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首页> 外文期刊>Angewandte Chemie >Near-Infrared-Activated Nanocalorifiers in Microcapsules: Vapor Bubble Generation for In Vivo Enhanced Cancer Therapy
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Near-Infrared-Activated Nanocalorifiers in Microcapsules: Vapor Bubble Generation for In Vivo Enhanced Cancer Therapy

机译:微胶囊中的近红外激活的纳米热量调节剂:体内汽泡产生增强癌症的治疗。

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摘要

Photothermal therapy based on gold nanostructures has been widely investigated as a state-of-the-art noninvasive therapy approach. Because single nanoparticles cannot harvest sufficient energy, self-assemblies of small plasmonic particles into large aggregates are required for enhanced photothermal performance. Self-assembled gold nanorods in lipid bilayer-modified microcapsules are shown to localize at tumor sites, generate vapor bubbles under near-infrared light exposure, and subsequently damage tumor tissues. The polyelectrolyte multilayer enables dense packing of gold nanorods during the assembly process, which leads to the formation of vapor bubbles around the excited capsules. The resulting vapor bubbles achieve a high efficiency of suppressing tumor growth compared to single gold nanorods. In vivo experiments demonstrated the ability of soft-polymer multilayer microcapsules to cross the biological barriers of the body and localize at target tissues.
机译:基于金纳米结构的光热疗法已被广泛研究为一种最新的无创疗法。由于单个纳米粒子无法收集到足够的能量,因此需要小等离激元粒子自组装为大聚集体,以增强光热性能。脂质双层修饰的微胶囊中的自组装金纳米棒显示位于肿瘤部位,在近红外光照射下会产生蒸汽泡,并随后破坏肿瘤组织。聚电解质多层能够在组装过程中紧密堆积金纳米棒,从而导致在激发的胶囊周围形成蒸气气泡。与单个金纳米棒相比,所产生的气泡实现了抑制肿瘤生长的高效率。体内实验表明,软聚合物多层微胶囊具有越过人体生物屏障并位于靶组织的能力。

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