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首页> 外文期刊>International Journal of Pharmaceutics >Design and evaluation of a novel potential carrier for a hydrophilic antitumor drug: Auricularia auricular polysaccharide-chitosan nanoparticles as a delivery system for doxorubicin hydrochloride
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Design and evaluation of a novel potential carrier for a hydrophilic antitumor drug: Auricularia auricular polysaccharide-chitosan nanoparticles as a delivery system for doxorubicin hydrochloride

机译:亲水性抗肿瘤药物的新型潜在载体的设计和评估:耳廓耳道多糖-壳聚糖纳米颗粒作为盐酸阿霉素的递送系统

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摘要

To improve the low loading content of hydrophilic drugs in nanodrug delivery systems, a natural watersoluble polysaccharide, Auricularia auricular polysaccharide (AAP), was extracted and purified as a vehicle for the hydrophilic drug doxorubicin hydrochloride (Dox.HCl). This involved the preparation of polyelectrolyte complexes nanoparticles (PEC NPs) using the electrostatic interaction between cationic chitosan (CS) and anionic AAP. The formation of AAP-CS-NPs was confirmed by FT-IR and TEM. It was found that Dox-loaded AAP-CS-NPs possessed a spherical morphology with average diameters of 237.6 nm and 74.1% Dox.HCl encapsulation efficiency. The stability of Dox AAP-CS-NPs was examined by suspending the nanoparticles in PBS (pH 7.4) at room temperature. The particle size of the nanoparticle samples remained stable and exhibited no obvious variations in drug content after half a month. In addition, in vitro cytotoxicity studies showed that blank AAP-CS-NPs did not exhibit any cytotoxic effects, while Dox AAP-CS-NPs increased the Dox.HCl cytotoxicity against MCF-7 cells as the result of significantly increased cellular uptake, compared with free Dox.HCl. Hence, the overall results obtained suggest that AAP-CS-NPs are very effective in entrapping Dox.HCl and to penetrate into tumor cells, rendering them promising carriers for hydrophilic antitumor drugs. (C) 2016 Elsevier B.V. All rights reserved.
机译:为了改善纳米药物递送系统中亲水性药物的低负载量,提取了天然水溶性多糖Auricularia auricular polysaccharide(AAP)并将其纯化为亲水性药物阿霉素盐酸盐(Dox.HCl)的载体。这涉及利用阳离子型壳聚糖(CS)和阴离子型AAP之间的静电相互作用制备聚电解质复合物纳米颗粒(PEC NPs)。 FT-IR和TEM证实了AAP-CS-NP的形成。发现载有Dox的AAP-CS-NP具有球形形态,平均直径为237.6nm,Dox.HCl的包封效率为74.1%。通过在室温下将纳米颗粒悬浮在PBS(pH 7.4)中来检查Dox AAP-CS-NPs的稳定性。纳米颗粒样品的粒径保持稳定,半个月后药物含量没有明显变化。此外,体外细胞毒性研究表明,空白的AAP-CS-NPs没有表现出任何细胞毒性作用,而Dox AAP-CS-NPs增加了对MCF-7细胞的Dox.HCl细胞毒性。与免费的Dox.HCl。因此,获得的总体结果表明,AAP-CS-NPs在捕获Dox.HCl和渗透到肿瘤细胞方面非常有效,使其成为亲水性抗肿瘤药物的有希望的载体。 (C)2016 Elsevier B.V.保留所有权利。

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