Comparative Biology and Experimental Medicine, Faculty of Veterinary Medicine, University of Calgary, Calgary, Alberta, Canada.
Biochemistry and Molecular Biology, Cumming School of Medicine, University of Calgary, Calgary, Alberta, Canada.
Endocrinology. 2021 Apr 1;162(4). doi: 10.1210/endocr/bqab033.
Organoids are 3-dimensional (3D) structures grown in vitro that emulate the cytoarchitecture and functions of true organs. Therefore, testicular organoids arise as an important model for research on male reproductive biology. These organoids can be generated from different sources of testicular cells, but most studies to date have used immature primary cells for this purpose. The complexity of the mammalian testicular cytoarchitecture and regulation poses a challenge for working with testicular organoids, because, ideally, these 3D models should mimic the organization observed in vivo. In this review, we explore the characteristics of the most important cell types present in the testicular organoid models reported to date and discuss how different factors influence the regulation of these cells inside the organoids and their outcomes. Factors such as the developmental or maturational stage of the Sertoli cells, for example, influence organoid generation and structure, which affect the use of these 3D models for research. Spermatogonial stem cells have been a focus recently, especially in regard to male fertility preservation. The regulation of the spermatogonial stem cell niche inside testicular organoids is discussed in the present review, as this research area may be positively affected by recent progress in organoid generation and tissue engineering. Therefore, the testicular organoid approach is a very promising model for male reproductive biology research, but more studies and improvements are necessary to achieve its full potential.
类器官是在体外生长的 3 维(3D)结构,可模拟真实器官的细胞结构和功能。因此,睾丸类器官是研究男性生殖生物学的重要模型。这些类器官可以从睾丸细胞的不同来源中产生,但迄今为止,大多数研究都是为此目的使用未成熟的原代细胞。哺乳动物睾丸细胞结构和调节的复杂性给睾丸类器官的研究带来了挑战,因为理想情况下,这些 3D 模型应该模拟体内观察到的组织。在这篇综述中,我们探讨了迄今为止报道的睾丸类器官模型中最重要的细胞类型的特征,并讨论了不同因素如何影响这些细胞在类器官中的调节及其结果。例如,支持细胞的发育或成熟阶段等因素会影响类器官的生成和结构,从而影响这些 3D 模型在研究中的应用。精原干细胞最近一直是研究的焦点,尤其是在男性生育力保存方面。本文综述了睾丸类器官中精原干细胞龛的调节,因为类器官生成和组织工程的最新进展可能会对这一研究领域产生积极影响。因此,睾丸类器官方法是研究男性生殖生物学的非常有前途的模型,但需要进一步研究和改进以充分发挥其潜力。