SummaryThe identity and behavior of mouse spermatogenic stem cells have been a long-standing focus of interest. In the prevailing “As model,” stem cell function is restricted to singly isolated (As) spermatogonia. By examining single-cell dynamics of GFRα1+ stem cells in vivo, we evaluate an alternative hypothesis that, through fragmentation, syncytial spermatogonia also contribute to stem cell function in homeostasis. We use live imaging and pulse labeling to quantitatively determine the fates of individual GFRα1+ cells and find that, during steady-state spermatogenesis, the entire GFRα1+ population comprises a single stem cell pool, in which cells continually interconvert between As and syncytial states. A minimal biophysical model, relyi...
International audienceIn adults, stem cells are responsible for the maintenance of many actively ren...
Summary: Undifferentiated spermatogonia comprise a pool of stem cells and progenitor cells that show...
マウス多能性幹細胞から精子幹細胞を試験管内で誘導 : 精子形成全過程の試験管内誘導の基盤形成. 京都大学プレスリリース. 2016-12-07.The in vitro derivation and ...
Stem cells support tissue maintenance by balancing self-renewal and differentiation. In mice, it is ...
Summary: In mouse testis, a heterogeneous population of undifferentiated spermatogonia (Aundiff) har...
SummaryTo clarify the mechanisms that support the continuity of actively cycling tissues of long-liv...
Spermatogonial stem cells (SSCs) are crucial for maintaining spermatogenesis throughout life, and un...
SummaryIn cycling tissues, adult stem cells may be lost and subsequently replaced to ensure homeosta...
Spermatogonial stem cells (SSCs) continuously undergo self-renewal division to support spermatogenes...
In males, germ cell homeostasis is maintained by self-renewal and differentiation of a robust stem c...
The role of stem cells in tissue maintenance is appreciated and hierarchical models of stem cell sel...
AbstractSpermatogenesis is a complex and productive process that originates from stem cell spermatog...
This review aims at putting in perspective the many new developments in our understanding of spermat...
SummaryMammalian spermatogenesis is maintained by stem cell capacity within undifferentiated spermat...
In many tissues, homeostasis is maintained by physical contact between stem cells and an anatomicall...
International audienceIn adults, stem cells are responsible for the maintenance of many actively ren...
Summary: Undifferentiated spermatogonia comprise a pool of stem cells and progenitor cells that show...
マウス多能性幹細胞から精子幹細胞を試験管内で誘導 : 精子形成全過程の試験管内誘導の基盤形成. 京都大学プレスリリース. 2016-12-07.The in vitro derivation and ...
Stem cells support tissue maintenance by balancing self-renewal and differentiation. In mice, it is ...
Summary: In mouse testis, a heterogeneous population of undifferentiated spermatogonia (Aundiff) har...
SummaryTo clarify the mechanisms that support the continuity of actively cycling tissues of long-liv...
Spermatogonial stem cells (SSCs) are crucial for maintaining spermatogenesis throughout life, and un...
SummaryIn cycling tissues, adult stem cells may be lost and subsequently replaced to ensure homeosta...
Spermatogonial stem cells (SSCs) continuously undergo self-renewal division to support spermatogenes...
In males, germ cell homeostasis is maintained by self-renewal and differentiation of a robust stem c...
The role of stem cells in tissue maintenance is appreciated and hierarchical models of stem cell sel...
AbstractSpermatogenesis is a complex and productive process that originates from stem cell spermatog...
This review aims at putting in perspective the many new developments in our understanding of spermat...
SummaryMammalian spermatogenesis is maintained by stem cell capacity within undifferentiated spermat...
In many tissues, homeostasis is maintained by physical contact between stem cells and an anatomicall...
International audienceIn adults, stem cells are responsible for the maintenance of many actively ren...
Summary: Undifferentiated spermatogonia comprise a pool of stem cells and progenitor cells that show...
マウス多能性幹細胞から精子幹細胞を試験管内で誘導 : 精子形成全過程の試験管内誘導の基盤形成. 京都大学プレスリリース. 2016-12-07.The in vitro derivation and ...