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首页> 外文期刊>Journal of Nanobiotechnology >Intravenous delivery of enzalutamide based on high drug loading multifunctional graphene oxide nanoparticles for castration-resistant prostate cancer therapy
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Intravenous delivery of enzalutamide based on high drug loading multifunctional graphene oxide nanoparticles for castration-resistant prostate cancer therapy

机译:基于高药物加载多功能石墨烯氧化物纳米粒子的静脉内递送烯甲醛酰胺用于抗阉割前列腺癌治疗

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Enzalutamide (Enz) has shown limited bioavailability via oral administration. Castration-resistant prostate cancer (CRPC) is frequent among patients receiving 18 -24 months of androgen deprivation therapy. The nonsteroidal anti-androgen enzalutamide (Enz) used in the treatment of prostate cancer has shown limited bioavailability via oral administration. Therefore, we developed a multifunctional enzalutamide-loaded graphene oxide nanosystem (TP-GQDss/Enz) for CRPC intravenous treatment, with high drug loading efficiency. Aminated graphene quantum dots (GQDs) were first cross-linked via disulfide bonds into a graphene quantum dot derivative of approximately 200 nm (GQDss), which was further functionalized with a tumour-targeting peptide and PEG to form TP-GQDss. Enz was loaded into TP-GQDss for in vitro and in vivo study. The results showed that high drug-loading efficiency was achieved by TP-GQDss via - electron interaction. TP-GQDss could be rapidly internalized by CRPC cells via endocytosis. Moreover, Enz in TP-GQDss could inhibit the growth of C4-2B and LNCaP prostate cancer cell lines in vitro. Further, TP-GQDss exhibited an enhanced cancer-targeting ability and alleviated the side effects of Enz in vivo. The multifunctional nanocarrier constructed here could accomplish controlled Enz release and serve as an intravenous therapy platform for CRPC.
机译:苯甲甲酰胺(ENZ)通过口服给药显示了有限的生物利用度。阉割的前列腺癌(CRPC)频繁在接受18-24个月的雄激素剥夺治疗的患者中。用于治疗前列腺癌的非甾体类抗雄激素烯甲酰胺(ENZ)显示通过口服给药有限的生物利用度。因此,我们开发了一种用于CRPC静脉内处理的多官能依齐甲酰胺加载的石墨烯纳米系统(TP-GQDSS / ENZ),具有高药物负载效率。首先通过二硫键交联将胺化石墨烯量子点(GQDS)分成大约200nm(GQDS)的石墨烯量子点衍生物,其用肿瘤靶向肽和PEG进一步官能化,形成TP-GQDS。 enz在体外和体内研究中加载到TP-GQDS中。结果表明,通过电子相互作用的TP-GQDSS实现了高药物负载效率。可以通过内吞作用通过CRPC细胞快速内化TP-GQDSS。此外,TP-GQDS中的enz可以抑制体外C4-2B和LNCAP前列腺癌细胞系的生长。此外,TP-GQDSS表现出增强的癌症靶向能力,并减轻了体内enz的副作用。这里构建的多功能纳米载体可以实现受控enz释放并用作CRPC的静脉治疗平台。

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