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Controlled Cellular fusion using optically trapped Plasmonic Nano-Heaters

机译:使用光学捕获的等离子纳米加热器控制细胞融合

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Optically trapped plasmonic nano-heaters are used to mediate efficient and controlled fusion of biological membranes. The fusion method is demonstrated by optically trapping plasmonic nanoparticles located in between vesicle membranes leading to rapid lipid and content mixing. As an interesting application we show how direct control over fusion can be used for studying diffusion of peripheral membrane proteins and their interactions with membranes and for studying protein reactions. Membrane proteins encapsulated in an inert vesicle can be transferred to a vesicle composed of negative lipids by optically induced fusion. Mixing of the two membranes results in a fused vesicle with a high affinity for the protein and we observe immediate membrane tabulation due to the activity of the protein. Fusion of distinct membrane compartments also has applications in small scale chemistry for realizing pico-liter reactions and offers many exciting applications within biology which are discussed here.
机译:光学捕获的等离激元纳米加热器用于介导生物膜的有效和受控融合。通过光学俘获位于囊膜之间的等离激元纳米粒子,导致脂质和内容物快速混合,证明了融合方法。作为一个有趣的应用,我们展示了如何将融合的直接控制用于研究外周膜蛋白的扩散及其与膜的相互作用以及研究蛋白反应。封装在惰性囊泡中的膜蛋白可以通过光诱导融合转移到由负脂质组成的囊泡中。两种膜的混合产生了对蛋白质具有高亲和力的融合囊泡,并且由于蛋白质的活性,我们观察到了立即的膜列表。不同膜隔室的融合在小规模化学中也具有实现皮升反应的应用,并在生物学中提供了许多激动人心的应用,如本文所述。

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