The advancement of blood cell research by optical tweezers

Q1 Physics and Astronomy
Tatiana Avsievich , Ruixue Zhu , Alexey Popov , Alexander Bykov , Igor Meglinski
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引用次数: 34

Abstract

Demonstration of the light radiation pressure on a microscopic level by A. Ashkin led to the invention of optical tweezers (OT). Applied in the studies of living systems, OT have become a preferable instrument for the noninvasive study of microobjects, allowing manipulation and measurement of the mechanical properties of molecules, organelles, and cells. In the present paper, we overview OT applications in hemorheological research, placing emphasis on red blood cells but also discussing OT applications for the investigation of the biomechanics of leukocytes and platelets. Blood properties have always served as a primary parameter in medical diagnostics due to the interconnection with the physiological state of an organism. Despite blood testing being a well-established procedure of conventional medicine, there are still many complex processes that must be unraveled to improve our understanding and contribute to future medicine. OT are advancing single-cell research, promising new insights into individual cell characteristics compared to the traditional approaches. We review the fundamental and practical findings revealed in blood research through the optical manipulation, stretching, guiding, immobilization, and inter-/intracellular force measurements of single blood cells.

光学镊子在血细胞研究中的进展
阿什金在微观水平上对光辐射压力的演示导致了光镊的发明。应用于生命系统的研究中,OT已经成为对微物体进行无创研究的首选工具,允许对分子、细胞器和细胞的机械特性进行操作和测量。在本文中,我们概述了OT在血液流变学研究中的应用,重点是红细胞,但也讨论了OT在白细胞和血小板生物力学研究中的应用。血液特性一直是医学诊断的主要参数,因为它与生物体的生理状态有关。尽管血液检测是一项完善的常规医学程序,但仍有许多复杂的过程需要解开,以提高我们的理解并为未来的医学做出贡献。OT正在推进单细胞研究,与传统方法相比,有望对单个细胞特征有新的见解。我们回顾了通过光学操作、拉伸、引导、固定和单个血细胞的细胞间/细胞内力测量在血液研究中揭示的基本和实际发现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Reviews in Physics
Reviews in Physics Physics and Astronomy-Physics and Astronomy (all)
CiteScore
21.30
自引率
0.00%
发文量
8
审稿时长
98 days
期刊介绍: Reviews in Physics is a gold open access Journal, publishing review papers on topics in all areas of (applied) physics. The journal provides a platform for researchers who wish to summarize a field of physics research and share this work as widely as possible. The published papers provide an overview of the main developments on a particular topic, with an emphasis on recent developments, and sketch an outlook on future developments. The journal focuses on short review papers (max 15 pages) and these are freely available after publication. All submitted manuscripts are fully peer-reviewed and after acceptance a publication fee is charged to cover all editorial, production, and archiving costs.
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