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Smart biomaterials: as active immune modulators to shape pro-regenerative microenvironments

作者:Wenning Zhang, Xianyi Zeng, Xikai Deng, Feng‐Lei Yang, Xiaoyuan Ma, Wei Gao · 发表于:Frontiers in Cell and Developmental Biology · 年份:2025 · DOI:10.3389/fcell.2025.1669399 · 被引用次数:29 · 研究领域:3D Printing in Biomedical Research、Graphene and Nanomaterials Applications、Nanoplatforms for cancer theranostics

The field of smart biomaterials has evolved from passive scaffolds to dynamic, immune-modulating platforms capable of actively shaping regenerative microenvironments. This review explores the transition from inert to autonomous systems, emphasizing innovations in material responsiveness-such as pH, temperature, and enzymatic sensitivity-that enable intelligent interactions with biological cues. A key focus is the role of macrophage polarization in tissue repair, where biomaterials regulate immune responses through physicochemical properties and spatiotemporally controlled immunomodulatory factor release. Applications in cancer immunotherapy, myocardial regeneration, and scar inhibition highlight their therapeutic potential. Advances in biomimetic design and multiscale modeling accelerate rational development. However, clinical translation faces challenges in biosafety, scalability, and regulatory approval. Future directions point towards precision immune engineering, integrating optogenetic control, artificial intelligence-driven personalized design, and synergistic multimodal therapies. Ultimately, smart biomaterials are pioneering precision immune engineering, offering transformative strategies for regenerative medicine and disease intervention.