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首页> 外文期刊>Materials Chemistry Frontiers >Acid-responsive aggregated SERS nanoparticles for improved tumor diagnosis
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Acid-responsive aggregated SERS nanoparticles for improved tumor diagnosis

机译:Acid-responsive聚合ser纳米颗粒提高肿瘤诊断

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Surface-enhanced Raman scattering (SERS) technology has attracted increasing attention in histopathologic examination for tumor diagnosis due to its high resolution and photostability. However, its diagnostic accuracy is inadequate due to its low signal-to-noise ratio (SNR). In order to improve the imaging effect, we constructed a pH-responsive aggregated SERS nanoprobe (Au@MCPF), which was formed via modifying a citraconic anhydride (CA)-linked polyvinyl alcohol (PVA) chain with folic acid (FA)-targeting ability (CC-PVA-FA) and the Raman molecule 4-mercaptobenzoic acid (4-MBA) onto the surface of Au nanoparticles (NPs). In tumor microenvironment, Au@MCPF NPs could actively target the tumor cells, then aggregate in the acidic intracellular environment due to the hydrolysis of the CC-PVA-FA chain and the hydrophobic interaction of 4-MBA, which made the intracellular retention of Au@MCPF NPs increase 2.1-fold compared to monodispersed NPs within 8 h, while the generation of hot spots between the Au NPs enhanced the in vitro Raman imaging SNR of the aggregated NPs 9.2-fold. In addition, the in vivo result showed that the Raman signal of the Au@MCPF NPs in the tumor tissue was 5.2-fold higher than that of isolated NPs, which could improve the imaging contrast. In other words, this pH-responsive aggregated SERS nanoprobe is expected to provide a promising method for the accurate diagnosis of tumors.
机译:表面增强拉曼散射(ser)技术吸引了越来越多的关注肿瘤组织病理检查诊断由于其高分辨率和耐光性。然而,它的诊断精度是不够的由于其低信噪比(信噪比)。为提高成像效果,我们构建了一个pH-responsive聚合爵士nanoprobe (Au@MCPF),通过形成的修改citraconic酐(CA)有关聚乙烯醇(PVA)与叶酸链(FA)的目标(CC-PVA-FA)和拉曼的能力分子4-mercaptobenzoic酸(4-MBA)上Au纳米粒子表面(NPs)。微环境,Au@MCPF NPs可以积极目标肿瘤细胞,然后聚合的由于酸性胞内环境CC-PVA-FA链的水解和4-MBA的疏水作用,使细胞内保留Au@MCPF NPs增加2.1倍相比,单分散的NPs在8h,而一代之间的热点非盟NPs增强体外拉曼成像信噪比聚合NPs 9.2倍。体内的结果表明拉曼信号Au@MCPF NPs在肿瘤组织中是5.2倍高于孤立NPs,提高成像对比度。这pH-responsive聚合ser nanoprobe将提供一个有前途的方法准确的诊断肿瘤。

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