机械转导和声生物学研究进展:可听声波和低振动刺激对哺乳动物细胞的影响。

IF 4.9 Q1 BIOPHYSICS
Biophysical reviews Pub Date : 2024-10-07 eCollection Date: 2024-12-01 DOI:10.1007/s12551-024-01242-1
D Del Rosario-Gilabert, A Valenzuela-Miralles, G Esquiva
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引用次数: 0

摘要

近几十年来,机械转导的研究取得了长足的进展,主要集中在可听声波(aaw)和低振动刺激(LVS)的作用上,这推动了声生物学领域的发展。综上所述,目前的证据证明了这些生物信号对哺乳动物细胞生长、分化和迁移等关键细胞过程的影响,强调了刺激过程中特定物理参数的决定作用,如频率、声压级/振幅和暴露时间。这些机械波与各种细胞元件相互作用,包括离子通道、初级纤毛、细胞-细胞粘附受体、细胞-基质和细胞外基质蛋白以及局灶粘附复合物。这些成分与细胞骨架纤维网络连接,使机械刺激能够传递到细胞核。反过来,细胞核通过核骨架和细胞骨架复合物的连接物连接到细胞骨架,充当机械敏感中心,不仅响应细胞骨架刚度和核张力的变化,还通过转录共激活子YAP/TAZ和染色质与核膜之间的相互作用调节基因表达。这种复杂的机制链突出了声生物学在各个领域的潜力,包括牙科、再生医学、组织工程和癌症研究。然而,这些领域的进展需要建立标准化的测量方法和生物相容的实验装置,以确保结果的可重复性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advances in mechanotransduction and sonobiology: effects of audible acoustic waves and low-vibration stimulations on mammalian cells.

In recent decades, research on mechanotransduction has advanced considerably, focusing on the effects of audible acoustic waves (AAWs) and low-vibration stimulation (LVS), which has propelled the field of sonobiology forward. Taken together, the current evidence demonstrates the influence of these biosignals on key cellular processes, such as growth, differentiation and migration in mammalian cells, emphasizing the determining role of specific physical parameters during stimulation, such as frequency, sound pressure level/amplitude and exposure time. These mechanical waves interact with various cellular elements, including ion channels, primary cilia, cell-cell adhesion receptors, cell-matrix and extracellular matrix proteins, and focal adhesion complexes. These components connect with the cytoskeletal fibre network, enabling the transmission of mechanical stimuli towards the nucleus. The nucleus, in turn, linked to the cytoskeleton via the linkers of the nucleoskeleton and cytoskeleton complex, acts as a mechanosensitive centre, not only responding to changes in cytoskeletal stiffness and nuclear tension but also regulating gene expression through the transcriptional co-activator YAP/TAZ and interactions between chromatin and the nuclear envelope. This intricate chain of mechanisms highlights the potential of sonobiology in various fields, including dentistry, regenerative medicine, tissue engineering and cancer research. However, progress in these fields requires the establishment of standardized measurement methodologies and biocompatible experimental setups to ensure the reproducibility of results.

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来源期刊
Biophysical reviews
Biophysical reviews Biochemistry, Genetics and Molecular Biology-Biophysics
CiteScore
8.90
自引率
0.00%
发文量
93
期刊介绍: Biophysical Reviews aims to publish critical and timely reviews from key figures in the field of biophysics. The bulk of the reviews that are currently published are from invited authors, but the journal is also open for non-solicited reviews. Interested authors are encouraged to discuss the possibility of contributing a review with the Editor-in-Chief prior to submission. Through publishing reviews on biophysics, the editors of the journal hope to illustrate the great power and potential of physical techniques in the biological sciences, they aim to stimulate the discussion and promote further research and would like to educate and enthuse basic researcher scientists and students of biophysics. Biophysical Reviews covers the entire field of biophysics, generally defined as the science of describing and defining biological phenomenon using the concepts and the techniques of physics. This includes but is not limited by such areas as: - Bioinformatics - Biophysical methods and instrumentation - Medical biophysics - Biosystems - Cell biophysics and organization - Macromolecules: dynamics, structures and interactions - Single molecule biophysics - Membrane biophysics, channels and transportation
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