中国机械生物学研究

Zong-Lai Jiang
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摘要

机械生物学是一门集生物学、工程学、化学、物理学和医学于一体的跨学科学科。机械生物学研究在整个生物体、器官、细胞、蛋白质和基因水平上全面讨论机械因素在各种生命过程中的作用以及相关疾病的发生和发展。阐明了机械信号转导和反应的细胞和分子机制,并发现了新的生物标志物和潜在的药物靶点,这些分子都是机械敏感分子。本文综述了新世纪以来中国机械生物学的研究进展,重点介绍了近三年来中国科学家在机械生物学领域的研究成果,包括心血管、骨关节、肿瘤、细胞和分子机械生物学。同时,建议未来的机械生物学研究应首先从细胞和分子水平对疾病的机械生物学机制进行有针对性的深入研究,使新发现的生物标志物或潜在靶点逐步实现临床转化。其次,未来的研究应加强生物实验与力学和数学模型分析的定性和定量结合,特别是在细胞、亚细胞和分子尺度上。机械生物学研究对于认识人体生长和衰老的力学机制和自然规律,阐明疾病的病理机制,研究和开发新的药物和技术,促进人类健康的生物医学和临床研究,具有重要的理论和现实意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanobiology research in China

Mechanobiology is an interdisciplinary discipline combining biology, engineering, chemistry, physics, and medicine. Mechanobiology research comprehensively discusses, the role of mechanical factors in various life processes and the occurrence and development of associated and diseases at the whole organism, organ, cell, protein and gene levels. The cellular and molecular mechanisms of mechanical signal transduction and response are elucidated, in addition to the discovery of novel biomarkers and potential drug targets, which are mechanosensitive molecules. This paper reviews the development of mechanobiology research in China since the new century, while focusing on the research achievements of Chinese scientists in the field of mechanobiology over the last three years, including cardiovascular, bone and joint, tumor, cellular, and molecular mechanobiology. Meanwhile, it has been suggested that in the future, mechanobiology research should include are indicated detailed studies on the mechanobiological mechanism of diseases at the cellular and molecular levels firstly, so that the newly discovered biomarkers or potential targets can gradually achieve clinical transformation. Second, future research should strengthen the qualitative and quantitative combination of biological experiments and mechanical and mathematical modeling analyses, especially at cellular, subcellular and molecular scales. Mechanobiological studies are of great theoretical and practical significance for our understanding of the mechanical mechanisms and natural laws of growth and senility of the human body, expounding pathological mechanisms of diseases, and researching and developing new medicines and technologies to promote biomedical and clinical research for human health.

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