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首页> 外文期刊>Scientific reports. >Bio-mimetic Nanostructure Self-assembled from Au@Ag Heterogeneous Nanorods and Phage Fusion Proteins for Targeted Tumor Optical Detection and Photothermal Therapy
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Bio-mimetic Nanostructure Self-assembled from Au@Ag Heterogeneous Nanorods and Phage Fusion Proteins for Targeted Tumor Optical Detection and Photothermal Therapy

机译:由Au @ Ag异质纳米棒和噬菌体融合蛋白自组装的仿生纳米结构,用于靶向肿瘤光学检测和光热疗法

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摘要

Nanomaterials with near-infrared (NIR) absorption have been widely studied in cancer detection and photothermal therapy (PTT), while it remains a great challenge in targeting tumor efficiently with minimal side effects. Herein we report a novel multifunctional phage-mimetic nanostructure, which was prepared by layer-by-layer self-assembly of Au@Ag heterogenous nanorods (NRs) with rhodamine 6G, and specific pVIII fusion proteins. Au@Ag NRs, first being applied for PTT, exhibited excellent stability, cost-effectivity, biocompatibility and tunable NIR absorption. The fusion proteins were isolated from phage DDAGNRQP specifically selected from f8/8 landscape phage library against colorectal cancer cells in a high-throughput way. Considering the definite charge distribution and low molecular weight, phage fusion proteins were assembled on the negatively charged NR core by electrostatic interactions, exposing the N-terminus fused with DDAGNRQP peptide on the surface. The fluorescent images showed that assembled phage fusion proteins can direct the nanostructure into cancer cells. The nanostructure was more efficient than gold nanorods and silver nanotriangle-based photothermal agents and was capable of specifically ablating SW620 cells after 10?min illumination with an 808?nm laser in the light intensity of 4?W/cm2. The prepared nanostructure would become an ideal reagent for simutaneously targeted optical imaging and PTT of tumor.
机译:具有近红外(NIR)吸收的纳米材料已在癌症检测和光热疗法(PTT)中得到了广泛研究,而在以最小的副作用有效靶向肿瘤方面仍然是一个巨大的挑战。在这里,我们报告一种新型的多功能噬菌体模拟纳米结构,它是通过Au @ Ag异质纳米棒(NRs)与若丹明6G和特定的pVIII融合蛋白逐层自组装而制备的。首次用于PTT的Au @ Ag NRs具有出色的稳定性,成本效益,生物相容性和可调节的NIR吸收。从噬菌体DDAGNRQP分离融合蛋白,所述噬菌体DDAGNRQP以高通量方式从针对结肠直肠癌细胞的f8 / 8景观噬菌体文库中特别选择。考虑到一定的电荷分布和低分子量,噬菌体融合蛋白通过静电相互作用组装在带负电荷的NR核上,使与DDAGNRQP肽融合的N末端暴露在表面。荧光图像表明,组装的噬菌体融合蛋白可以将纳米结构定向到癌细胞中。纳米结构比金纳米棒和银纳米三角形基光热剂更有效,并且能够在4?W / cm 2的光强度下用808?nm激光照射10?min后特异性烧蚀SW620细胞。 sup>。制备的纳米结构将成为同时靶向光学成像和肿瘤PTT的理想试剂。

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