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异物反应中的巨噬细胞和成纤维细胞:机械信号如何驱动细胞功能?

Macrophages and fibroblasts in foreign body reactions: How mechanical cues drive cell functions?

作者信息

Li Rihan, Feng Dongdong, Han Siyuan, Zhai Xiaoyue, Yu Xinmiao, Fu Yuanyuan, Jin Feng

机构信息

Department of Breast Surgery, The First Hospital of China Medical University, Shenyang, Liaoning, 110000, China.

Department of Breast and Reconstructive Surgery, The First Hospital of China Medical University, Shenyang, Liaoning, 110000, China.

出版信息

Mater Today Bio. 2023 Aug 29;22:100783. doi: 10.1016/j.mtbio.2023.100783. eCollection 2023 Oct.

Abstract

Biomaterials, when implanted in the human body, can induce a series of cell- and cytokine-related reactions termed foreign body reactions (FBRs). In the progression of FBRs, macrophages regulate inflammation and healing by polarizing to either a pro-inflammatory or pro-healing phenotype and recruit fibroblasts by secreting cytokines. Stimulated by the biomaterials, fibrotic capsule is formed eventually. The implant, along with its newly formed capsule, introduces various mechanical cues that influence cellular functions. Mechanosensing proteins, such as integrins or ion channels, transduce extracellular mechanical signals into cytoplasm biochemical signals in response to mechanical stimuli. Consequently, the morphology, migration mode, function, and polarization state of the cells are affected. Modulated by different intracellular signaling pathways and their crosstalk, the expression of fibrotic genes increases with fibroblast activation and fibroblast to myofibroblast transition under stiff or force stimuli. However, summarized in most current studies, the outcomes of macrophage polarization in the effect of different mechanical cues are inconsistent. The underlying mechanisms should be investigated with more advanced technology and considering more interfering aspects. Further research is needed to determine how to modulate the progression of fibrotic capsule formation in FBR artificially.

摘要

生物材料植入人体后,可引发一系列与细胞和细胞因子相关的反应,称为异物反应(FBRs)。在异物反应的进程中,巨噬细胞通过极化为促炎或促愈合表型来调节炎症和愈合,并通过分泌细胞因子招募成纤维细胞。在生物材料的刺激下,最终会形成纤维化包膜。植入物及其新形成的包膜会引入各种影响细胞功能的机械信号。机械传感蛋白,如整合素或离子通道,会响应机械刺激将细胞外机械信号转化为细胞质生化信号。因此,细胞的形态、迁移模式、功能和极化状态都会受到影响。在不同的细胞内信号通路及其相互作用的调节下,在僵硬或力刺激下,随着成纤维细胞的激活和成纤维细胞向肌成纤维细胞的转变,纤维化基因的表达会增加。然而,在目前的大多数研究中,不同机械信号作用下巨噬细胞极化的结果并不一致。需要用更先进技术并考虑更多干扰因素来研究其潜在机制。还需要进一步研究以确定如何人工调节异物反应中纤维化包膜形成的进程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a01/10494263/2b11fd71b4df/ga1.jpg

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