Heilongjiang Key Laboratory of Tissue Damage and Repair, Mudanjiang Medical University, Mudanjiang, 157000, China.
Changhai Clinical Research Unit, Shanghai Changhai Hospital, Naval Medical University, Shanghai, 200433, China.
Cell Commun Signal. 2024 Feb 15;22(1):124. doi: 10.1186/s12964-023-01346-3.
Autophagy is a self-renewal mechanism that maintains homeostasis and can promote tissue regeneration by regulating inflammation, reducing oxidative stress and promoting cell differentiation. The interaction between biomaterials and tissue cells significantly affects biomaterial-tissue integration and tissue regeneration. In recent years, it has been found that biomaterials can affect various processes related to tissue regeneration by regulating autophagy. The utilization of biomaterials in a controlled environment has become a prominent approach for enhancing the tissue regeneration capabilities. This involves the regulation of autophagy in diverse cell types implicated in tissue regeneration, encompassing the modulation of inflammatory responses, oxidative stress, cell differentiation, proliferation, migration, apoptosis, and extracellular matrix formation. In addition, biomaterials possess the potential to serve as carriers for drug delivery, enabling the regulation of autophagy by either activating or inhibiting its processes. This review summarizes the relationship between autophagy and tissue regeneration and discusses the role of biomaterial-based autophagy in tissue regeneration. In addition, recent advanced technologies used to design autophagy-modulating biomaterials are summarized, and rational design of biomaterials for providing controlled autophagy regulation via modification of the chemistry and surface of biomaterials and incorporation of cells and molecules is discussed. A better understanding of biomaterial-based autophagy and tissue regeneration, as well as the underlying molecular mechanisms, may lead to new possibilities for promoting tissue regeneration. Video Abstract.
自噬是一种自我更新的机制,通过调节炎症、减轻氧化应激和促进细胞分化,来维持内稳态并促进组织再生。生物材料与组织细胞之间的相互作用显著影响生物材料-组织的整合和组织再生。近年来,人们发现生物材料可以通过调节自噬来影响与组织再生相关的各种过程。在受控环境中利用生物材料已成为增强组织再生能力的一种突出方法。这涉及到调节与组织再生有关的各种细胞类型中的自噬,包括调节炎症反应、氧化应激、细胞分化、增殖、迁移、凋亡和细胞外基质形成。此外,生物材料具有作为药物递送载体的潜力,可通过激活或抑制其过程来调节自噬。本综述总结了自噬与组织再生之间的关系,并讨论了基于生物材料的自噬在组织再生中的作用。此外,还总结了最近用于设计自噬调节生物材料的先进技术,并讨论了通过修饰生物材料的化学和表面以及掺入细胞和分子来对生物材料进行合理设计,以实现对自噬的控制调节。更好地理解基于生物材料的自噬和组织再生以及潜在的分子机制,可能为促进组织再生带来新的可能性。视频摘要。