再生医学
纳米技术
计算机科学
合理设计
设计要素和原则
复合数
翻译(生物学)
组织工程
合成生物学
控制(管理)
癌症治疗
工程类
癌症治疗
系统工程
设计质量
生化工程
材料科学
钥匙(锁)
精密医学
质量(理念)
作者
Yanli Cai,Dong Xu,Zi En Chong,Elaine Shi An Chen,Soo Wah Gan,Alvin Shu Kiat Bok,Wen Feng Lu,Wei Zhai,Ching-Chiuan Yen
标识
DOI:10.1016/j.mtbio.2026.103127
摘要
Microgels, micrometer-sized hydrogel particles, have emerged as versatile platforms for biomedical applications. Recent advances have driven the development of composite microgels that integrate polymers, nanomaterials, and bioactive agents to achieve precise control over their properties. In this review, we provide a comprehensive overview by establishing a systematic framework that links the structural design to the mechanisms of cell regulation, and ultimately to biomedical applications. We examine how composite microgels regulate cells by their intrinsic material cues, including the mechanical, biochemical, and architectural properties, as well as by dynamic mechanisms, such as on-demand stimuli-responsiveness and autonomous pre-programmed kinetics. We then illustrate how these principles are applied across cancer therapy, tissue engineering, and regenerative medicine. Finally, we discuss key challenges of scalability, biosafety, and clinical integration, and outline future perspectives, such as the role of AI-driven design, in advancing personalized medicine and regenerative therapies.
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