光热治疗
巨噬细胞极化
光热效应
生物相容性
材料科学
巨噬细胞
免疫系统
纳米技术
生物物理学
辐照
M2巨噬细胞
极化(电化学)
体外
细胞生物学
化学
免疫学
生物
生物化学
冶金
物理
核物理学
物理化学
作者
Jiebing Zhang,Yijia Wang,Ning Ding,Ping Ma,Zutai Zhang,Yanbin Liu
标识
DOI:10.1016/j.colcom.2023.100733
摘要
Both pro-inflammatory M1 and anti-inflammatory M2 macrophages play vital roles in the immune response during bone tissue regeneration. Current biomaterials are designed to promote M2 macrophage polarization by manipulating various physical properties. However, this approach lacks precision in controlling the initiation of immunomodulation, potentially leading to premature immune suppression. In this study, the photothermal effect of Ti3C2Tx MXene nanosheets under near-infrared (NIR) irradiation was employed to achieve remote regulation of macrophage M2 polarization. Ti3C2Tx exhibited excellent photothermal properties and biocompatibility. The mild thermal stimulation produced by photothermal conversion of Ti3C2Tx under NIR irradiation promoted macrophage M2 polarization in vitro. Subsequently, these photothermal-polarized macrophages increased the secretion of IL-10 and facilitated the osteogenic differentiation of BMSCs. The synergistic application of Ti3C2Tx MXene nanosheets and NIR presents an innovative strategy for remotely modulating macrophage polarization in a temporally controlled manner, thereby paving the way for the development of advanced osteoimmunomodulatory biomaterials.
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