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Thermoplasmonic nano-rupture of cells reveals annexin V function in plasma membrane repair

机译:Thermoplasmonic nano-rupture的细胞膜联蛋白V函数质膜修复

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Maintaining the integrity of the cell plasma membrane (PM) is critical for the survival of cells. While an efficient PM repair machinery can aid survival of healthy cells by preventing influx of extracellular calcium, it can also constitute an obstacle in drug delivery and photothermal therapy. We show how nanoscopic holes can be created in a controlled fashion to the cell's plasma membrane, thus allowing identification of molecular components which have a pivotal role in PM repair. Cells are punctured by laser induced local heating of gold nanostructures at the cell surface which causes nano-ruptures in cellular PMs. Recruitment of annexin V near the hole is found to locally reshape the ruptured plasma membrane. Experiments using model membranes, containing recombinant annexin V, provide further biophysical insight into the ability of annexin V to reshape edges surrounding a membrane hole. The thermoplasmonic method provides a general strategy to monitor the response to nanoscopic injuries to the cell surface which offer new insight into how cells respond to photothermal treatment.
机译:维持细胞的完整性等离子体膜(PM)的生存是至关重要的细胞。通过阻止援助生存健康的细胞大量细胞外钙,它还可以在药物输送和构成一个障碍光照疗法。孔可以创建在一个受控制的方式细胞的质膜,从而允许已识别的分子组件一个关键的角色在下午修复。通过激光诱导局部加热的黄金纳米结构在细胞表面的原因nano-ruptures细胞经前综合症。膜联蛋白V发现本地附近的洞重塑质膜破裂。使用模型膜,含有重组膜联蛋白V,提供进一步的生物物理洞察力成膜联蛋白V重塑边缘的能力周围的一层膜孔。方法提供了一个通用的监控策略对纳米细胞损伤表面细胞如何提供新的见解应对光照治疗。

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