generation. SSCs are the only germline stem cells in adults, because all female germline stem cells cease proliferation before birth. In this article, we first summarize development of SSCs, and then the relation of SSCs to somatic stem cells in tissues and pluripotent stem cells in vitro, such as embryonic stem cells. Next, we describe a transplantation technique in which donor testis cells from a fertile male can be transplanted to the testes of an infertile male where they re-establish spermatogenesis and restore fertility. The transplantation technique has been used to study the biology of SSCs, which made possible the identification of external factors that support in vitro self-renewal and proliferation of mouse and rat SSCs. Since SSCs of all mammalian species examined, including human, can replicate in mouse seminiferous tubules following transplantation, the growth factors required for SSC self-renewal are probably conserved among mammalian species. Culture techniques should therefore soon be available for human SSCs. In the final section, we discuss current and potential approaches for using the transplantation technique and in vitro culture of SSCs in human medicine. Because assisted reproductive techniques to fertilize oocytes with round or elongated spermatids are available, clinical use of cultured human SSCs will be greatly facilitated by development of techniques for in vitro differentiation of SSCs to mature germ cells.

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Year:  2006        PMID: 16932264      PMCID: PMC5234562          DOI: 10.1038/ncpendmet0098

Source DB:  PubMed          Journal:  Nat Clin Pract Endocrinol Metab        ISSN: 1745-8366


  72 in total

1.  Spermatogonial stem cell enrichment by multiparameter selection of mouse testis cells.

Authors:  T Shinohara; K E Orwig; M R Avarbock; R L Brinster
Journal:  Proc Natl Acad Sci U S A       Date:  2000-07-18       Impact factor: 11.205

Review 2.  New perspectives for gene therapy in endocrinology.

Authors:  L Barzon; R Bonaguro; G Palù; M Boscaro
Journal:  Eur J Endocrinol       Date:  2000-10       Impact factor: 6.664

3.  Genetic analysis of the clonal origin of regenerating mouse spermatogenesis following transplantation.

Authors:  Xiangfan Zhang; Kevin T Ebata; Makoto C Nagano
Journal:  Biol Reprod       Date:  2003-08-06       Impact factor: 4.285

4.  Germ-line immortality.

Authors:  Martin M Matzuk
Journal:  Proc Natl Acad Sci U S A       Date:  2004-11-16       Impact factor: 11.205

5.  Highly efficient endogenous human gene correction using designed zinc-finger nucleases.

Authors:  Fyodor D Urnov; Jeffrey C Miller; Ya-Li Lee; Christian M Beausejour; Jeremy M Rock; Sheldon Augustus; Andrew C Jamieson; Matthew H Porteus; Philip D Gregory; Michael C Holmes
Journal:  Nature       Date:  2005-04-03       Impact factor: 49.962

6.  Long-term proliferation in culture and germline transmission of mouse male germline stem cells.

Authors:  Mito Kanatsu-Shinohara; Narumi Ogonuki; Kimiko Inoue; Hiromi Miki; Atsuo Ogura; Shinya Toyokuni; Takashi Shinohara
Journal:  Biol Reprod       Date:  2003-04-16       Impact factor: 4.285

7.  Transplantation of germ cells from rabbits and dogs into mouse testes.

Authors:  I Dobrinski; M R Avarbock; R L Brinster
Journal:  Biol Reprod       Date:  1999-11       Impact factor: 4.285

8.  Spermatogenesis following male germ-cell transplantation.

Authors:  R L Brinster; J W Zimmermann
Journal:  Proc Natl Acad Sci U S A       Date:  1994-11-22       Impact factor: 11.205

9.  Autologous and homologous transplantation of bovine spermatogonial stem cells.

Authors:  F Izadyar; K Den Ouden; T A E Stout; J Stout; J Coret; D P K Lankveld; T J P Spoormakers; B Colenbrander; J K Oldenbroek; K D Van der Ploeg; H Woelders; H B Kal; D G De Rooij
Journal:  Reproduction       Date:  2003-12       Impact factor: 3.906

10.  Mouse embryonic germ (EG) cell lines: transmission through the germline and differences in the methylation imprint of insulin-like growth factor 2 receptor (Igf2r) gene compared with embryonic stem (ES) cell lines.

