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光学镊子在红细胞研究中的应用。

Optical Tweezers in Studies of Red Blood Cells.

机构信息

Optoelectronics and Measurement Techniques Laboratory, University of Oulu, 90570 Oulu, Finland.

Interdisciplinary Laboratory of Biophotonics, National Research Tomsk State University, 634050 Tomsk, Russia.

出版信息

Cells. 2020 Feb 26;9(3):545. doi: 10.3390/cells9030545.

Abstract

Optical tweezers (OTs) are innovative instruments utilized for the manipulation of microscopic biological objects of interest. Rapid improvements in precision and degree of freedom of multichannel and multifunctional OTs have ushered in a new era of studies in basic physical and chemical properties of living tissues and unknown biomechanics in biological processes. Nowadays, OTs are used extensively for studying living cells and have initiated far-reaching influence in various fundamental studies in life sciences. There is also a high potential for using OTs in haemorheology, investigations of blood microcirculation and the mutual interplay of blood cells. In fact, in spite of their great promise in the application of OTs-based approaches for the study of blood, cell formation and maturation in erythropoiesis have not been fully explored. In this review, the background of OTs, their state-of-the-art applications in exploring single-cell level characteristics and bio-rheological properties of mature red blood cells (RBCs) as well as the OTs-assisted studies on erythropoiesis are summarized and presented. The advance developments and future perspectives of the OTs' application in haemorheology both for fundamental and practical in-depth studies of RBCs formation, functional diagnostics and therapeutic needs are highlighted.

摘要

光学镊子(OTs)是一种创新的仪器,用于操纵感兴趣的微观生物物体。多通道和多功能 OTs 的精度和自由度的快速提高,开创了一个研究活组织基本物理和化学性质以及生物过程中未知生物力学的新时代。如今,OTs 被广泛用于研究活细胞,并在生命科学的各个基础研究中产生了深远的影响。OTs 在血液流变学、血液微循环研究和血细胞相互作用中也有很大的应用潜力。事实上,尽管在血液、细胞形成和成熟的红细胞生成中应用 OTs 方法具有很大的前景,但它们尚未得到充分的探索。在这篇综述中,总结和介绍了 OTs 的背景、其在探索单细胞水平特征和成熟红细胞(RBC)生物流变学特性方面的最新应用,以及 OTs 辅助红细胞生成的研究。强调了 OTs 在血液流变学中的应用在 RBC 形成、功能诊断和治疗需求的基础和实际深入研究方面的最新进展和未来展望。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a88/7140472/ed1e7ffbae3c/cells-09-00545-g001.jpg

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