睾丸体外培养中的微流体系统:精子发生和生殖毒性研究的强大模型工具。

Botho Maximilian Schneider, Hande Irem Hamurcu, Andrea Salzbrunn, Kathrein von Kopylow
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引用次数: 0

摘要

摘要:由于青春期前的男孩尚未产生精子,在儿童癌症的促性腺毒性治疗(如大剂量烷基化剂或放疗)前,他们不能依靠精子冷冻保存来保存生育能力。根据目前的指南,含有精原干细胞(SSCs)的睾丸活组织冷冻保存可能会被推荐给高风险患者,用于潜在的后期治疗用途,以满足患者对生物学孩子的愿望。微流控(MF)培养是人类体外精子发生和人类ssc体外繁殖的一种很有前途的技术,在这种技术中,细胞或组织受到连续流动的培养基的影响。这提供了对诸如养分含量和梯度等参数的精确控制,以及废物代谢物的去除。虽然MF已被证明比传统的体外培养技术维持器官组织和细胞群的时间更长,但它尚未广泛用于睾丸体外培养。MF可促进人睾丸体外培养,也可用于生殖毒性研究。本文综述了迄今为止芯片睾丸(ToC)装置的发现和成就,并讨论了这些装置在体外精子发生和毒性评估方面的优点和局限性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microfluidic systems in testicular in vitro culture: a powerful model tool for spermatogenesis and reprotoxicity studies.

Abstract: As prepubertal boys do not yet produce spermatozoa, they cannot rely on sperm cryopreservation for fertility preservation before gonadotoxic therapy, such as high-dose alkylating agents or radiotherapy in the case of childhood cancers. According to the current guidelines, cryopreservation of testicular biopsies containing spermatogonial stem cells (SSCs) may be proposed to high-risk patients for potential later therapeutic use to fulfill the patients' wish for a biological child. One promising technique for human in vitro spermatogenesis and in vitro propagation of human SSCs is microfluidic (MF) culture, in which cells or tissues are subjected to a continuous flow of medium. This provides exact control over such parameters as nutrient content and gradients, as well as the removal of waste metabolites. While MF has been shown to maintain tissues and cell populations of organs for longer than conventional in vitro culture techniques, it has not been widely used for testicular in vitro culture. MF could advance human testicular in vitro culture and is also applicable to reprotoxicity studies. This review summarizes the findings and achievements of testis-on-chip (ToC) setups to date and discusses the benefits and limitations of these for spermatogenesis in vitro and toxicity assessment.

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