首页> 外文期刊>Journal of Turbulence >Effect of Rheology and Poloxamers Properties on Release of Drugs from Silicon Dioxide Gel-Filled Hard Gelatin Capsules-A Further Enhancement of Viability of Liquid Semisolid Matrix Technology
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Effect of Rheology and Poloxamers Properties on Release of Drugs from Silicon Dioxide Gel-Filled Hard Gelatin Capsules-A Further Enhancement of Viability of Liquid Semisolid Matrix Technology

机译:流变和泊洛沙姆的作用对二氧化硅凝胶硬明胶胶囊释放的药物 - 进一步提高液体半固体基质技术的活力

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The liquid and semisolid matrix technology, filling liquids, semi-solids and gels in hard gelatin capsule are promising, thus, there is a need of enhanced research interest in the technology. Therefore, the present study was aimed to investigate isoniazid (freely soluble) and metronidazole (slightly soluble) gels filled in hard gelatin capsules for the effect of poloxamers of different viscosities on release of the drugs. Gel of each drug (10% w/w, particle size 180-250 mu m), prepared by mixing poloxamer and 8% w/w hydrophilic silicon dioxide (AerosilA (R) A200), was assessed for rheology, dispersion stability and release profile. Both the drugs remained dispersed in majority of gels for more than 30 days, and dispersions were depended on gels' viscosity, which was further depended on viscosity of poloxamers. A small change in viscosity was noted in gels on storage. FTIR spectra indicated no interactions between components of the gels. The gels exhibited thixotropic and shear-thinning behaviour, which were suitable for filling in hard gelatin capsules without any leakage from the capsules. The release of both drugs from the phase-stable gels for 30 days followed first-order kinetics and was found to be correlated to drugs' solubility, poloxamers' viscosity, polyoxyethylene contents and proportion of block copolymer (poloxamers) in the gels. The findings of the present study indicated that release of drugs of different solubilities (isoniazid and metronidazole) might be modified from gels using different poloxamers and AerosilA (R) A200.
机译:液体和半固体基质技术,填充液体,半固体和凝胶在硬明胶胶囊中具有很大的希望,因此需要提高该技术的研究兴趣。因此,本研究旨在探讨在硬明胶胶囊中填充的异烟肼(可自由)和甲硝唑(微溶性)凝胶,用于不同粘合剂对药物释放的粘合剂的作用。通过混合泊洛沙姆和8%W / W亲水性二氧化硅(AerosilaA200)制备的每种药物(10%w / w,粒度180-250μmm)的凝胶被评估为流变,分散稳定性和释放轮廓。两种药物仍然分散在大多数凝胶中超过30天,并且分散体依赖于凝胶的粘度,这进一步依赖于泊洛沙姆的粘度。在储存的凝胶中注意到粘度的小变化。 FTIR光谱表明凝胶组分之间没有相互作用。凝胶表现出触变性和剪切稀疏行为,适用于填充硬明胶胶囊,而不会从胶囊中泄漏。将两种药物从相稳定的凝胶中释放30天,遵循一阶动力学,发现与药物的溶解度,脊氧基粘度,聚氧乙烯含量和凝胶中嵌段共聚物(泊洛沙姆)的比例相关。本研究的发现表明,使用不同的泊洛沙姆和AerosilaA200,可以从凝胶中修饰不同溶解度(异烟肼和甲硝唑)的药物的释放。

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