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Enhancement of the Cytotoxic Effect of Anticancer Agent by Cytochrome c Functionalised Hybrid Nanoparticles in Hepatocellular Cancer Cells

机译:细胞色素c功能化杂合纳米颗粒增强肝癌细胞抗癌药的细胞毒性作用

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摘要

Treatment of hepatocellular cancer with chemotherapeutic agents has limited successin clinical practice and their efficient IC50 concentration would require extremely highdoses of drug administration which could not be tolerated due to systemic side effects.In order to potentiate the efficacy of anticancer agents we explored the potentialof co-treatment with pro-apoptotic Cytochrome c which activates the apoptoticpathway downstream of p53 that is frequently mutated in cancer. To this end weused hybrid iron oxide-gold nanoparticles as a drug delivery system to facilitate theinternalisation of Cytochrome c into cultured HepG2 hepatocellular carcinoma cells.Our results showed that Cytochrome c can be easily conjugated to the gold shell ofthe nanoparticles which are readily taken up by the cells. We used Cytochrome cin concentration (0.2μgmL-1) below the threshold required to induce apoptosis onits own. When the conjugate was administered to cells treated by doxorubicin, itsignificantly reduced its IC50 concentration from 9μgmL-1 to 3.5μgmL-1 as detectedby cell viability assay, and the efficiency of doxorubicin on decreasing viability ofHepG2 cells was significantly enhanced in the lower concentration range between0.01μgmL-1 to 5μgmL-1. The results demonstrate the potential of the application oftherapeutic proteins in activating the apoptotic pathway to complement conventionalchemotherapy to increase its efficacy. The application of hybrid iron oxide-goldnanoparticles can also augment the specificity of drug targeting and could serve as amodel drug delivery system for pro-apoptotic protein targeting and delivery.
机译:用化学治疗剂治疗肝细胞癌在临床实践中取得的成功有限,有效的IC50浓度需要极高剂量的药物给药,由于全身性副作用而无法忍受。用促细胞凋亡的细胞色素c进行治疗,该细胞色素c激活了在癌症中经常突变的p53下游的凋亡途径。为此,我们使用了混合的氧化铁-金纳米颗粒作为药物递送系统,以促进细胞色素c内在化到培养的HepG2肝癌细胞中。我们的结果表明,细胞色素c可以很容易地与纳米颗粒的金壳结合,很容易被细胞吸收。细胞。我们使用的细胞色素cin浓度(0.2μgmL-1)低于自行诱导细胞凋亡所需的阈值。当将缀合物施用于阿霉素处理的细胞时,通过细胞活力测定法可将其IC50浓度从9μgmL-1显着降低至3.5μgmL-1,并且在较低的浓度范围内,阿霉素对降低HepG2细胞活力的效率显着增强。 .01μgmL-1至5μgmL-1。结果证明了治疗性蛋白质在激活凋亡途径以补充常规化学疗法以增加其功效方面的潜力。杂化氧化铁-金纳米颗粒的应用还可以提高药物靶向的特异性,并且可以用作促凋亡蛋白靶向和递送的模型药物递送系统。

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