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用于靶点和药物发现的活细胞成像。

Live cell imaging for target and drug discovery.

作者信息

Watson Peter

机构信息

Molecular Cell Biology, School of Biosciences, Cardiff University, Cardiff, UK.

出版信息

Drug News Perspect. 2009 Mar;22(2):69-79. doi: 10.1358/dnp.2009.22.2.1334450.

Abstract

Cell biology has the ability to yield an incredible amount of information regarding cell activity, and is a powerful tool to both discover targets for, and examine the effects of therapeutic molecules on model systems. At the forefront of cell biology is a wide array of microscopy-based techniques that allow us to probe the inner workings of both individual cells in culture and cell systems within living animals. Live cell imaging plays an important role not only in the basic science that leads to the isolation and characterization of the proteins and environmental factors involved in developing disease, but also in drug discovery, optimization and characterization at both the single cell level, and also to look at the effects on tissues and organs inside animal models. This article aims to give an overview of the techniques and processes important in utilizing live cell imaging in target and drug discovery, and the advances in microscope design and automation that have made current microscopy techniques such a powerful tool. It then looks ahead to how recent improvements in the resolution achievable by light microscopes could shape the future direction of live cell imaging in cell biology.

摘要

细胞生物学能够产生关于细胞活动的海量信息,并且是发现治疗靶点以及研究治疗性分子对模型系统影响的有力工具。细胞生物学的前沿是一系列基于显微镜的技术,这些技术使我们能够探究培养中的单个细胞以及活体动物体内细胞系统的内部运作。活细胞成像不仅在导致疾病发生过程中涉及的蛋白质和环境因素的分离与表征的基础科学中发挥重要作用,而且在单细胞水平的药物发现、优化和表征以及观察对动物模型内组织和器官的影响方面也发挥重要作用。本文旨在概述在靶点和药物发现中利用活细胞成像的重要技术和过程,以及显微镜设计和自动化方面的进展,这些进展使当前的显微镜技术成为如此强大的工具。然后展望了光学显微镜可实现的分辨率的最新改进如何塑造细胞生物学中活细胞成像的未来方向。

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