利用新型荧光标记物 DAPRed 实时测量活细胞中的自噬通量

IF 1 Q3 BIOLOGY
Arnold Sipos, Kwang-Jin Kim, J. R. Alvarez, Edward Crandall
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引用次数: 0

摘要

自噬是一种保守的平衡机制,参与细胞平衡和许多疾病过程。虽然自噬最早是在饥饿状态下的酵母细胞中被描述的,但多年来我们已经了解到,自噬在许多应激条件下以及哺乳动物细胞的发育和衰老过程中都会被激活。了解自噬作用的基本机制能让我们更深入地了解许多疾病(如心肌坏死、阿尔茨海默病和慢性肺损伤)的发病机理。由于自噬过程的复杂性和动态性,人们开发了许多不同的技术(如 Western 印迹法、荧光标记法和关键自噬蛋白的基因修饰法)来描述自噬效应。这些方法虽然有效,但并不适合评估随时间变化的自噬动力学。在此,我们介绍一种新方法:利用 DAPRed 通过活细胞成像测量自噬通量,利用 A549 细胞,可在单个活细胞中实时观察和量化自噬通量。与其他实验程序相比,这种方法相对简单,适用于任何体外细胞/组织模型。主要特点 - 可在单细胞水平上对自噬通量进行实时定性成像。- 原代细胞和细胞系也可使用这种技术。- 使用共焦显微镜可在不干扰细胞功能的情况下观察自噬。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Real-Time Autophagic Flux Measurements in Live Cells Using a Novel Fluorescent Marker DAPRed
Autophagy is a conserved homeostatic mechanism involved in cellular homeostasis and many disease processes. Although it was first described in yeast cells undergoing starvation, we have learned over the years that autophagy gets activated in many stress conditions and during development and aging in mammalian cells. Understanding the fundamental mechanisms underlying autophagy effects can bring us closer to better insights into the pathogenesis of many disease conditions (e.g., cardiac muscle necrosis, Alzheimer’s disease, and chronic lung injury). Due to the complex and dynamic nature of the autophagic processes, many different techniques (e.g., western blotting, fluorescent labeling, and genetic modifications of key autophagy proteins) have been developed to delineate autophagy effects. Although these methods are valid, they are not well suited for the assessment of time-dependent autophagy kinetics. Here, we describe a novel approach: the use of DAPRed for autophagic flux measurement via live cell imaging, utilizing A549 cells, that can visualize and quantify autophagic flux in real time in single live cells. This approach is relatively straightforward in comparison to other experimental procedures and should be applicable to any in vitro cell/tissue models. Key features • Allows real-time qualitative imaging of autophagic flux at single-cell level. • Primary cells and cell lines can also be utilized with this technique. • Use of confocal microscopy allows visualization of autophagy without disturbing cellular functions.
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CiteScore
1.50
自引率
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