Authors:  P A Labosky; D P Barlow; B L Hogan
Journal:  Development       Date:  1994-11       Impact factor: 6.868

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  57 in total

1.  Experimental evidence showing that no mitotically active female germline progenitors exist in postnatal mouse ovaries.

Authors:  Hua Zhang; Wenjing Zheng; Yan Shen; Deepak Adhikari; Hiroo Ueno; Kui Liu
Journal:  Proc Natl Acad Sci U S A       Date:  2012-07-09       Impact factor: 11.205

Review 2.  New routes for transgenesis of the mouse.

Authors:  José E Belizário; Priscilla Akamini; Philip Wolf; Bryan Strauss; José Xavier-Neto
Journal:  J Appl Genet       Date:  2012-05-09       Impact factor: 3.240

Review 3.  Potency of germ cells and its relevance for regenerative medicine.

Authors:  Parisa Mardanpour; Kaomei Guan; Jessica Nolte; Jae Ho Lee; Gerhard Hasenfuss; Wolfgang Engel; Karim Nayernia
Journal:  J Anat       Date:  2008-06-28       Impact factor: 2.610

4.  Xeno-free culture of human spermatogonial stem cells supported by human embryonic stem cell-derived fibroblast-like cells.

Authors:  Bin Chen; Yu-Bin Wang; Zhi-Ling Zhang; Wei-Liang Xia; Hong-Xiang Wang; Zu-Qiong Xiang; Kai Hu; Yin-Fa Han; Yi-Xin Wang; Yi-Ran Huang; Zheng Wang
Journal:  Asian J Androl       Date:  2009-08-17       Impact factor: 3.285

5.  Alteration of spermatogenesis following spermatogonial stem cells transplantation in testicular torsion-detorsion mice.

Authors:  Saeid Azizollahi; Reza Aflatoonian; Mohammad Ali Sadighi Gilani; Babak Behnam; Nader Tajik; Mohammad Asghari-Jafarabadi; Hamid Reza Asgari; Morteza Koruji
Journal:  J Assist Reprod Genet       Date:  2016-04-06       Impact factor: 3.412

Review 6.  Pluripotency of male germline stem cells.

Authors:  Sungtae Kim; Juan Carlos Izpisua Belmonte
Journal:  Mol Cells       Date:  2011-03-24       Impact factor: 5.034

7.  Diagnosing spermatogonial stemness.

Authors:  F Kent Hamra
Journal:  Biol Reprod       Date:  2015-03-25       Impact factor: 4.285

8.  Development of a high-yield technique to isolate spermatogonial stem cells from porcine testes.

Authors:  Min Hee Park; Ji Eun Park; Min Seong Kim; Kwon Young Lee; Hye Jin Park; Jung Im Yun; Jung Hoon Choi; Eun song Lee; Seung Tae Lee
Journal:  J Assist Reprod Genet       Date:  2014-06-18       Impact factor: 3.412

9.  Isolation and cultivation of stem cells from adult mouse testes.

Authors:  Kaomei Guan; Frieder Wolf; Alexander Becker; Wolfgang Engel; Karim Nayernia; Gerd Hasenfuss
Journal:  Nat Protoc       Date:  2009       Impact factor: 13.491

10.  Isolation and characterization of pluripotent human spermatogonial stem cell-derived cells.

Authors:  Nina Kossack; Juanito Meneses; Shai Shefi; Ha Nam Nguyen; Shawn Chavez; Cory Nicholas; Joerg Gromoll; Paul J Turek; Renee A Reijo-Pera
Journal:  Stem Cells       Date:  2009-01       Impact factor: 6.277

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