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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Electrosprayed mesoporous particles for improved aqueous solubility of a poorly water soluble anticancer agent: in vitro and ex vivo evaluation
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Electrosprayed mesoporous particles for improved aqueous solubility of a poorly water soluble anticancer agent: in vitro and ex vivo evaluation

机译:用于改善水溶性抗癌剂的水溶性的电喷雾中孔颗粒:体外和离体评价

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Encapsulation of poorly water-soluble drugs into mesoporous materials (e.g. silica) has evolved as a favorable strategy to improve drug solubility and bioavailability. Several techniques (e.g. spray drying, solvent evaporation, microwave irradiation) have been utilized for the encapsulation of active pharmaceutical ingredients (APIs) into inorganic porous matrices. In the present work, a novel chalcone (KAZ3) with anticancer properties was successfully synthesized by Claisen-Schmidt condensation. KAZ3 was loaded into mesoporous (SBA-15 and MCM-41) and non-porous (fumed silica, FS) materials via two techniques; electrohydrodynamic atomization (EHDA) and solvent impregnation. The effect of both loading methods on the physicochemical properties of the particles (e.g. size, charge, entrapment efficiency, crystallinity, dissolution and permeability) was investigated. Results indicated that EHDA technique can load the active in a complete amorphous form within the pores of the silica particles. In contrast, reduced crystallinity (similar to 79%) was obtained for the solvent impregnated formulations. EHDA engineered formulations significantly improved drug dissolution up to 30-fold, compared to the crystalline drug. Ex vivo studies showed EHDA formulations to exhibit higher permeability across rat intestine than their solvent impregnated counterparts. Cytocompatibility studies on Caco-2 cells demonstrated moderate toxicity at high concentrations of the anticancer agent. The findings of the present study clearly show the immense potential of EHDA as a loading technique for mesoporous materials to produce poorly water-soluble API carriers of high payload at ambient conditions. Furthermore, the scale up potential in EHDA technologies indicate a viable route to enhance drug encapsulation and dissolution rate of loaded porous inorganic materials.
机译:将水溶性较差的药物涂抹成介孔材料(例如二氧化硅),以改善药物溶解性和生物利用度的有利策略。已经利用了几种技术(例如喷雾干燥,溶剂蒸发,微波辐射)用于将活性药物成分(API)包封在无机多孔基质中。在本作本作中,通过Claisen-Schmidt缩合成功地合成了一种具有抗癌性质的新型Chalcone(Kaz3)。通过两种技术将Kaz3装入中孔(SBA-15和MCM-41)和无多孔(熏蒸二氧化硅,FS)材料中;电水力动力学雾化(EHDA)和溶剂浸渍。加载方法对颗粒物理化学性质的影响(例如,尺寸,电荷,滞留效率,结晶度,溶解和渗透率)。结果表明,EHDA技术可以在二氧化硅颗粒的孔内以完整的无定形形式装载活性。相反,获得溶剂浸渍制剂的还原结晶度(类似于79%)。与结晶药物相比,EHDA工程配方显着提高了高达30倍的药物溶解。前体内研究表明EHDA制剂在大鼠肠中表现出比其溶剂浸渍的对应物更高的渗透性。 CaCO-2细胞的细胞偶联性研究表明了高浓度的抗癌剂的中等毒性。本研究的发现清楚地表明EHDA的巨大潜力作为介孔材料的加载技术,以在环境条件下产生高有效载荷的差的水溶性API载体。此外,EHDA技术中的扩展潜力表明了增强负载多孔无机材料的药物包封和溶出速率的可行途径。

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