Zhang Ziwei, Zhu Maoshu, Luo Haiqing, Zeng Fanwei, Qi Zhongquan
Medical College, Guangxi University, Nanning, Guangxi, China.
Central Laboratory, The Fifth Hospital of Xiamen, Xiamen, Fujian, China.
Front Bioeng Biotechnol. 2025 Jul 18;13:1637456. doi: 10.3389/fbioe.2025.1637456. eCollection 2025.
In recent years, organoid research has witnessed remarkable progress, yet significant challenges remain in organoid construction. As fundamental architectural frameworks, organoid scaffolds play a pivotal role in facilitating three-dimensional tissue morphogenesis by delivering crucial biochemical and mechanical signals during organoid development. A systematic examination of scaffold functions in organoid culture systems, coupled with a critical assessment of different scaffold modalities, not only deepens our understanding of organoid biology and their microenvironment but also provides valuable insights for next-generation scaffold design. This review elucidates the fabrication principles and applications of organoid scaffolds, delineates their functional significance in organoid culture, categorizes existing scaffold systems with comparative analysis of their respective merits and limitations, and concludes with perspectives on future research directions in scaffold development.
近年来,类器官研究取得了显著进展,但在类器官构建方面仍存在重大挑战。作为基本的架构框架,类器官支架在类器官发育过程中通过传递关键的生化和机械信号,对促进三维组织形态发生起着关键作用。系统研究类器官培养系统中支架的功能,并对不同的支架形式进行批判性评估,不仅能加深我们对类器官生物学及其微环境的理解,还能为下一代支架设计提供有价值的见解。本综述阐明了类器官支架的制造原理和应用,描述了它们在类器官培养中的功能意义,对现有的支架系统进行分类并比较分析其各自的优缺点,最后展望了支架开发未来的研究方向。