Ratiometric Fluorescence Probes for In Situ Imaging of Membrane Tension in Live Cells

IF 4 2区 化学 Q1 BIOCHEMICAL RESEARCH METHODS
Hai-Yan Wen, Yusi Hu, You-Yang Duo, Liang Zhao, Zhi-Gang Wang* and Shu-Lin Liu*, 
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引用次数: 0

Abstract

Membrane tension is an important physical parameter of describing cellular homeostasis, and it is widely used in the study of cellular processes involving membrane deformation and reorganization, such as cell migration, cell spreading, and cell division. Despite the importance of membrane tension, direct measurement remains difficult. In this work, we developed a ratiometric fluorescent probe sensitive to membrane tension by adjusting the carbon chain structure based on polarity-sensitive fluorophores. The probe is sensitive to changes in membrane tension after cells were subjected to physical or chemical stimuli, such as osmotic shock, lipid peroxidation, and mechanical stress. When the polarity of the plasma membrane increases (the green/red ratio decreases) and the membrane tension increases, the relative magnitude of the membrane tension can be quantitatively calculated by fluorescence ratio imaging. Thus, the probe proved to be an efficient and sensitive membrane tension probe.

Abstract Image

Abstract Image

用于活细胞膜张力原位成像的比率荧光探针。
膜张力是描述细胞稳态的一个重要物理参数,它被广泛应用于研究涉及膜变形和重组的细胞过程,如细胞迁移、细胞扩散和细胞分裂。尽管膜张力非常重要,但直接测量仍很困难。在这项工作中,我们根据对极性敏感的荧光团,通过调整碳链结构,开发了一种对膜张力敏感的比率计荧光探针。该探针对细胞受到渗透休克、脂质过氧化和机械应力等物理或化学刺激后膜张力的变化非常敏感。当质膜极性增加(绿/红比率降低)和膜张力增加时,可通过荧光比率成像定量计算膜张力的相对大小。因此,该探针被证明是一种高效、灵敏的膜张力探针。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
9.00
自引率
2.10%
发文量
236
审稿时长
1.4 months
期刊介绍: Bioconjugate Chemistry invites original contributions on all research at the interface between man-made and biological materials. The mission of the journal is to communicate to advances in fields including therapeutic delivery, imaging, bionanotechnology, and synthetic biology. Bioconjugate Chemistry is intended to provide a forum for presentation of research relevant to all aspects of bioconjugates, including the preparation, properties and applications of biomolecular conjugates.
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