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构建基于人类多能干细胞的性腺微环境:借助体内研究成果改进体外系统

Building a human pluripotent stem cell-based gonadal niche: improving in vitro systems with in vivo insights.

作者信息

Lakshmipathi Mathangi, Dartée Nina, Puchkina Arina, Vaz Santos Madalena, de Bruin Ilse J, Hamer Geert, van Pelt Ans M M, Chuva de Sousa Lopes Susana M, Mulder Callista L, Baarends Willy M

机构信息

Reproductive Biology Laboratory, Center for Reproductive Medicine, Amsterdam UMC, University of Amsterdam, Amsterdam, The Netherlands.

Amsterdam Reproduction and Development Research Institute, Amsterdam, The Netherlands.

出版信息

Hum Reprod Update. 2025 Jun 28. doi: 10.1093/humupd/dmaf012.

Abstract

BACKGROUND

The gonadal somatic niche is crucial for sex determination and gamete formation throughout the human life cycle. However, key steps in gonadal somatic lineage differentiation occur during embryonic and foetal development, making them difficult to study in humans. In vitro differentiation models are therefore needed to investigate gonadal development, support in vitro gametogenesis, and study infertility. A comprehensive overview of gonadal somatic niche differentiation, both in vivo and in vitro, is thus crucial.

OBJECTIVE AND RATIONALE

This review connects in vivo knowledge with in vitro differentiation systems for gonadal somatic niches, predominantly focusing on cell-cell signalling factors. It evaluates existing in vitro protocols for differentiating testicular and ovarian somatic niches, discusses them in the context of in vivo findings, and explores potential advancements in model systems.

SEARCH METHODS

A narrative review was conducted after a comprehensive search of the PubMed database through to February 2025; the review focused on search topics including: in vivo gonadal differentiation in humans and mice; in vitro differentiation of human embryonic stem cells or human-induced pluripotent stem cells into gonadal somatic cells (bipotential, Sertoli or granulosa cells); and evidence for the cell-cell signalling factors used in these protocols.

OUTCOMES

We investigated various strategies that aim to differentiate human pluripotent stem cells into gonadal somatic cell lineages. These include sequential growth factor differentiation recapitulating all known developmental progenitor stages, directed growth factor differentiation that omitted one or more developmental intermediates, and directed overexpression of key transcription factors. To induce differentiation, the growth factor-based protocols used various cell-cell signalling factors, with some derived from in vivo studies, while others lacked direct in vivo evidence. Despite significant advances in guiding pluripotent stem cells towards gonadal differentiation, challenges remain, such as the limited molecular and functional validation of the generated cell types. Consequently, complete human in vitro gametogenesis through co-culture techniques with pluripotent cell-derived germ cells has not yet been achieved, indicating that full functional maturation of the gonadal niche has not been attained with the current protocols.

WIDER IMPLICATIONS

Integrating knowledge on in vivo gonadal development with enhanced differentiation protocols offers the potential to reliably generate the gonadal somatic niche in vitro. This allows for more accurate modelling of the gonad, facilitating deeper insights into the normal and pathological processes involved in gonadal development and germ cell maturation. For example, it could help to identify mechanisms linked to infertility or differences of sex development. Importantly, as many of these models are based on human pluripotent stem cells, they have the potential for personalization, enabling future patient-specific models for studying reproductive disorders and developing tailored fertility treatments.

REGISTRATION NUMBER

n/a.

摘要

背景

性腺体细胞生态位在人类整个生命周期的性别决定和配子形成过程中至关重要。然而,性腺体细胞谱系分化的关键步骤发生在胚胎和胎儿发育阶段,这使得在人类中进行研究变得困难。因此,需要体外分化模型来研究性腺发育、支持体外配子发生以及研究不孕症。因此,全面概述体内和体外性腺体细胞生态位的分化至关重要。

目的和原理

本综述将体内知识与性腺体细胞生态位的体外分化系统联系起来,主要关注细胞间信号因子。它评估了现有的用于分化睾丸和卵巢体细胞生态位的体外方案,结合体内研究结果对其进行讨论,并探索模型系统的潜在进展。

检索方法

在对PubMed数据库进行全面检索直至2025年2月之后进行了叙述性综述;该综述重点关注的检索主题包括:人类和小鼠的体内性腺分化;人类胚胎干细胞或人类诱导多能干细胞向性腺体细胞(双潜能、支持细胞或颗粒细胞)的体外分化;以及这些方案中使用的细胞间信号因子的证据。

结果

我们研究了旨在将人类多能干细胞分化为性腺体细胞谱系的各种策略。这些策略包括模拟所有已知发育祖细胞阶段的顺序生长因子分化、省略一个或多个发育中间体的定向生长因子分化以及关键转录因子的定向过表达。为了诱导分化,基于生长因子的方案使用了各种细胞间信号因子,其中一些来源于体内研究,而另一些则缺乏直接的体内证据。尽管在引导多能干细胞向性腺分化方面取得了重大进展,但挑战仍然存在,例如所生成细胞类型的分子和功能验证有限。因此,通过与多能细胞来源的生殖细胞共培养技术实现完整的人类体外配子发生尚未成功,这表明目前的方案尚未实现性腺生态位的完全功能成熟。

更广泛的意义

将体内性腺发育的知识与改进的分化方案相结合,有可能在体外可靠地生成性腺体细胞生态位。这使得对性腺进行更准确的建模成为可能,有助于更深入地了解性腺发育和生殖细胞成熟过程中涉及的正常和病理过程。例如,它可以帮助识别与不孕症或性发育差异相关的机制。重要的是,由于许多这些模型基于人类多能干细胞,它们具有个性化的潜力,能够为未来开发针对患者的模型以研究生殖障碍和制定个性化的生育治疗方案。

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