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A spatiotemporal anticancer drug release platform of PEGylated graphene oxide triggered by glutathione in vitvo and in vivo

机译:体内和体内谷胱甘肽引发的PEG化氧化石墨烯时空抗癌药物释放平台

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摘要

Both in vitro and in vivo glutathione (GSH)-triggered anticancer drug releases were monitored in real time from the PEGylated graphene oxide (PEG-GO) platform. The assembly of the anticancer drug doxorubicin (DOX) on PEG-GO was verified by UV-Vis absorption and infrared spectroscopic tools. The fluorescence of DOX appeared to be quenched significantly by PEG-GO. A part of the initial DOX (10~(-4) M) in PEG-GO was found to be released by ~23.5% after treatment with 2 mM glutathione (GSH) within 15 min. Our fluorescence colocalization experiments indicated that PEG-GO- DOX was endocytosed and localized in either lysosomes or endosomes of intracellular compartments. Using fluorescence imaging techniques in real time, we were able to observe an approximately 2.5 times higher in vitro drug release in the live cells by externally triggering glutathione ethyl ester (GSH-OEt) rather than endogeneous GSH. In vivo fluorescence images of DOX were obtained with an order of magnitude larger intensity from the subcutaneous site in living mice after treatment with 0.3 mg of GSH. A realtime release of DOX on PEG-GO at the intended locus can be achieved in vivo after an external triggering of GSH.
机译:从聚乙二醇化氧化石墨烯(PEG-GO)平台实时监测体外和体内谷胱甘肽(GSH)触发的抗癌药物释放。抗癌药阿霉素(DOX)在PEG-GO上的组装已通过UV-Vis吸收和红外光谱仪验证。 DOX的荧光似乎已被PEG-GO猝灭。在15分钟内用2 mM谷胱甘肽(GSH)处理后,发现PEG-GO中的一部分初始DOX(10〜(-4)M)释放了​​〜23.5%。我们的荧光共定位实验表明,PEG-GO-DOX被内吞并定位在细胞室内区室的溶酶体或内体中。使用实时荧光成像技术,我们能够通过外部触发谷胱甘肽乙酯(GSH-OEt)而非内源性GSH来观察活细胞中体外药物释放的大约2.5倍。用0.3 mg的GSH处理后,从活着的小鼠的皮下部位获得的DOX体内荧光图像强度提高了一个数量级。在外部触发GSH后,可以在体内在预期的基因座上实时释放DOX在PEG-GO上。

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