نتایج جستجو برای: spermatogonial transplantation

تعداد نتایج: 144019  

Journal: :avicenna journal of medical biotechnology 0

background: in cancer patients, chemo and radiotherapy can cause infertility by damaging spermatogenesis process. this process is based on self-renewal and differentiation of a rare population of the testicular cells called spermatogonial stem cells (sscs). scientists have tried to isolate, enrich and culture human spermatogonial stem cells, hoping to resolve infertility problems in cancer reco...

2014
Laura A. Martin Nicholas Assif Moses Gilbert Dinali Wijewarnasuriya Marco Seandel

Pathogenic de novo mutations increase with fathers' age and could be amplified through competition between genetically distinct subpopulations of spermatogonial stem cells (SSCs). Here, we tested the fitness of SSCs bearing wild-type human FGFR2 or an Apert syndrome mutant, FGFR2 (S252W), to provide experimental evidence for SSC competition. The S252W allele conferred enhanced FGFR2-mediated si...

Journal: :Reproduction 2001
S Meachem V von Schönfeldt S Schlatt

Interest in spermatogonia has grown in recent years as a result of exciting developments in stem cell research in general and the development of new research tools allowing the isolation, culture and transplantation of these cells. This review focuses on the methodological breakthroughs and highlights the recent findings that have substantially increased understanding of spermatogonial physiolo...

Journal: :Archives of histology and cytology 2004
Takehiko Ogawa Masako Ohmura Yoichi Tamura Kaoru Kita Kazuyuki Ohbo Toshio Suda Yoshinobu Kubota

Spermatogonial stem cells (SSCs), having yet to possess decisive markers, can only be detected retrospectively by transplantation assay. It was reported recently that mouse gonocytes collected from DBA/2 and ICR neonates propagated in vitro. This cultured germ cell, named the germline stem cell (GS cell), produced functional sperm to make progeny when transplanted into recipient mouse testes. H...

Journal: :Cell stem cell 2012
Mito Kanatsu-Shinohara Kimiko Inoue Seiji Takashima Masanori Takehashi Narumi Ogonuki Hiroko Morimoto Takashi Nagasawa Atsuo Ogura Takashi Shinohara

Spermatogonial stem cells (SSCs) reside in specific niches within seminiferous tubules. These niches are thought to secrete chemotactic factors for SSCs, because SSCs migrate to them upon transplantation. However, the identity of these chemotactic molecules remains unknown. Here, we established a testis feeder cell culture system and used it to identify SSC chemotactic factors. When seeded on t...

2017
Claudia Carrieri Stefano Comazzetto Amit Grover Marcos Morgan Andreas Buness Claus Nerlov Dónal O'Carroll

The spermatogonial stem cell (SSC) that supports spermatogenesis throughout adult life resides within the GFRα1-expressing A type undifferentiated spermatogonia. The decision to commit to spermatogenic differentiation coincides with the loss of GFRα1 and reciprocal gain of Ngn3 (Neurog3) expression. Through the analysis of the piRNA factor Miwi2 (Piwil4), we identify a novel population of Ngn3-...

2015
Hye-Ryun Kang Yong-An Lee Yong-Hee Kim Dong Gu Lee Bang-Jin Kim Ki-Jung Kim Byung-Gak Kim Myeong-Geun Oh Chan Kyu Han Sanghyun Lee Buom-Yong Ryu Pranela Rameshwar

Oriental natural plants have been used as medical herbs for the treatment of various diseases for over 2,000 years. In this study, we evaluated the effect of several natural plants on the preservation of male fertility by assessing the ability of plant extracts to stimulate spermatogonial stem cell (SSC) proliferation by using a serum-free culture method. In vitro assays showed that Petasites j...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2015
Tsutomu Endo Katherine A Romer Ericka L Anderson Andrew E Baltus Dirk G de Rooij David C Page

Mammalian spermatogenesis--the transformation of stem cells into millions of haploid spermatozoa--is elaborately organized in time and space. We explored the underlying regulatory mechanisms by genetically and chemically perturbing spermatogenesis in vivo, focusing on spermatogonial differentiation, which begins a series of amplifying divisions, and meiotic initiation, which ends these division...

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