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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >A novel smart PEGylated gelatin nanoparticle for co-delivery of doxorubicin and betanin: A strategy for enhancing the therapeutic efficacy of chemotherapy
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A novel smart PEGylated gelatin nanoparticle for co-delivery of doxorubicin and betanin: A strategy for enhancing the therapeutic efficacy of chemotherapy

机译:一种新型智能聚乙二醇化明胶纳米粒子,用于多柔比星和贝蛋白的共递送:一种提高化疗治疗疗效的策略

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Betanin (BET) can reduce the side effects of potent anticancer drugs e.g. doxorubicin (DOX) on the normal tissues in co-administration with them because of the synergistic therapeutic effect and consequently the reduced required amount of anticancer agents. Despite interest in the use of BET, incomplete oral absorption and low stability of BET limit its application. Thus, in this study to overcome the restrictions of BET and providing the synergistic effect of DOX@BET, we designed a new pH-responsive nanocarrier via decoration of gelatin nano particles (GNPs) by (methoxy poly (ethylene glycol)-poly ((2-dimethylamino) ethyl methacrylate-co-itaconic acid) (PGNPs). DOX and BET were effectively loaded (the loading capacity of 20.5% and 16.25%, respectively) into the PGNPs and this nanoplatform exhibited the suitable small particle size (162 nm). Additionally, the triggered release ability of drugs was studied through the assessment of simulated physiological and tumor tissue environments and showed the controlled release of DOX and BET with adjusting the pH of environment. Moreover, the synergistic effect of DOX@BET loaded PGNPs decreased the cell viability amount of breast cancer cells (MCF-7) respect to the free form of DOX or BET which indicated that the developed smart nanocarrier will be a hopeful nanocarrier for cancer therapy.
机译:白桦(BET)可以降低有效抗癌药物的副作用。由于协同的治疗效果,在与它们共同施用的正常组织上的多柔比星(DOX),因此,所需的抗癌剂所需量减少。尽管利息使用BET,不完全口服吸收和低稳定性的下注限制其应用。因此,在该研究中,克服了对DOX @ BET的协同作用的限制,我们设计了一种新的pH响应纳米载体,通过由明胶纳米颗粒(GNPS)的装饰(甲氧基聚(乙二醇) - poly(( 2-二甲基氨基)甲基丙烯酸乙酯 - 共衣酸)(PGNPS)。DOX和BET分别被加载(分别为20.5%和16.25%的装载能力)进入PGNP,该纳米载体表现出合适的小粒径(162nm )。另外,通过评估模拟的生理和肿瘤组织环境来研究药物的触发释放能力,并显示DOX的控制释放和调节环境的pH值。此外,DOX @ BET加载的PGNP的协同效应降低了乳腺癌细胞(MCF-7)的细胞活力量(MCF-7)对DOX或赌注的自由形式表示,表明发达的智能纳米载体将是癌症治疗的有希望的纳米载体。

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