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Plasmonic nanoparticle interaction with cell membrane for diagnostic applications

机译:等离子纳米粒子与细胞膜的相互作用,用于诊断应用

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Optofluidic schemes of inhibition, transport and activation by carrier molecules through cell membrane have interesting applications. Through plasmonic excitation of nanoparticles integrated in microfluidic channel, we observe cell membrane structural changes. Related phenomena are studied in situ in a microfluidic channel via fluorescence imaging. Detailed analysis is carried out to understand the possible application of this scheme in optically induced transport and expression of cell membrane protein. Optical properties of the cells undergoing plasmonic transport are monitored and correlated to cell expression assay. Plasmonic charge transport and optical transmission are measured in the microfluidic lab-on-chip along with in-situ imaging.
机译:载体分子通过细胞膜的抑制,转运和活化的光流体方案具有有趣的应用。通过等离子激发集成在微流控通道中的纳米粒子,我们观察到细胞膜的结构变化。通过荧光成像在微流体通道中原位研究相关现象。进行了详细的分析,以了解该方案在细胞膜蛋白的光诱导转运和表达中的可能应用。监测经历等离子体迁移的细胞的光学性质,并将其与细胞表达测定相关。血浆中的等离子电荷传输和光传输是在微流控芯片实验室中进行的,同时还进行了原位成像。

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