Wu Jiang, Kang Kai, Liu Siqi, Ma Yaodan, Yu Meng, Zhao Xin
Coastal Agricultural College, Guangdong Ocean University, Zhanjiang 524000, China.
State Key Laboratory for Mechanical Behavior of Materials, Xi'an Jiaotong University, Xi'an 710049, China.
J Funct Biomater. 2023 Nov 8;14(11):543. doi: 10.3390/jfb14110543.
Male germline stem cells (mGSCs), also known as spermatogonial stem cells (SSCs), are the fundamental seed cells of male animal reproductive physiology. However, environmental influences, drugs, and harmful substances often pose challenges to SSCs, such as population reduction and quality decline. With advancements in bioengineering technology and biomaterial technology, an increasing number of novel cell culture methods and techniques have been employed for studying the proliferation and differentiation of SSCs . This paper provides a review on recent progress in 3D culture techniques for SSCs ; we summarize the microenvironment of SSCs and spermatocyte development, with a focus on scaffold-based culture methods and 3D printing cell culture techniques for SSCs. Additionally, decellularized testicular matrix (DTM) and other biological substrates are utilized through various combinations and approaches to construct an culture microenvironment suitable for SSC growth. Finally, we present some perspectives on current research trends and potential opportunities within three areas: the 3D printing niche environment, alternative options to DTM utilization, and advancement of the SSC culture technology system.
雄性生殖系干细胞(mGSCs),也被称为精原干细胞(SSCs),是雄性动物生殖生理学的基本种子细胞。然而,环境影响、药物和有害物质常常给精原干细胞带来挑战,比如数量减少和质量下降。随着生物工程技术和生物材料技术的进步,越来越多新颖的细胞培养方法和技术被用于研究精原干细胞的增殖和分化。本文综述了精原干细胞三维培养技术的最新进展;我们总结了精原干细胞的微环境和精母细胞发育,重点关注基于支架的培养方法和精原干细胞的三维打印细胞培养技术。此外,通过各种组合和方法利用脱细胞睾丸基质(DTM)和其他生物基质来构建适合精原干细胞生长的培养微环境。最后,我们对三个领域的当前研究趋势和潜在机遇提出了一些观点:三维打印小生境环境、脱细胞睾丸基质利用的替代选项以及精原干细胞培养技术系统的进步。