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Cholate-modified polymer-lipid hybrid nanoparticles for oral delivery of quercetin to potentiate the antileukemic effect

机译:胆酸盐修饰的聚合物-脂质杂化纳米颗粒用于口服槲皮素以增强抗白血病作用

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摘要

>Background: Quercetin (QUE) shows a potential antileukemic activity, but possesses poor solubility and low bioavailability.>Purpose: This article explored the bile salt transport pathway for oral deliver of QUE using cholate-modified polymer-lipid hybrid nanoparticles (cPLNs) aiming to enhance its antileukemic effect.>Methods: QUE-loaded cPLNs (QUE-cPLNs) were developed through a nanoprecipitation technique and characterized by particle size, entrapment efficiency (EE), microscopic morphology and in vitro drug release. In vitro cellular uptake and cytotoxicity of QUE-cPLNs were examined on Caco-2 and P388 cells; in vivo pharmacokinetics and antileukemic effect were evaluated using Sprague Dawley rats and leukemic model mice, respectively.>Results: The prepared QUE-cPLNs possessed a particle size of 110 nm around with an EE of 96.22%. QUE-cPLNs resulted in significantly enhanced bioavailability of QUE, up to 375.12% relative to the formulation of suspensions. In addition, QUE-cPLNs exhibited excellent cellular uptake and internalization capability compared to cholate-free QUE-PLNs. The in vitro cytotoxic and in vivo antileukemic effects of QUE-cPLNs were also signally superior to free QUE and QUE-PLNs.>Conclusion: These findings indicate that cPLNs are a promising nanocarrier able to improve the oral bioavailability and therapeutic index of QUE.
机译:>背景:槲皮素(QUE)具有潜在的抗白血病作用,但溶解性差且生物利用度低。>目的:本文探讨了使用QUE的胆汁盐转运途径胆酸盐修饰的聚合物-脂质杂化纳米颗粒(cPLNs),旨在增强其抗白血病作用。>方法:通过纳米沉淀技术开发了负载QUE的cPLNs(QUE-cPLNs),并通过粒径,包封效率进行了表征。 (EE),微观形态和体外药物释放。在Caco-2和P388细胞上检测QUE-cPLN的体外细胞吸收和细胞毒性。分别用Sprague Dawley大鼠和白血病模型小鼠评估了体内药代动力学和抗白血病作用。>结果:制备的QUE-cPLNs的粒径为110 nm左右,EE为96.22%。 QUE-cPLNs显着提高了QUE的生物利用度,相对于悬浮液的配方,可高达375.12%。此外,与不含胆酸盐的QUE-PLN相比,QUE-cPLN表现出出色的细胞摄取和内化能力。 QUE-cPLNs的体外细胞毒性和体内抗白血病作用也优于游离QUE和QUE-PLNs。>结论:这些发现表明,cPLNs是一种有希望的纳米载体,能够改善口服生物利用度和QUE的治疗指数。

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