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Multifunctional hyaluronic acid modified graphene oxide loaded with mitoxantrone for overcoming drug resistance in cancer

机译:负载米托蒽醌的多功能透明质酸修饰的氧化石墨烯可克服癌症的耐药性

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摘要

Multifunctional nanosheets (HA-GO/Pluronic) with targeted chemo-photothermal properties were successfully developed for controlled delivery of mitoxantrone (MIT) to overcome multidrug resistance (MDR). In vitro release profiles displayed that both an acidic environment and a NIR laser could trigger and accelerate the release of a drug, which ensured nanosheets were stable in blood circulation and released MIT within tumor cells under laser irradiation. HA-GO/Pluronic nanosheets were taken up into MCF-7/ADR cells via receptor-mediated endocytosis, which further facilitated escapement of P-gp efflux. Compared with MIT solution, MIT/HA-GO/Pluronic showed greater cytotoxicity and increase in cellular MIT accumulation in MCF-7/ADR cells. Cell apoptosis and cell cycle arrest studies also revealed that MIT/HA-GO/Pluronic was more potent than MIT/GO/Pluronic and MIT solution. The anticancer efficacy in vivo was evaluated in MCF-7 and MCF-7/ADR-bearing mice, and inhibition of tumors by MIT/HA-GO/Pluronic with NIR laser irradiation was the most effective among all MIT formulations. In summary, the MIT/HA-GO/Pluronic system had striking functions such as P-gp reversible inhibitor and anticancer efficacy, and could present a promising platform for drug-resistant cancer treatment.
机译:具有针对性的化学光热特性的多功能纳米片材(HA-GO / Pluronic)已成功开发,可控制米托蒽醌(MIT)的传递,从而克服了多重耐药性(MDR)。体外释放曲线显示,酸性环境和NIR激光均可触发和加速药物的释放,从而确保纳米片在血液循环中稳定并在激光照射下在肿瘤细胞内释放MIT。 HA-GO / Pluronic纳米片通过受体介导的内吞作用吸收到MCF-7 / ADR细胞中,这进一步促进了P-gp外排的逃逸。与MIT解决方案相比,MIT / HA-GO / Pluronic在MCF-7 / ADR细胞中显示出更大的细胞毒性和细胞MIT积累的增加。细胞凋亡和细胞周期停滞研究也显示,MIT / HA-GO / Pluronic比MIT / GO / Pluronic和MIT解决方案更有效。在具有MCF-7和MCF-7 / ADR的小鼠中评估了体内抗癌功效,在所有MIT制剂中,MIT / HA-GO / Pluronic结合NIR激光照射对肿瘤的抑制作用最为有效。综上所述,MIT / HA-GO / Pluronic系统具有惊人的功能,例如P-gp可逆抑制剂和抗癌功效,并可能为抗药性癌症治疗提供有前途的平台。

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