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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Reduced graphene oxide nanosheets coated with an anti-angiogenic anticancer low-molecular-weight heparin derivative for delivery of anticancer drugs
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Reduced graphene oxide nanosheets coated with an anti-angiogenic anticancer low-molecular-weight heparin derivative for delivery of anticancer drugs

机译:涂有抗血管生成抗癌低分子量肝素衍生物的还原型氧化石墨烯纳米片,用于递送抗癌药物

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Here, we report reduced graphene oxide (rGO) nanosheets coated with an anti-angiogenic anticancer taurocholate derivative of low-molecular-weight heparin (LHT7) as a tumor-targeting nanodelivery platform for anticancer drugs. Surface coating of LHT7 onto rGO was confirmed using fluorescein isothiocyanate-labeled LHT7, monitored as fluorescence quenching due to associated rGO. Unlike plain rGO, LHT7-coated rGO (LHTrGO) nanosheets maintained a stable dispersion under physiological conditions for at least 24 h. Moreover, LHT-rGO provided greater loading capacity for doxorubicin (Dox) comparedwith uncoated rGO nanosheets. Following intravenous administration into KB tumor-bearing mice, in vivo tumor accumulation of LHT-rGO/Doxwas 7-fold higher than that of rGO/Dox 24 h post dosing. In tumor tissues, LHT-rGO/Dox was shown to localize not to the tumor vasculature, but rather to tumor cells. Intravenously administered LHT-rGO/Dox showed the greatest anti-tumor effect in KB-bearing mice, reducing tumor volume by 92.5%±3.1% compared to the untreated group 25 days after tumor inoculation. TUNEL assays revealed that the population of apoptotic cells was highest in the group treated with LHT-rGO/Dox. Taken together, our results demonstrate that LHT-rGO nanosheets confer improved dispersion stability, tumor distribution and in vivo antitumor effects, and may be further developed as a potential active nanoplatform of various anticancer drugs.
机译:在这里,我们报告减少的氧化石墨烯(rGO)纳米片涂有低分子量肝素(LHT7)的抗血管生成抗癌牛磺胆酸盐衍生物,作为抗癌药物的靶向肿瘤的纳米递送平台。使用荧光素异硫氰酸酯标记的LHT7确认了LHT7在rGO上的表面涂层,并通过相关的rGO对其进行了荧光猝灭监测。与普通的rGO不同,涂有LHT7的rGO(LHTrGO)纳米片在生理条件下保持稳定的分散至少24 h。此外,与未涂覆的rGO纳米片相比,LHT-rGO提供了更大的阿霉素(Dox)负载能力。在给具有KB肿瘤的小鼠静脉内施用后,给药后24小时,LHT-rGO / Dox的体内肿瘤蓄积比rGO / Dox的体内肿瘤蓄积高7倍。在肿瘤组织中,LHT-rGO / Dox已显示出不定位于肿瘤脉管系统,而是定位于肿瘤细胞。静脉注射LHT-rGO / Dox在荷KB小鼠中显示出最大的抗肿瘤作用,与接种肿瘤25天后的未治疗组相比,肿瘤体积减少了92.5%±3.1%。 TUNEL分析显示,在用LHT-rGO / Dox处理的组中,凋亡细胞的数量最高。两者合计,我们的结果表明,LHT-rGO纳米片具有改善的分散稳定性,肿瘤分布和体内抗肿瘤作用,并且可能会进一步发展为各种抗癌药物的潜在活性纳米平台。

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