Literature DB >> 11010813

The whole meiotic process can occur in vitro in untransformed rat spermatogenic cells.

C Staub1, D Hue, J C Nicolle, M H Perrard-Sapori, D Segretain, P Durand.   

Abstract

The aim of the present study was to assess whether the whole meiotic process of spermatogenic cells is able to take place in vitro. Fragments of seminiferous tubules from 20- to 22- or 28-day-old rats were seeded in medium containing 0.2% fetal calf serum in bicameral chambers and then cultured for 4 weeks in a chemically defined medium. The differentiation of meiotic germinal cells was followed by four criteria: (i) ultramicroscopic examination of the different types of germ cells present in the cell layer throughout the culture period; (ii) determination of the changes in DNA content per nucleus of the cell population seeded with time in culture; (iii) assessment of the ability of germinal cells to transcribe genes expressed after completion of meiosis; and (iv) monitoring the fate of BrdU-labeled leptotene spermatocytes. The ultrastructural study showed that the overall organization of the cells in the culture well recalls that of the seminiferous epithelium throughout the culture period. Moreover the identification of young round spermatids 21 days after seeding suggested that these spermatids had been formed very recently in culture. Determination of DNA content per nucleus showed that a 1C cell population could be observed after several days of cultures reaching 6 to 10% of total cells. An exponential-like increase in the amounts of the mRNAs encoding for TP1 or TP2 occurred from the time when 1C cells appeared in the culture until the end of the experiment. Finally, BrdU-labeled leptotene spermatocytes differentiated into pachytene spermatocytes and then into secondary spermatocytes, and BdrU-labeled round spermatids were observed from Day 21 of culture onward. Taken together these results indicate that the whole meiotic process from leptotene spermatocyte to round spermatid can indeed occur in vitro under the present culture conditions. Copyright 2000 Academic Press.

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Year:  2000        PMID: 11010813     DOI: 10.1006/excr.2000.4998

Source DB:  PubMed          Journal:  Exp Cell Res        ISSN: 0014-4827            Impact factor:   3.905


  19 in total

1.  In vitro production of functional sperm in cultured neonatal mouse testes.

Authors:  Takuya Sato; Kumiko Katagiri; Ayako Gohbara; Kimiko Inoue; Narumi Ogonuki; Atsuo Ogura; Yoshinobu Kubota; Takehiko Ogawa
Journal:  Nature       Date:  2011-03-24       Impact factor: 49.962

Review 2.  In Vitro Spermatogenesis: How Far from Clinical Application?

Authors:  Guillermo Galdon; Anthony Atala; Hooman Sadri-Ardekani
Journal:  Curr Urol Rep       Date:  2016-07       Impact factor: 3.092

3.  Long-term proliferation and characterization of human spermatogonial stem cells obtained from obstructive and non-obstructive azoospermia under exogenous feeder-free culture conditions.

Authors:  J J Lim; S-Y Sung; H J Kim; S-H Song; J Y Hong; T K Yoon; J K Kim; K-S Kim; D R Lee
Journal:  Cell Prolif       Date:  2010-08       Impact factor: 6.831

Review 4.  Proliferation of spermatogonial stem cells and spermatogenesis in vitro.

Authors:  Takehiko Ogawa; Kaoru Kita; Yoshinobu Kubota
Journal:  Reprod Med Biol       Date:  2006-08-09

5.  Effects of mono-(2-ethylhexyl) phthalate (MEHP) on chicken germ cells cultured in vitro.

Authors:  Edith Guibert; Bérénice Prieur; Ronan Cariou; Frédérique Courant; Jean Philippe Antignac; Bertrand Pain; Jean Pierre Brillard; Pascal Froment
Journal:  Environ Sci Pollut Res Int       Date:  2013-01-25       Impact factor: 4.223

Review 6.  Coordinating cellular events during spermatogenesis: a biochemical model.

Authors:  Pearl P Y Lie; C Yan Cheng; Dolores D Mruk
Journal:  Trends Biochem Sci       Date:  2009-06-15       Impact factor: 13.807

7.  Expression of stimulated by retinoic acid gene 8 (Stra8) and maturation of murine gonocytes and spermatogonia induced by retinoic acid in vitro.

Authors:  Qing Zhou; Ying Li; Rong Nie; Patrick Friel; Debra Mitchell; Ryan M Evanoff; Derek Pouchnik; Brent Banasik; John R McCarrey; Christopher Small; Michael D Griswold
Journal:  Biol Reprod       Date:  2007-11-21       Impact factor: 4.285

8.  Ectopic porcine spermatogenesis in murine subcutis: tissue grafting versus cell-injection methods.

Authors:  Takeshi Watanabe; Hirofumi Hayashi; Kaoru Kita; Yoshinobu Kubota; Takehiko Ogawa
Journal:  Asian J Androl       Date:  2009-01-12       Impact factor: 3.285

9.  Models of in vitro spermatogenesis.

Authors:  Damien Hunter; Ravinder Anand-Ivell; Sandra Danner; Richard Ivell
Journal:  Spermatogenesis       Date:  2012-01-01

10.  Unexpected role of α-fetoprotein in spermatogenesis.

Authors:  Futoshi Yazama; Akihiro Tai
Journal:  PLoS One       Date:  2011-05-04       Impact factor: 3.240

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