Recent advances in optical manipulation of cells and molecules for biological science

IF 12.8 1区 化学 Q1 CHEMISTRY, PHYSICAL
Tatsunori Kishimoto , Kyoko Masui , Wataru Minoshima , Chie Hosokawa
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引用次数: 7

Abstract

Noninvasive and nondestructive techniques for monitoring and manipulating cells or biomolecules are essential for understanding biological processes. Optical methodologies have been used for the noninvasive and nondestructive monitoring of intracellular molecules and manipulation of cellular activities to elucidate the localization and interactions of these biomolecules. Since the pioneering work of Ashkin, optical trapping has been used to study cellular elasticity and mechanical characteristics of intracellular molecules. In recent years, there has been a substantial amount of research on the optical manipulation of nanometer-sized objects, including the manipulation of the assembly of nanomaterials and the enhancement of optical forces with optical resonance effects. In the study of biomolecular manipulation by optical forces, the functions and roles of biomolecules have been clarified by analyzing the changes in cellular functions induced by manipulation. In this review, we focus on recent studies on optical trapping for the manipulation of living cells or biomolecules and introduce techniques for the manipulation of cellular functions using optical forces.

Abstract Image

生物科学中细胞和分子光学操作的最新进展
监测和操纵细胞或生物分子的非侵入性和非破坏性技术对于理解生物过程至关重要。光学方法已被用于非侵入性和非破坏性的细胞内分子监测和细胞活动的操纵,以阐明这些生物分子的定位和相互作用。自Ashkin的开创性工作以来,光学捕获已被用于研究细胞内分子的细胞弹性和力学特性。近年来,人们对纳米尺度物体的光学操纵进行了大量的研究,包括对纳米材料组装的操纵以及利用光学共振效应增强光力。在光力操纵生物分子的研究中,通过分析光力对细胞功能的影响,阐明了生物分子的功能和作用。在这篇综述中,我们重点介绍了近年来用于操纵活细胞或生物分子的光捕获的研究,并介绍了利用光力操纵细胞功能的技术。
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来源期刊
CiteScore
21.90
自引率
0.70%
发文量
36
审稿时长
47 days
期刊介绍: The Journal of Photochemistry and Photobiology C: Photochemistry Reviews, published by Elsevier, is the official journal of the Japanese Photochemistry Association. It serves as a platform for scientists across various fields of photochemistry to communicate and collaborate, aiming to foster new interdisciplinary research areas. The journal covers a wide scope, including fundamental molecular photochemistry, organic and inorganic photochemistry, photoelectrochemistry, photocatalysis, solar energy conversion, photobiology, and more. It provides a forum for discussing advancements and promoting collaboration in the field of photochemistry.
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