Spermatogonial stem cell technologies: applications from human medicine to wildlife conservation†.

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Katerina B Damyanova, Brett Nixon, Stephen D Johnston, Andrés Gambini, Patricio P Benitez, Tessa Lord
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引用次数: 0

Abstract

Spermatogonial stem cell (SSC) technologies that are currently under clinical development to reverse human infertility hold the potential to be adapted and applied for the conservation of endangered and vulnerable wildlife species. The biobanking of testis tissue containing SSCs from wildlife species, aligned with that occurring in pediatric human patients, could facilitate strategies to improve the genetic diversity and fitness of endangered populations. Approaches to utilize these SSCs could include spermatogonial transplantation or testis tissue grafting into a donor animal of the same or a closely related species, or in vitro spermatogenesis paired with assisted reproduction approaches. The primary roadblock to progress in this field is a lack of fundamental knowledge of SSC biology in non-model species. Herein, we review the current understanding of molecular mechanisms controlling SSC function in laboratory rodents and humans, and given our particular interest in the conservation of Australian marsupials, use a subset of these species as a case-study to demonstrate gaps-in-knowledge that are common to wildlife. Additionally, we review progress in the development and application of SSC technologies in fertility clinics and consider the translation potential of these techniques for species conservation pipelines.

精原干细胞技术:从人类医学到野生动物保护的应用。
精原细胞干细胞(SSC)技术目前正处于临床开发阶段,用于逆转人类不育症,该技术有可能被调整并应用于保护濒危和脆弱野生动物物种。与儿科人类患者的睾丸干细胞一样,含有野生动物物种睾丸干细胞的睾丸组织的生物库可以促进改善濒危种群遗传多样性和适应性的战略。利用这些自体造血干细胞的方法可包括将精原细胞移植或睾丸组织移植到同一物种或近亲物种的供体动物体内,或将体外生精与辅助生殖方法结合起来。这一领域取得进展的主要障碍是缺乏对非模式物种SSC生物学的基本了解。在本文中,我们回顾了目前对控制实验室啮齿动物和人类SSC功能的分子机制的理解,鉴于我们对澳大利亚有袋类动物保护的特殊兴趣,我们使用这些物种的一个子集作为案例研究,以展示野生动物常见的知识差距。此外,我们还回顾了生殖诊所在开发和应用 SSC 技术方面取得的进展,并考虑了这些技术在物种保护管道中的转化潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.20
自引率
4.30%
发文量
567
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