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首页> 外文期刊>Pharmaceutical research >Simultaneous delivery of chemotherapeutic and thermal-optical agents to cancer cells by a polymeric (PLGA) nanocarrier: an in vitro study.
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Simultaneous delivery of chemotherapeutic and thermal-optical agents to cancer cells by a polymeric (PLGA) nanocarrier: an in vitro study.

机译:通过聚合物(PLGA)纳米载波同时向癌细胞同时递送化学治疗和热光学试剂:体外研究。

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PURPOSE: To test the effectiveness of a dual-agent-loaded PLGA nanoparticulate drug delivery system containing doxorubicin (DOX) and indocyanine green (ICG) in a DOX-sensitive cell line and two resistant cell lines that have different resistance mechanisms. METHODS: The DOX-sensitive MES-SA uterine sarcoma cell line was used as a negative control. The two resistant cell lines were uterine sarcoma MES-SA/Dx5, which overexpresses the multidrug resistance exporter P-glycoprotein, and ovarian carcinoma SKOV-3, which is less sensitive to doxorubicin due to a p53 gene mutation. The cellular uptake, subcellular localization and cytotoxicity of the two agents when delivered via nanoparticles (NPs) were compared to their free-form administration. RESULTS: The cellular uptake and cytotoxicity of DOX delivered by NPs were comparable to the free form in MES-SA and SKOV-3, but much higher in MES-SA/Dx5, indicating the capability of the NPs to overcome P-glycoprotein resistance mechanisms. NP-encapsulated ICG showed slightly different subcellular localization, but similar fluorescence intensity when compared to free ICG, and retained the ability to generate heat for hyperthermia delivery. CONCLUSION: The dual-agent-loaded system allowed for the simultaneous delivery of hyperthermia and chemotherapy, and this combinational treatment greatly improved cytotoxicity in MES-SA/Dx5 cells and to a lesser extent in SKOV-3 cells.
机译:目的:测试含有多柔比星(DOX)和吲哚菁绿(ICG)的双剂加载的PLGA纳米颗粒药物递送系统的有效性,在DOX敏感细胞系和具有不同电阻机制的两个抗性细胞系中。方法:使用DOX敏感的MES-SA子宫肉瘤细胞系作为阴性对照。两种抗性细胞系是子宫肉瘤MES-SA / DX5,其过度表达多药抗性出口型p-糖蛋白,卵巢癌SKOV-3,其由于P53基因突变而对多柔比星的敏感性不太敏感。将通过纳米颗粒(NPS)递送时,将通过纳米颗粒(NPS)递送的细胞摄取,亚细胞定位和细胞毒性与其自由态给药进行比较。结果:NPS递送的DOX的细胞摄取和细胞毒性与MES-SA和SKOV-3中的游离形式相当,但MES-SA / DX5中的含量高得多,表明NPS克服p-糖蛋白抗性机制的能力。与游离ICG相比,NP封装的ICG显示出略微不同的亚细胞定位,但是类似的荧光强度,并保留产生热热递送的热量的能力。结论:允许同时递送热疗和化疗的双剂加载系统,这一组合治疗大大改善了MES-SA / DX5细胞中的细胞毒性,并在SKOV-3细胞中较小。

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