机械转化
串扰
免疫系统
神经科学
生物
免疫
细胞外基质
细胞生物学
疾病
免疫学
神经免疫学
先天免疫系统
刺激(心理学)
细胞信号
细胞外
作者
Ruijiao Yan,Yuyu Li,Shuo Chen,Li Zhu,Chenchen Zhou,Jianwei Chen,Shujuan Zou,Xianglong Han
标识
DOI:10.1002/advs.202512164
摘要
The immune system serves as a crucial line of defense against pathogens and abnormal cells throughout the entire life cycle. While chemical interactions among immune cells play a prominent role in the immune response, the manner in which physical factors, such as mechanical forces, shape the behaviors and functions of immune cells remains inadequately understood. This is particularly noteworthy given that the lifespan of an immune cell is characterized by a series of physical processes. This review first synthesizes current understanding of how immune cells respond to biomechanical cues via mechanotransduction cascades, which encompass mechanosensors that detect mechanical stimuli, mechanotransducers that propagate signals, and mechanoeffectors that execute cellular responses. Furthermore, this is delved into the mechanical crosstalk among immune cells themselves and between the extracellular matrix (ECM), as well as with other cell types. the emerging significance of mechanoimmunology is highlighted in both health and disease contexts. Overall, this review will give insight into the role of mechanotransduction in shaping immunity is hoped, providing inspiration for advancements in mechanobiology-based immunotherapeutic strategies in the future.
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