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在生理温度和发热温度下对红细胞进行单细胞力谱分析,揭示了阿托伐他汀的机械调节作用。

Single cell force spectroscopy of erythrocytes at physiological and febrile temperatures reveals mechano-modulatory effects of atorvastatin.

作者信息

Sheikhhassani Vahid, Evers Tom M J, Lamba Sanjeevani, Shokri Fereshteh, Mashaghi Alireza

机构信息

Medical Systems Biophysics and Bioengineering, Leiden Academic Centre for Drug Research, Faculty of Science, Leiden University, 2333 CC Leiden, The Netherlands.

Department of Clinical Epidemiology, Leiden University Medical Center, 2333 ZA Leiden, The Netherlands.

出版信息

Soft Matter. 2022 Mar 16;18(11):2143-2148. doi: 10.1039/d1sm01715b.

Abstract

RBCs are mechanically active cells and constantly deform as they circulate through vasculature. Their mechanical properties can be significantly altered by various pathophysiological conditions, and the alterations in RBC mechanics can, in turn, have functional consequences. Although numerous mechanical studies have been conducted on RBCs, surprisingly, strain-rate and temperature dependent mechanics of RBCs have not been systematically examined, and current data is primarily based on measurements at room temperature. Here, we have used state-of-the-art single-cell optical tweezers to probe atorvastatin-induced changes of RBC mechanics and its strain-rate dependency at physiologically and medically relevant temperatures. Our data indicate that RBC mechanics is strain-rate and temperature dependent, and atorvastatin treatment softens RBCs at physiological temperature, but not at febrile temperature. The observed mechanical change is a notable side effect of the drug in some therapeutic applications. However, the mechano-modulatory effects of atorvastatin on erythrocytes at physiological temperature might offer new therapeutic possibilities for diseases related to blood cell mechanics.

摘要

红细胞是具有机械活性的细胞,在血管系统中循环时会不断变形。它们的机械特性会因各种病理生理状况而发生显著改变,而红细胞力学的改变反过来又会产生功能上的影响。尽管已经对红细胞进行了大量的力学研究,但令人惊讶的是,红细胞的应变率和温度依赖性力学尚未得到系统研究,目前的数据主要基于室温下的测量。在此,我们使用了最先进的单细胞光镊技术,在生理和医学相关温度下探究阿托伐他汀诱导的红细胞力学变化及其应变率依赖性。我们的数据表明,红细胞力学是应变率和温度依赖性的,阿托伐他汀治疗在生理温度下会使红细胞变软,但在发热温度下则不会。观察到的力学变化在某些治疗应用中是该药物的一个显著副作用。然而,阿托伐他汀在生理温度下对红细胞的机械调节作用可能为与血细胞力学相关的疾病提供新的治疗可能性。

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