生物学杂志

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光镊技术在生命科学研究中的应用现状

  

  1. 中国科学技术大学 物理学院, 合肥 230026
  • 出版日期:2019-06-18 发布日期:2019-06-18
  • 作者简介:李银妹,教授,主要研究方向为光镊技术及其应用研究,E-mail:liyinmei@ustc.edu.cn
  • 基金资助:
    国家自然科学基金资助项目(61535011, 31870759)

Current applied researches of optical tweezers in biology

  1. School of Physical Sciences, University of Science and Technology of China, Hefei 230026, China
  • Online:2019-06-18 Published:2019-06-18

摘要: 光镊技术发明30年来,在生命科学领域中的应用取得了开创性成果,促进了生物物理学的发展。2018年光镊发明人A.Ashkin获得了诺贝尔物理学奖,再次激发了社会对光镊技术的关注。光镊能够主动操控微观粒子如细胞,还能对操控力进行定量测量,在生物医学领域有其独特的用处。从生物应用视角来讨论光镊技术,希望通过重温光镊技术的特点和功能,为生物学家遴选科学问题和样品设计做铺垫。介绍生物学家能方便掌握的单光镊操控应用实例,致力于普及和推进已有的研究成果。重点讨论物理生物交叉研究的特点,分析光镊技术研究单细胞、单分子中涉及的技术瓶颈。结合实验室的工作介绍光镊技术的研究进展和仪器应用现状,展望该领域未来发展方向和前景。

关键词: 光镊技术, 物理生物交叉;单细胞;单分子

Abstract: Invented 30 years ago, optical tweezers achieved a number of groundbreaking achievements in biology and promoted the development of biophysics. In 2018, A. Ashkin won the Nobel Prize in Physics for the invention of optical tweezers, which once again inspired the society′s attention to the technology of light. The ability of optical tweezers to quantitatively measure the force and actively manipulate micro-particles like cells makes it a unique tool in the biomedical field. This paper discusses optical tweezers from the perspective of biological applications. We hope it pave a way for biologists to address scientific questions and improve their sample preparation by revisiting the characteristics and functions of optical tweezers. Here we dedicated to popularize and advance existing research results by introducing examples of single beam optical tweezers applications that biologists can easily grasp. This paper focused on characteristics of physical biological cross-disciplinary research, and analyzed the technical bottlenecks involved in the study of single-cell and single-molecule by optical tweezers. We also introduced the research progress of optical tweezers technology and the current situation of the instrument market, looked forward to the future development and prospects of this field basing on our experience of optical tweezers.

Key words: optical tweezers, interdicipline of physics and biology, single cell, single molecule

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