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首页> 外文期刊>Journal of physical chemistry letters >Optical Antenna-Based Fluorescence Correlation Spectroscopy to Probe the Nanoscale Dynamics of Biological Membranes
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Optical Antenna-Based Fluorescence Correlation Spectroscopy to Probe the Nanoscale Dynamics of Biological Membranes

机译:基于光天线的荧光相关光谱探测生物膜的纳米级动力学

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摘要

The plasma membrane of living cells is compartmentalized at multiple spatial scales ranging from the nano- to the mesoscale. This nonrandom organization is crucial for a large number of cellular functions. At the nanoscale, cell membranes organize into dynamic nanoassemblies enriched by cholesterol, sphingolipids, and certain types of proteins. Investigating these nanoassemblies known as lipid rafts is of paramount interest in fundamental cell biology. However, this goal requires simultaneous nanometer spatial precision and microsecond temporal resolution, which is beyond the reach of common microscopes. Optical antennas based on metallic nanostructures efficiently enhance and confine light into nanometer dimensions, breaching the diffraction limit of light. In this Perspective, we discuss recent progress combining optical antennas with fluorescence correlation spectroscopy (FCS) to monitor microsecond dynamics at nanoscale spatial dimensions. These new developments offer numerous opportunities to investigate lipid and protein dynamics in both mimetic and native biological membranes.
机译:活细胞的血浆膜在从纳米到Messcale的多个空间尺度范围内划分。该非谐波组织对于大量蜂窝功能至关重要。在纳米级,细胞膜组织成富含胆固醇,鞘脂和某些类型的蛋白质富集的动态纳米结合物。研究称为脂质筏的这些纳米组织是最重要的对基本细胞生物学的兴趣。然而,该目标需要同时纳米空间精度和微秒的时间分辨率,这超出了普通显微镜的范围。基于金属纳米结构的光天线有效地增强和将光放入纳米尺寸,突破光的衍射极限。在这种观点中,我们讨论了最近与荧光相关光谱(FCS)组合光学天线的进展,以监测纳米级空间尺寸的微秒动态。这些新的发展提供了许多机会来调查模仿和原生生物膜中的脂质和蛋白质动态。

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