Risley M S, Miller A, Bumcrot D A
Biol Reprod. 1987 May;36(4):985-97. doi: 10.1095/biolreprod36.4.985.
Spermatogenesis has been maintained for extended periods in Xenopus laevis testis explants cultured in serum-free media supplemented with bovine serum albumin, insulin, transferrin, follicle-stimulating hormone, dihydrotestosterone, testosterone, retinol, ascorbate, and tocopherol. The organization of the testis fragments was maintained for 28 days, and all stages of development were present throughout the culture period. 3H-Thymidine-labeled secondary (Type B) spermatogonia developed in 28 days into spermatids at the acrosomal vesicle stage whereas labeled zygotene spermatocytes became mature spermatids in 28 days. Spermatogonial proliferation also continued in vitro for 28 days. Germ cell differentiation was not dependent upon exogenous testosterone, ascorbate, or tocopherol since 3H-labeled spermatogonia became mature spermatids in testes cultured 35 days in media lacking these supplements. Autoradiography demonstrated that 55% of the luminal sperm present in explants cultured 10 days had differentiated in vitro. Sperm from testes cultured 10-35 days were similar to sperm from freshly dissected testes with regard to motility and fecundity, and eggs fertilized with sperm from explant cultures developed normally into swimming tadpoles. The results demonstrate the feasibility of maintaining vertebrate spermatogenesis in culture and suggest that in vitro analysis of Xenopus spermatogenesis using defined media may provide important insights into the evolution of regulatory mechanisms in spermatogenesis.
在添加了牛血清白蛋白、胰岛素、转铁蛋白、促卵泡激素、双氢睾酮、睾酮、视黄醇、抗坏血酸和生育酚的无血清培养基中培养的非洲爪蟾睾丸外植体,精子发生已维持了较长时间。睾丸碎片的组织结构维持了28天,在整个培养期间都存在所有发育阶段。用³H-胸腺嘧啶核苷标记的次级(B型)精原细胞在28天内发育成顶体泡期的精子细胞,而标记的偶线期精母细胞在28天内发育成成熟精子细胞。精原细胞增殖在体外也持续了28天。生殖细胞分化不依赖于外源性睾酮、抗坏血酸或生育酚,因为在缺乏这些补充剂的培养基中培养35天的睾丸中,³H标记的精原细胞发育成了成熟精子细胞。放射自显影显示,培养10天的外植体中55%的管腔精子在体外已分化。培养10 - 35天的睾丸产生的精子在活力和繁殖力方面与刚解剖的睾丸产生的精子相似,用外植体培养的精子使卵子受精后能正常发育成游动的蝌蚪。这些结果证明了在培养中维持脊椎动物精子发生的可行性,并表明使用特定培养基对非洲爪蟾精子发生进行体外分析可能为精子发生调控机制的进化提供重要见解。