Homing efficiency and proliferation kinetics of male germ line stem cells following transplantation in mice

被引:126
作者
Nagano, MC [1 ]
机构
[1] McGill Univ, Dept Obstet & Gynecol, Montreal, PQ H3A 1A1, Canada
关键词
spermatogenesis; testis;
D O I
10.1095/biolreprod.103.016352
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Stem cells in the male germ line (spermatogonial stem cells [SSCs]) are an important target for male fertility restoration and germ line gene modification. To establish a model system to study the biology and the applications of SSCs in mice, I used a sequential transplantation strategy to analyze the process by which SSCs colonize the stem cell niche after transplantation and to determine the efficiency of the process (homing efficiency). I further analyzed the proliferation kinetics of SSCs after colonization. The number of SSCs gradually decreased during the homing process, and only 12% of SSCs successfully colonized the niche on Day 7 after transplantation, but the number of SSCs increased by Day 14. Thus, homing efficiency of adult mouse SSCs is 12%. These results indicate that SSCs are rapidly lost upon transplantation and require similar to1 wk to settle into their niches before initiating expansion. Using this SSC homing efficiency, I calculated that similar to3000 SSCs exist in one normal adult testis, representing similar to0.01% of total testis cells. Between 7 days and I mo after transplantation, SSCs proliferated 7.5-fold. However, they did not significantly proliferate thereafter until 2 mo, and only 8 SSCs supported one colony of donor-derived spermatogenesis from 1 to 2 mo. These results suggest that self-renewal and differentiation of SSCs are strictly regulated in coordination with the progress of an entire unit of regenerating spermatogenesis.
引用
收藏
页码:701 / 707
页数:7
相关论文
共 29 条
[11]   Toward regenerative medicine [J].
Lagasse, E ;
Shizuru, JA ;
Uchida, N ;
Tsukamoto, A ;
Weissman, IL .
IMMUNITY, 2001, 14 (04) :425-436
[12]  
Lord Brian I., 1997, P401, DOI 10.1016/B978-012563455-7/50014-3
[13]   Regulatory mechanisms in stem cell biology [J].
Morrison, SJ ;
Shah, NM ;
Anderson, DJ .
CELL, 1997, 88 (03) :287-298
[14]   THE LONG-TERM REPOPULATING SUBSET OF HEMATOPOIETIC STEM-CELLS IS DETERMINISTIC AND ISOLATABLE BY PHENOTYPE [J].
MORRISON, SJ ;
WEISSMAN, IL .
IMMUNITY, 1994, 1 (08) :661-673
[15]   Transgenic mice produced by retroviral transduction of male germ-line stem cells [J].
Nagano, M ;
Brinster, CJ ;
Orwig, KE ;
Ryu, BY ;
Avarbock, MR ;
Brinster, RL .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2001, 98 (23) :13090-13095
[16]   Pattern and kinetics of mouse donor spermatogonial stem cell colonization in recipient testes [J].
Nagano, M ;
Avarbock, MR ;
Brinster, RL .
BIOLOGY OF REPRODUCTION, 1999, 60 (06) :1429-1436
[17]   Expansion of murine spermatogonial stem cells through serial transplantation [J].
Ogawa, T ;
Ohmura, M ;
Yumura, Y ;
Sawada, H ;
Kubota, Y .
BIOLOGY OF REPRODUCTION, 2003, 68 (01) :316-322
[18]  
Ogawa T, 1997, INT J DEV BIOL, V41, P111
[19]  
Ohta H, 2000, DEV GROWTH DIFFER, V42, P105
[20]   Development of germ cell transplants in mice [J].
Parreira, GG ;
Ogawa, T ;
Avarbock, MR ;
França, LR ;
Brinster, RL ;
Russell, LD .
BIOLOGY OF REPRODUCTION, 1998, 59 (06) :1360-1370