Stamatas G N, McIntire L V
Cox Laboratory for Biomedical Engineering, Institute of Biosciences and Bioengineering, Rice University, Houston, Texas 77251-1892, USA.
Ind Eng Chem Res. 1999 Mar;38(3):601-9. doi: 10.1021/ie980426a.
For the last 3 decades evidence has been accumulating that some types of mammalian cells respond to their mechanically active environment by altering their morphology, growth rate, and metabolism. The study of such responses is very important in understanding, physiological and pathological conditions ranging from bone formation to atherosclerosis. Obtaining this knowledge has been the goal for an active research area in bioengineering termed cell mechanotransduction. The advancement of optical methodologies used in cell biology research has given the tools to elucidate cellular mechanisms that would otherwise be impossible to visualize. Combined with molecular biology techniques, they give engineers invaluable tools in understanding the chemical pathways involved in mechanotransduction. Herein we briefly review the current knowledge on mechanical signal transduction in mammalian cells, focusing on the application of novel optical techniques in the ongoing research.
在过去三十年里,越来越多的证据表明,某些类型的哺乳动物细胞会通过改变其形态、生长速率和新陈代谢来响应其机械活性环境。此类响应的研究对于理解从骨形成到动脉粥样硬化等生理和病理状况非常重要。获取这些知识一直是生物工程中一个活跃的研究领域——细胞机械转导的目标。细胞生物学研究中使用的光学方法的进步提供了工具,以阐明那些原本无法可视化的细胞机制。与分子生物学技术相结合,它们为工程师提供了理解机械转导中涉及的化学途径的宝贵工具。在此,我们简要回顾一下目前关于哺乳动物细胞机械信号转导的知识,重点关注新型光学技术在当前研究中的应用。