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Lecithin-Stabilized Polymeric Micelles (LsbPMs) for Delivering Quercetin: Pharmacokinetic Studies and Therapeutic Effects of Quercetin Alone and in Combination with Doxorubicin

机译:卵磷脂稳定的聚合物胶束(LsbPM)用于递送槲皮素:单独和与阿霉素组合使用的槲皮素的药代动力学研究和治疗效果

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摘要

In this study, lecithin-stabilized polymeric micelles (LsbPMs) were prepared to load quercetin (QUE) in order to improve its bioavailability and increase its antitumor activity. Its combination with doxorubicin (DOX) to minimize DOX-mediated cardiac toxicity and increase the antitumor activity of QUE-loaded LsbPMs was also examined. LsbPMs were prepared following a previously reported procedure. Results demonstrated that optimal QUE-loaded LsbPMs contained quercetin, D-α-tocopheryl polyethylene glycol succinate, and lecithin at a weight ratio of 6:40:80. Drug-release studies showed that QUE released from LsbPMs followed a controlled release pattern. A cytotoxicity assay revealed that QUE-loaded LsbPMs had significant anticancer activities against MCF-7, SKBR-3, and MDA-MB-231 human breast cancer cells and CT26 mouse colon cancer cells. In animal studies, intravenous administration of QUE-loaded LsbPMs resulted in efficient growth inhibition of CT26 colon cancer cells in a Balb/c mice model. In a pharmacokinetics study compared to free QUE, intravenous and oral administration of QUE-loaded LsbPMs was found to have significantly increased the relative bioavailability to 158% and 360%, respectively, and the absolute bioavailability to 5.13%. The effect of QUE-loaded LsbPMs in combination with DOX resulted in efficient growth inhibition of CT26 colon cancer cells and reduced cardiac toxicity in the Balb/c mice model.
机译:在这项研究中,准备卵磷脂稳定的聚合物胶束(LsbPMs)来加载槲皮素(QUE),以提高其生物利用度并增加其抗肿瘤活性。还检查了其与阿霉素(DOX)的组合以最小化DOX介导的心脏毒性并增加QUE负载的LsbPMs的抗肿瘤活性。按照先前报道的程序制备LsbPM。结果表明,最佳的QUE负载LsbPMs以6:40:80的重量比包含槲皮素,D-α-生育酚聚乙二醇琥珀酸酯和卵磷脂。药物释放研究表明,LsbPMs释放的QUE遵循控制释放模式。细胞毒性试验表明,负载QUE的LsbPM具有对MCF-7,SKBR-3和MDA-MB-231人乳腺癌细胞和CT26小鼠结肠癌细胞的显着抗癌活性。在动物研究中,在Balb / c小鼠模型中,静脉注射QUE负载的LsbPM可有效抑制CT26结肠癌细胞的生长。在与自由QUE相比的药代动力学研究中,静脉和口服QUE负载的LsbPMs分别将相对生物利用度分别提高至158%和360%,并将绝对生物利用度提高至5.13%。负载QUE的LsbPM与DOX结合的作用可有效抑制CT26结肠癌细胞的生长,并降低Balb / c小鼠模型的心脏毒性。

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