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附睾类器官的研究进展及潜在应用

Advancement and Potential Applications of Epididymal Organoids.

机构信息

Institute of Reproductive Medicine, Medical School, Nantong University, Nantong 226019, China.

出版信息

Biomolecules. 2024 Aug 17;14(8):1026. doi: 10.3390/biom14081026.

Abstract

The epididymis, a key reproductive organ, is crucial for sperm concentration, maturation, and storage. Despite a comprehensive understanding of many of its functions, several aspects of the complex processes within the epididymis remain obscure. Dysfunction in this organ is intricately connected to the formation of the microenvironment, disruptions in sperm maturation, and the progression of male infertility. Thus, elucidating the functional mechanisms of the epididymal epithelium is imperative. Given the variety of cell types present within the epididymal epithelium, utilizing a three-dimensional (3D) in vitro model provides a holistic and practical framework for exploring the multifaceted roles of the epididymis. Organoid cell culture, involving the co-cultivation of pluripotent or adult stem cells with growth factors on artificial matrix scaffolds, effectively recreates the in vivo cell growth microenvironment, thereby offering a promising avenue for studying the epididymis. The field of epididymal organoids is relatively new, with few studies focusing on their formation and even fewer detailing the generation of organoids that exhibit epididymis-specific structures and functions. Ongoing challenges in both clinical applications and mechanistic studies underscore the importance of this research. This review summarizes the established methodologies for inducing the in vitro cultivation of epididymal cells, outlines the various approaches for the development of epididymal organoids, and explores their potential applications in the field of male reproductive biology.

摘要

附睾是一个关键的生殖器官,对于精子的浓缩、成熟和储存至关重要。尽管人们对其许多功能有了全面的了解,但附睾内复杂过程的几个方面仍然不清楚。该器官的功能障碍与微环境的形成、精子成熟的中断以及男性不育的进展密切相关。因此,阐明附睾上皮的功能机制是至关重要的。鉴于附睾上皮中有多种类型的细胞,使用三维(3D)体外模型为探索附睾的多方面作用提供了一个整体和实用的框架。类器官细胞培养涉及将多能或成体干细胞与生长因子共同培养在人工基质支架上,有效地再现了体内细胞生长的微环境,从而为研究附睾提供了一个很有前途的途径。附睾类器官领域相对较新,很少有研究关注它们的形成,甚至更少详细描述生成具有附睾特异性结构和功能的类器官。目前在临床应用和机制研究方面都存在挑战,这突显了这项研究的重要性。这篇综述总结了诱导附睾细胞体外培养的既定方法,概述了开发附睾类器官的各种方法,并探讨了它们在男性生殖生物学领域的潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef5d/11352229/67a00370542d/biomolecules-14-01026-g001.jpg

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