Cho Yeonoh, You Jungmok, Lee Jong Hun
Department of Food Science and Biotechnology, Gachon University, 1342 Seongnam-daero, Seongnam-si 13120, Gyeonggi-do, Republic of Korea.
Department of Convergent Biotechnology & Advanced Materials Science, BK21 Interdisciplinary Program in IT-Bio Convergence System, Kyung Hee University, Yongin-si 17104, Gyeonggi-do, Republic of Korea.
Polymers (Basel). 2025 Jul 31;17(15):2109. doi: 10.3390/polym17152109.
Organoids and microphysiological systems (MPSs) have emerged as physiologically relevant platforms that recapitulate key structural and functional features of human organs, tissues, and microenvironments. As one of the essential components that define the success of these systems, hydrogels play the central role of providing a three-dimensional, biomimetic scaffold that supports cell viability, spatial organization, and dynamic signaling. Natural polymer-based hydrogels, derived from materials such as collagen, gelatin, hyaluronic acid, and alginate, offer favorable properties including biocompatibility, degradability, and an extracellular matrix-like architecture. This review presents recent advances in the design and application of such hydrogels, focusing on crosslinking strategies (physical, chemical, and hybrid), the viscoelastic characteristics, and stimuli-responsive behaviors. The influence of these materials on cellular processes, such as stemness maintenance, differentiation, and morphogenesis, is critically examined. Furthermore, the applications of organoid culture and dynamic MPS platforms are discussed, highlighting their roles in morphogen delivery, barrier formation, and vascularization. Current challenges and future perspectives toward achieving standardized, scalable, and translational hydrogel systems are also addressed.
类器官和微生理系统(MPS)已成为具有生理相关性的平台,可概括人体器官、组织和微环境的关键结构和功能特征。作为决定这些系统成功的重要组成部分之一,水凝胶发挥着核心作用,提供支持细胞活力、空间组织和动态信号传导的三维仿生支架。基于天然聚合物的水凝胶,来源于胶原蛋白、明胶、透明质酸和藻酸盐等材料,具有生物相容性、可降解性和细胞外基质样结构等优良特性。本综述介绍了此类水凝胶在设计和应用方面的最新进展,重点关注交联策略(物理、化学和混合)、粘弹性特征和刺激响应行为。严格审查了这些材料对细胞过程的影响,如干性维持、分化和形态发生。此外,还讨论了类器官培养和动态MPS平台的应用,强调了它们在形态发生素递送、屏障形成和血管生成中的作用。还探讨了实现标准化、可扩展和可转化水凝胶系统面临的当前挑战和未来前景。