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Synthesis of Saponite Based Nanocomposites to Improve the Controlled Oral Drug Release of Model Drug Quinine Hydrochloride Dihydrate

机译:合成皂苷基纳米复合材料以改善模型药物盐酸奎宁二水合物的口服药物控制释放

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摘要

In the present research study, a 2:1 type of smectite clay minerals, namely natural saponite (NSAP) and synthetic saponite (SSAP), was demonstrated for the first time to be controlled drug release host materials for the model drug quinine hydrochloride dihydrate (QU). The popular sol–gel hydrothermal technique was followed for the synthesis of saponite. The QU was ion exchanged and intercalated into an interlayered gallery of synthetic as well as natural saponite matrices. The developed QU-loaded hybrid composite materials along with the pristine materials were characterized by powder X-ray diffraction (PXRD), Fourier transformed infrared spectroscopy (FTIR), thermal gravimetric analysis (TGA), the Brunauer–Emmett–Teller method (BET) for surface area (SA), and scanning electron microscopy (SEM). The characterization of material results using DSC, FTIR and PXRD confirmed the presence of saponite clay mineral phases in the original and the synthesized saponite samples. Similarly, the drug-loaded composites confirmed the successful intercalation of QU drug on the natural and synthesized saponite matrices. The oral drug release performance of both nanocomposites along with pure quinine drug was monitored in sequential buffer environments at 37 ± 0.5 °C. These composite hybrid materials showed the superior controlled release of QU in gastric fluid (pH = 1.2) and intestinal fluid (pH = 7.4). QU release was best fitted in the Korsmeyer–Peppas kinetic model and demonstrated a diffusion-controlled release from nanocomposite layered materials. The observed controlled drug release results suggest that the applied natural/synthetic saponite matrices have the potential to provide critical design parameters for the development of bioengineered materials for controlled drug release.
机译:在本研究中,首次证明了2:1型绿土粘土矿物,即天然皂石(NSAP)和合成皂石(SSAP),是模型药物奎宁盐酸盐二水合物的受控药物释放宿主材料( QU)。遵循流行的溶胶-凝胶水热技术合成皂石。 QU被离子交换并插入合成和天然皂石基质的夹层通道中。通过粉末X射线衍射(PXRD),傅立叶变换红外光谱(FTIR),热重分析(TGA),Brunauer-Emmett-Teller方法(BET)来表征已开发的装有QU的杂化复合材料以及原始材料表面积(SA)和扫描电子显微镜(SEM)。使用DSC,FTIR和PXRD对材料结果进行表征,证实了原始和合成皂石样品中均存在皂石粘土矿物相。类似地,载有药物的复合材料证实了QU药物在天然和合成皂石基质上的成功嵌入。在顺序缓冲环境中,在37±0.5°C下,监测了两种纳米复合材料与纯奎宁药物的口服药物释放性能。这些复合杂化材料在胃液(pH = 1.2)和肠液(pH = 7.4)中表现出优异的QU受控释放。 QU的释放最适合Korsmeyer-Peppas动力学模型,并证明了纳米复合层状材料的扩散控制释放。观察到的受控药物释放结果表明,所应用的天然/合成皂石基质具有为开发生物工程材料以控制药物释放提供关键设计参数的潜力。

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