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Fabrication of multifunctional triple-responsive platform based on CuS-capped periodic mesoporous organosilica nanoparticles for chemo-photothermal therapy

机译:基于CuS封端的周期性介孔有机二氧化硅纳米粒子的多功能三响应平台的化学光热疗法制备

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Introduction: For an ideal drug delivery system, the outstanding drug-loading capacity and specific control of the release of therapeutics at the desired lesions are crucial. In this work, we developed a triple-responsive nanoplatform based on copper sulfide (CuS)-capped yolk-shell-structured periodic mesoporous organosilica nanoparticles (YSPMOs) for synergetic chemo-photothermal therapy. Methods: Herein, the YSPMOs were employed as a drug carrier, which exhibited a high doxorubicin (DOX) loading capacity of 386 mg/g. In this controlled-release drug delivery system, CuS serves as a gatekeeper to modify YSPMOs with reduction-cleavable disulfide bond (YSPMOs@CuS). CuS could not only avoid premature leakage in the delivery process, but also endowed the excellent photothermal therapy (PTT) ability. Results: Upon entering into cancer cells, the CuS gatekeeper was opened with the breaking of disulfide bonds and the DOX release from YSPMOs(DOX)@CuS in response to the intracellular acidic environment and external laser irradiation. Such a precise control over drug release, combined with the photothermal effect of CuS nanoparticles, is possessed by synergistic chemo-photothermal therapy for cancer treatment. Both in vitro and in vivo experimental data indicated that the synergistic effect of YSPMOs(DOX)@CuS showed efficient antitumor effect. In addition, low systemic toxicity was observed in the pathologic examinations of liver, spleen, lungs, and kidneys. Conclusion: This versatile nanoplatform combination of PTT, chemotherapeutics, and gating components shows general potential for designing multifunctional drug delivery systems.
机译:简介:对于理想的药物输送系统,出色的载药量和在所需病灶处特异性释放治疗剂至关重要。在这项工作中,我们开发了一种基于三价响应的纳米平台,该平台基于硫化铜(CuS)盖的卵黄壳结构周期性介孔有机二氧化硅纳米粒子(YSPMOs),用于协同化学光热疗法。方法:本文采用YSPMOs作为药物载体,其阿霉素(DOX)的高载量为386 mg / g。在这种控释药物递送系统中,CuS充当了通过还原可裂解的二硫键(YSPMOs @ CuS)修饰YSPMO的守门员。 CuS不仅可以避免分娩过程中的过早泄漏,而且还具有出色的光热疗法(PTT)能力。结果:进入癌细胞后,CuS关守打开,其中二硫键断裂,响应细胞内酸性环境和外部激光照射,YSPMOs(DOX)@CuS释放出DOX。协同化学-光热疗法用于癌症治疗具有对药物释放的这种精确控制以及CuS纳米粒子的光热效应。体外和体内实验数据均表明,YSPMOs(DOX)@CuS的协同作用显示出有效的抗肿瘤作用。另外,在肝,脾,肺和肾的病理检查中观察到低的全身毒性。结论:PTT,化学治疗剂和门控组件的这种多功能纳米平台组合展示了设计多功能药物递送系统的一般潜力。

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