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首页> 外文期刊>Nanoscale >Gold nanorods functionalized by a glutathione response near- infrared fluorescent probe as a promising nanoplatform for fluorescence imaging guided precision therapy
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Gold nanorods functionalized by a glutathione response near- infrared fluorescent probe as a promising nanoplatform for fluorescence imaging guided precision therapy

机译:金纳米棒谷胱甘肽功能化近红外荧光探针作为回应有前途的nanoplatform荧光成像制导精度疗法

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摘要

Theranostics nanoplatforms offer opportunities for imaging-guided precision therapy and hold great potential for clinical applications. In most reported works, the imaging unit has a lack of site selectivity, and is always kept in the on modality regardless of whether it is in normal tissues or tumor sites, increasing the risk of unsafe treatment. Herein, we designed a near-infrared (NIR) fluorescence-guided theranostics nanoplatform by integrating the functions of tumor-response and photodynamic therapy (PDT)/photothermal therapy (PTT). A novel NIR fluorescent dye, CyPT, with excellent optical and PDT/PTT properties, was synthesized and linked onto the gold nanorods (AuNRs) to form CyPT-AuNRs nanohybrids via a sulfur-sulfur bond that can be broken by glutathione (GSH) with high selectivity and sensitivity. In normal cells where the concentration of GSH is low, the fluorescence of CyPT is quenched by the AuNRs. By contrast, the high level of GSH in tumor cells leads to the breaking of the sulfur-sulfur bond, resulting in the release of CyPT and the accomplishment of a off-on fluorescence response. Followed by precise NIR tumor-imaging diagnosis, the PDT and PTT treatment which rely on the released CyPT and AuNRs, respectively, can be effectively performed. The CyPT-AuNRs nanoplatform has been successfully applied to the treatment of tumor xenograft models and no distinct damage has been observed in the nearby normal tissues. This versatile nanoplatform has potential for use in targeted tumor imaging and precision therapy.
机译:开展nanoplatforms提供机会成像制导精度疗法和伟大的临床应用潜力。报道,成像单元的缺乏网站选择性,总是在形态无论在正常肿瘤组织或网站,增加的风险不安全的治疗。近红外(NIR) fluorescence-guided开展nanoplatform整合功能的肿瘤反应和光能治疗(PDT) /光照疗法(PTT)。近红外荧光染料,CyPT优秀的光学和PDT / PTT性质,合成联系到金纳米棒(AuNRs)形式通过sulfur-sulfur CyPT-AuNRs nanohybrids债券可以被谷胱甘肽(GSH)高选择性和灵敏度。谷胱甘肽的浓度很低,由AuNRs CyPT的荧光猝灭。相反,高水平的肿瘤细胞中谷胱甘肽导致sulfur-sulfur键的断裂,导致CyPT和的释放成就上的荧光反应。其次是精确的近红外光谱tumor-imaging诊断,依赖的PDT和PTT治疗发布CyPT AuNRs,分别有效地执行。nanoplatform已成功应用到也没有治疗肿瘤异种移植模型不同的损害已经观察到在附近正常组织。潜在的用于目标成像和肿瘤精确治疗。

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