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Macrophage Cell Membrane Camouflaged Au Nanoshells for in Vivo Prolonged Circulation Life and Enhanced Cancer Photothermal Therapy

机译:巨噬细胞膜伪装金纳米壳体内延长循环寿命和增强的癌症光热疗法。

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摘要

Macrophage cell membrane (MPCM)-camouflaged gold nano shells (AuNS) that can serve as a new generation of photothermal conversion agents for in vivo photothermal cancer therapy are presented. They are constructed by the fusion of biocompatible AuNSs and MPCM vesicles. The resulting MPCM-coated AuNSs exhibited good colloidal stability and kept the original near-infrared (NIR) adsorption of AuNSs. Because AuNS carried high density coverage of MPCMs, the totally functional portions of macrophage cells membrane were grafted onto the surface of AuNSs. This surface functionalization provided active targeting ability by recognizing tumor endothelium and thus improved tumoritropic accumulation compared to the red blood cell membrane coating approach. These biomirnetic nanoparticles significantly enhance in vivo blood circulation time and local accumulation at the tumor when administered systematically. Upon NIR laser irradiation, local heat generated by the MPCM-coated AuNS achieves high efficiency to suppress tumor growth and selectively ablate cancerous cells within the illuminated zone. Therefore, MPCM-coated AuNSs remained the natural properties of their source cells, which may improve the efficacy of photothermal therapy modulated by AuNSs and other noble-metal nanoparticles.
机译:提出了巨噬细胞细胞膜(MPCM)伪装的金纳米壳(AuNS),可以用作用于体内光热癌症治疗的新一代光热转化剂。它们是由生物相容性AuNS和MPCM囊泡融合而成。所得的涂有MPCM的AuNSs表现出良好的胶体稳定性,并保持了AuNSs的原始近红外(NIR)吸附。由于AuNS携带MPCM的高密度覆盖,因此巨噬细胞细胞膜的全部功能部分被移植到AuNSs的表面上。与红细胞膜包被方法相比,这种表面功能化通过识别肿瘤内皮提供了主动的靶向能力,因此改善了促肿瘤性蓄积。当系统地给药时,这些生物纳米颗粒显着增加了体内血液循环时间和在肿瘤处的局部积累。在近红外激光照射下,由涂有MPCM的AuNS产生的局部热量达到了抑制肿瘤生长和选择性消融照射区域内癌细胞的高效率。因此,涂有MPCM的AuNSs保留了其源细胞的自然特性,这可能会提高AuNSs和其他贵金属纳米颗粒调节的光热疗法的功效。

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