1 型超敏反应的机械生物学:阐明过敏反应中机械力的影响

Henry Sutanto
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摘要

1 型超敏反应是指接触过敏原后引发的过度免疫反应,导致炎症介质的快速释放。同时,机械生物学探讨了物理力如何影响细胞过程,最新研究强调了机械生物学与过敏反应的相关性。本综述简要概述了 1 型超敏反应,强调了肥大细胞和免疫球蛋白 E (IgE) 抗体在协调过敏反应中的关键作用。由于认识到过敏中细胞反应的动态性质,本研究随后深入探讨了新兴的机械生物学领域及其在理解支配免疫细胞行为的机械力方面的意义。此外,我们还探讨了肥大细胞活化和脱颗粒过程中的分子力,阐明了 IgE 结合和细胞骨架重排的机械方面。接下来,我们讨论了免疫细胞与细胞外基质之间错综复杂的相互作用,强调了基质硬度对细胞反应的影响。此外,我们还研究了关键的机械敏感信号通路,包括丝裂原活化蛋白激酶(MAPK)通路、Rho鸟苷三磷酸酶(GTPase)和整合素介导的病灶粘附信号,揭示了它们对超敏反应的贡献。机械生物学与 1 型超敏反应的相互作用为潜在的治疗目标和生物标记物提供了见解,为更好地临床管理 1 型超敏反应铺平了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanobiology of Type 1 hypersensitivity: Elucidating the impacts of mechanical forces in allergic reactions

Type 1 hypersensitivity involves an exaggerated immune reaction triggered by allergen exposure, leading to rapid release of inflammatory mediators. Meanwhile, mechanobiology explores how physical forces influence cellular processes, and recent research underscores its relevance in allergic reactions. This review provides a concise overview of Type 1 hypersensitivity, highlighting the pivotal role of mast cells and immunoglobulin E (IgE) antibodies in orchestrating allergic reactions. Recognizing the dynamic nature of cellular responses in allergies, this study subsequently delves into the emerging field of mechanobiology and its significance in understanding the mechanical forces governing immune cell behavior. Furthermore, molecular forces during mast cell activation and degranulation are explored, elucidating the mechanical aspects of IgE binding and cytoskeletal rearrangements. Next, we discuss the intricate interplay between immune cells and the extracellular matrix, emphasizing the impact of matrix stiffness on cellular responses. Additionally, we examine key mechanosensitive signaling pathways, including the mitogen-activated protein kinase (MAPK) pathway, Rho guanosine triphosphatase (GTPase) and integrin-mediated focal adhesion signaling, shedding light on their contributions to hypersensitivity reactions. This interplay of mechanobiology and Type 1 hypersensitivity provides insights into potential therapeutic targets and biomarkers, paving the way for better clinical management of Type 1 hypersensitivity reactions.

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