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从生物工程卵巢滤泡中吸取的教训:个人观点。

Lessons from bioengineering the ovarian follicle: a personal perspective.

机构信息

Department of Obstetrics and Gynecology, Feinberg School of Medicine, Northwestern University, Chicago, Illinois, USA.

出版信息

Reproduction. 2019 Dec;158(6):F113-F126. doi: 10.1530/REP-19-0190.

Abstract

The ovarian follicle and its maturation captivated my imagination and inspired my scientific journey - what we know now about this remarkable structure is captured in this invited review. In the past decade, our knowledge of the ovarian follicle expanded dramatically as cross-disciplinary collaborations brought new perspectives to bear, ultimately leading to the development of extragonadal follicles as model systems with significant clinical implications. Follicle maturation in vitro in an 'artificial' ovary became possible by learning what the follicle is fundamentally and autonomously capable of - which turns out to be quite a lot. Progress in understanding and harnessing follicle biology has been aided by engineers and materials scientists who created hardware that enables tissue function for extended periods of time. The EVATAR system supports extracorporeal ovarian function in an engineered environment that mimics the endocrine environment of the reproductive tract. Finally, applying the tools of inorganic chemistry, we discovered that oocytes require zinc to mature over time - a truly new aspect of follicle biology with no antecedent other than the presence of zinc in sperm. Drawing on the tools and ideas from the fields of bioengineering, materials science and chemistry unlocked follicle biology in ways that we could not have known or even predicted. Similarly, how today's basic science discoveries regarding ovarian follicle maturation are translated to improve the experience of tomorrow's patients is yet to be determined.

摘要

卵巢卵泡及其成熟过程激发了我的想象力,并促使我踏上了科学探索之旅——在这篇特邀综述中,我们可以一窥当前对这一非凡结构的了解。在过去十年中,随着跨学科合作带来新的视角,我们对卵巢卵泡的认识取得了巨大的进展,最终导致了卵巢外卵泡成为具有重要临床意义的模型系统。通过了解卵泡的基本自主能力,我们实现了在“人工”卵巢中进行体外卵泡成熟,事实证明,卵泡的能力远超想象。在理解和利用卵泡生物学方面的进展得到了工程师和材料科学家的帮助,他们创造了硬件,使组织能够在很长一段时间内发挥功能。EVATAR 系统支持在模拟生殖道内分泌环境的工程环境中进行体外卵巢功能。最后,我们应用无机化学的工具,发现卵母细胞需要锌才能随着时间的推移成熟——这是卵泡生物学中一个真正的新方面,除了精子中存在锌之外,没有任何先例。从生物工程、材料科学和化学领域借鉴工具和思路,以我们以前无法想象或预测的方式揭示了卵泡生物学。同样,今天关于卵巢卵泡成熟的基础科学发现如何转化为改善明天患者的体验,还有待确定。

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