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돼지 웅성 생식선 줄기세포의 체외배양기법 개발Development of In Vitro Culture System for Male Germline Stem Cells in Porcine

Authors
김용희김병각이용안김방진김기중이명식임기순류범용
Issue Date
2009
Publisher
한국동물번식학회
Keywords
Spermatogonial stem cell; Germline stem cells; Gonocyte; Porcine; In vitro culture
Citation
Reproductive & Developmental biology, v.33, no.3, pp 171 - 177
Pages
7
Journal Title
Reproductive & Developmental biology
Volume
33
Number
3
Start Page
171
End Page
177
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/33415
ISSN
1738-2432
Abstract
Spermatogonial stem cells(SSCs) only are responsible for the generation of progeny and for the transmission of genetic information to the next generation in male. Other in vitro studies have cultured SSCs for proliferation, differentiation, and genetic modification in mouse and rat. Currently, information regarding in vitro culture of porcine Germline Stem Cell(GSC) such as gonocyte or SSC is limited and is in need of further studies. Therefore, in this study, we report development of a successful culture system for gonocytes of neonatal porcine testes. Testis cells were extracted from 10~14-day-old pigs. These cells were harvested using enzymatic digestion, and the harvested cells were purified with combination of percoll, laminin, and gelatin selection techniques. The most effective culture system of porcine gonocytes was established through trial experiments which made a comparison between different feeder cells, medium, serum concentrations, temperatures, and O2 tensions. Taken together, the optimal condition was established using C166 or Mouse Embryonic Fibroblast(MEF) feeder cell, Rat Serum Free Medium(RSFM), 0% serum concentration, 37℃ temperature, and O2 20% tension. Although we discovered the optimal culture condition for proliferation of porcine gonocytes, the gonocyte colonies ceased to expand after one month. These results suggest inadequate acquirement of ingredients essential for long term culture of porcine GSCs. Consequently, further study should be conducted to establish a successful long-term culture system for porcine GSCs by introducing various growth factors or nutrients.
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