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微图案诱导的核变形抑制巨噬细胞中 LPS 激活的炎症反应和染色体组蛋白修饰。

Suppression of LPS-activated inflammatory responses and chromosomal histone modifications in macrophages by micropattern-induced nuclear deformation.

机构信息

School of Biomedical Sciences and Engineering, South China University of Technology, Guangzhou International Campus, Guangzhou, People's Republic of China.

National Engineering Research Center for Tissue Restoration and Reconstruction and Innovation Center for Tissue Restoration and Reconstruction, Guangzhou, People's Republic of China.

出版信息

J Biomed Mater Res A. 2024 Feb;112(2):250-259. doi: 10.1002/jbm.a.37617. Epub 2023 Sep 22.

Abstract

Macrophages are important immune effector cells which participate various physiological and pathological conditions. Numerous studies have demonstrated the regulation of macrophage phenotype by micropatterns. It is well accepted that micropatterns affect cellular behaviors through changing cell shape and modulating the associated mechanical sensors on the plasma membrane and cytoskeleton. However, the role of nucleus, which serves as a critical physical sensing device, is often ignored. Herein, we found the nuclear deformation and the subsequently increased chromosomal histone methylation (H3K36me2) may contribute to the micropattern-induced suppression of macrophage inflammatory responses. Specifically, macrophages on micropatterned surfaces expressed lower levels of key inflammatory genes, compared with those on flat surfaces. Further investigation on macrophage nuclei showed that micropatterned surfaces cause shrinkage of nucleus volume and compaction of chromatin. Moreover, micropatterned surfaces elevated the methylation level of H3K36me2 in macrophages, while decreased the methylation level of H3K4me3. Our study provides new mechanistic insight into how micropatterns affect macrophage phenotype and highlights the importance of nuclear shape and chromatin histone modification in mediating micropattern-induced change in cell behaviors.

摘要

巨噬细胞是参与多种生理和病理状态的重要免疫效应细胞。大量研究表明微图案可调节巨噬细胞表型。人们普遍认为,微图案通过改变细胞形状和调节质膜和细胞骨架上相关的机械传感器来影响细胞行为。然而,细胞核作为一个关键的物理感应装置的作用经常被忽视。在这里,我们发现核变形和随后增加的染色体组蛋白甲基化(H3K36me2)可能有助于微图案诱导的巨噬细胞炎症反应的抑制。具体来说,与在平面表面上的巨噬细胞相比,在微图案化表面上的巨噬细胞表达更低水平的关键炎症基因。对巨噬细胞核的进一步研究表明,微图案表面会导致细胞核体积收缩和染色质紧缩。此外,微图案表面增加了巨噬细胞中 H3K36me2 的甲基化水平,同时降低了 H3K4me3 的甲基化水平。我们的研究为微图案如何影响巨噬细胞表型提供了新的机制见解,并强调了核形状和染色质组蛋白修饰在介导微图案诱导的细胞行为变化中的重要性。

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