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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Atomic force microscopy to elucidate how peptides disrupt membranes
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Atomic force microscopy to elucidate how peptides disrupt membranes

机译:原子力显微镜,以阐明肽如何破坏膜

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摘要

Atomic force microscopy is an increasingly attractive tool to study how peptides disrupt membranes. Often performed on reconstituted lipid bilayers, it provides access to time and length scales that allow dynamic investigations with nanometre resolution. Over the last decade, AFM studies have enabled visualisation of membrane disruption mechanisms by antimicrobial or host defence peptides, including peptides that target malignant cells and biofilms. Moreover, the emergence of high-speed modalities of the technique broadens the scope of investigations to antimicrobial kinetics as well as the imaging of peptide action on live cells in real time. This review describes how methodological advances in AFM facilitate new insights into membrane disruption mechanisms.
机译:原子力显微镜是一种越来越有吸引力的工具,用于研究肽如何破坏膜。 经常在重构的脂质双层上进行,它提供了对允许用纳米分辨率进行动态调查的时间和长度尺度的访问。 在过去十年中,AFM研究能够通过抗微生物或宿主防肽肽的可视化,包括靶向恶性细胞和生物膜的肽。 此外,技术的高速模式的出现拓宽了对抗微生物动力学的研究范围以及实时对活细胞上的肽作用的成像。 该审查描述了AFM的方法论如何进步如何促进新的洞察膜中断机制。

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