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Micro fixture enabled in-situ imaging and manipulation of cell membrane protein

机译:微固定装置使能成像和操纵细胞膜蛋白

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This paper presents a new and reliable approach for in-situ imaging and manipulation of membrane protein molecules. The major problematic issue in medicine is the lack of fundamental understanding of the molecular mechanisms that cause major life-threatening and incurable diseases. The development of atomic force microscopy (AFM) opens an entirely new way to address these medical questions. A biocompatible porous polymer micro-mesh is designed for immobilizing living cells and protein molecules during AFM scanning. We demonstrate its usefulness by imaging cancerous B-cells as well as cell-junction molecules associated with living epithelial cells at high resolution. This technology can not only be used for imaging, but also for nanomanipulation. Current results suggest that this AFM nanomanipulation system and the novel cell fixture apparatus can be used to study the dynamic changes and function of cellular structures with unparalleled resolution both under physiological and pathophysiological conditions.
机译:本文介绍了一种新的可靠方法,用于膜蛋白分子的原位成像和操纵。医学中的主要问题问题是对造成重大危及生命和可治区疾病的分子机制缺乏基本理解。原子力显微镜(AFM)的发展为解决这些医学问题的全新方法。生物相容性多孔聚合物微网设计用于在AFM扫描期间固定活细胞和蛋白质分子。我们通过在高分辨率高分辨率上成像癌细胞和与生物上皮细胞相关的细胞结分子来证明其有用性。该技术不仅可以用于成像,还可以用于纳米尺寸。目前的结果表明,该AFM纳米尺寸系统和新型细胞夹具装置可用于研究在生理和病理生理病症下具有无与伦比的分辨率的细胞结构的动态变化和功能。

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