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An NIR-sensitive layered supramolecular nanovehicle for combined dual-modal imaging and synergistic therapy

机译:一个NIR-sensitive分层超分子nanovehicle dual-modal成像和组合协同治疗

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摘要

A supramolecular nanovehicle, denoted as ICG-DOX/Gd-LDH, was synthesized by the co-intercalation of indocyanine green (ICG) and doxorubicin hydrochloride (DOX) into a gallery of Gd3+-doped-layered double hydroxide (Gd-LDH) such that to achieve a chemo-photothermal synergistic therapeutic agent. The unique structure of Gd-LDH can not only stabilize the photothermal agent ICG to enhance the photothermal efficiency, but also hamper the recombination between electron and holes, leading to the generation of more reactive oxygen species (ROS) under irradiation in the NIR range. Together with the loading capacity of DOX, ICG-DOX/ Gd-LDH exhibited excellent combinatorial effects on tumor growth inhibition in both in vitro studies on HeLa cell line and in vivo tests over tumor-bearing mouse models. Moreover, it showed ideal ability for long-term tracing of the carrier distribution via either MRI or fluorescence imaging. Thus, this study indicates that Gd-LDH is a promising platform for the construction of multifunctional formulations, especially theranostic nano-systems for cancer treatment.
机译:超分子nanovehicle,表示ICG-DOX / Gd-LDH,是合成的吲哚菁绿co-intercalation (ICG)盐酸阿霉素(阿霉素)的画廊Gd3 + -doped-layered双氢氧化物(Gd-LDH)等实现chemo-photothermal协同治疗的代理。不仅可以稳定光照代理协调小组吗提高光热光谱分析的效率,但也妨碍电子和之间的重组洞,导致产生更多的活性氧物种(ROS)在近红外光谱辐照下的范围内。ICG-DOX / Gd-LDH展出优秀的组合在对肿瘤生长抑制的影响体外研究海拉细胞和体内试验在肿瘤小鼠模型。表现出理想的长期跟踪能力通过核磁共振或载波分布荧光成像。Gd-LDH是一个有前途的平台建设多功能配方,尤其是theranostic nano-systems癌症治疗。

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