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Establishment of a Simple and Effective Method for Isolating Male Germline Stem Cells (GSCs) from Testicular Cells of Neonatal and Adult Mice
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  • Establishment of a Simple and Effective Method for Isolating Male Germline Stem Cells (GSCs) from Testicular Cells of Neonatal and Adult Mice
  • Establishment of a Simple and Effective Method for Isolating Male Germline Stem Cells (GSCs) from Testicular Cells of Neonatal and Adult Mice
저자명
Kim. Kye-Seong,Lim. Jung-Jin,Yang. Yun-Hee,Kim. Soo-Kyoung,Yoon. Tae-Ki,Cha. Kwang-Yul,Lee. Dong-Ryul
간행물명
Journal of microbiology and biotechnology
권/호정보
2006년|16권 9호|pp.1347-1354 (8 pages)
발행정보
한국미생물생명공학회
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정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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The aims of this study were to establish a simple and effective method for isolating male germline stem cells (GSCs), and to test the possibility of using these cells as a new approach for male infertility treatment. Testes obtained from neonatal and adult mice were manually decapsulated. GSCs were collected from seminiferous tubules by a two-step enzyme digestion method and plated on gelatin-coated dishes. Over 5-7 days of culture, GSCs obtained from neonates and adults gave rise to large multicellular colonies that were subsequently grown for 10 passages. During in vitro proliferation, oct-4 and two immunological markers (Integrin ${eta}1,;{alpha}6$) for GSCs were highly expressed in the cell colonies. During another culture period of 6 weeks to differentiate to later stage germ cells, the expression of oct-4 mRNA decreased in GSCs and Sertoli cells encapsulated with calcium alginate, but the expression of c-kit and testis-specific histone protein 2B(TH2B) mRNA as well as the localization of c-kit protein was increased. Expression of transition protein (TP-l) and localization of peanut agglutinin were not seen until 3 weeks after culturing, and appeared by 6 weeks of culture. The putative spermatids derived from GSCs supported embryonic development up to the blastocyst stage with normal chromosomal ploidy after chemical activation. Thus, GSCs isolated from neonatal and adult mouse testes were able to be maintained and proliferated in our simple culture conditions. These GSCs have the potential to differentiate into haploid germ cells during another long-term culture.