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Regioselective Localization and Tracking of Biomolecules on Single Gold Nanoparticles

机译:在单个金纳米粒子上的区域选择性定位和生物分子的跟踪。

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摘要

AbstractSelective localization of biomolecules at the hot spots of a plasmonic nanoparticle is an attractive strategy to exploit the light–matter interaction due to the high field concentration. Current approaches for hot spot targeting are time-consuming and involve prior knowledge of the hot spots. Multiphoton plasmonic lithography is employed to rapidly immobilize bovine serum albumin (BSA) hydrogel at the hot spot tips of a single gold nanotriangle (AuNT). Regioselectivity and quantity control by manipulating the polarization and intensity of the incident laser are also established. Single AuNTs are tracked using dark-field scattering spectroscopy and scanning electron microscopy to characterize the regioselective process. Fluorescence lifetime measurements further confirm BSA immobilization on the AuNTs. Here, the AuNT-BSA hydrogel complexes, in conjunction with single-particle optical monitoring, can act as a framework for understanding light–molecule interactions at the subnanoparticle level and has potential applications in biophotonics, nanomedicine, and life sciences.
机译:摘要由于高场浓度,生物分子在等离子体纳米粒子热点上的选择性定位是利用光-质相互作用的一种有吸引力的策略。当前用于热点定位的方法是耗时的,并且涉及热点的先验知识。多光子等离子光刻技术用于将牛血清白蛋白(BSA)水凝胶快速固定在单个金纳米三角形(AuNT)的热点处。还建立了通过操纵入射激光的偏振和强度进行区域选择性和数量控制。使用暗场散射光谱和扫描电子显微镜对单个AuNT进行追踪,以表征区域选择性过程。荧光寿命的测量进一步证实了BSA固定在AuNT上。在这里,AuNT-BSA水凝胶复合物与单粒子光学监测相结合,可以作为了解亚纳米级光分子相互作用的框架,并在生物光子学,纳米医学和生命科学中具有潜在的应用。

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