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Preparation of Tween 80-Zn/Al-Levodopa-Layered Double Hydroxides Nanocomposite for Drug Delivery System

机译:吐温80-Zn / Al-左旋多巴层状双氢氧化物纳米复合材料的制备

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摘要

We incorporated anti-Parkinsonian drug, levodopa (dopa), in Zn/Al-LDH by coprecipitation method to form dopa-LDH nanocomposite. Further coating of Tween-80 on the external surfaces of dopa-LDH nanocomposite was achieved through the oxygen of C=O group of Tween-80 with the layer of dopa-LDH nanocomposite. The final product is called Tween-dopa-LDH nanocomposite. The X-ray diffraction indicates that the Tween-dopa-LDH nanocomposite was formed by aggregation structure. From the TGA data, the Tween-80 loading on the surface of LDH and dopa-LDH was 8.6 and 7.4%, respectively. The effect of coating process on the dopa release from Tween-dopa-LDH nanocomposite was also studied. The release from Tween-dopa-LDH nanocomposite shows slower release compared to the release of the drug from dopa-LDH nanocomposite as done previously in our study, presumably due to the retarding shielding effect. The cell viability study using PC12 showed improved viability with Tween-80 coating on dopa-LDH nanocomposite as studied by mitochondrial dehydrogenase activity (MTT assay).
机译:我们通过共沉淀法将抗帕金森氏症药物左旋多巴(dopa)掺入Zn / Al-LDH中以形成dopa-LDH纳米复合材料。通过Tween-80的C = O基团的氧与dopa-LDH纳米复合材料层,在dopa-LDH纳米复合材料的外表面上进一步涂覆Tween-80。最终产品称为Tween-dopa-LDH纳米复合材料。 X射线衍射表明,吐温-多巴-LDH纳米复合材料是通过聚集结构形成的。根据TGA数据,LDH和dopa-LDH表面上的Tween-80负载分别为8.6%和7.4%。还研究了包衣工艺对吐温-多巴-LDH纳米复合材料中多巴释放的影响。吐温-多巴-LDH纳米复合材料的释放与药物从多​​巴-LDH纳米复合物中的释放相比,显示出较慢的释放,这可能是由于屏蔽作用延迟所致。使用PC12进行的细胞活力研究显示,通过线粒体脱氢酶活性(MTT分析)研究,在Tapa-LDH纳米复合材料上使用Tween-80涂层改善了活力。

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