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F7 and topotecan co-loaded thermosensitive liposome as a nano-drug delivery system for tumor hyperthermia

机译:F7和Topotecan加载热敏脂质体作为肿瘤热疗的纳米药物输送系统

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摘要

In order to enhance the targeting efficiency and reduce anti-tumor drug’s side effects, topotecan (TPT) and F7 were co-loaded in thermosensitive liposomes (F7-TPT-TSL), which show enhanced permeability and retention in tumors, as well as local controlled release by heating in vitro. TPT is a water-soluble inhibitor of topoisomerase I that is converted to an inactive carboxylate structure under physiological conditions (pH 7.4). F7 is a novel drug significantly resistant to cyclin-dependent kinase but its use was restricted by its high toxicity. F7-TPT-TSL had excellent particle distribution (about 103 nm), high entrapment efficiency (>95%), obvious thermosensitive property, and good stability. Confocal microscopy demonstrated specific higher accumulation of TSL in tumor cells. MTT proved F7-TPT-TSL/H had strongest cell lethality compared with other formulations. Then therapeutic efficacy revealed synergism of TPT and F7 co-loaded in TSL, together with hyperthermia. Therefore, the F7-TPT-TSL may serve as a promising system for temperature triggered cancer treatment.
机译:为了提高靶向效率并降低抗肿瘤药物的副作用,拓扑替康(TPT)和F7在热敏脂质体(F7-TPT-TSL)中加载,其显示出增强的渗透性和肿瘤的保留,以及局部通过体外加热控制释放。 TPT是拓扑异构酶I的水溶性抑制剂,其在生理条件下转化为无活性的羧酸盐结构(pH7.4)。 F7是一种显着耐受细胞周期蛋白依赖激酶的新药,但其使用受其高毒性的限制。 F7-TPT-TSL具有优异的颗粒分布(约103nm),夹带效率高(> 95%),显而易见的热敏性能,稳定性良好。共聚焦显微镜显示肿瘤细胞中TSL的特异性较高积聚。与其他配方相比,MTT证明了F7-TPT-TSL / h具有最强的细胞致致力。然后治疗效果揭示了TPT和F7在TSL中加入TPT和F7的协同作用,以及热疗。因此,F7-TPT-TSL可以作为温度触发癌症治疗的有希望的系统。

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