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Effect of Formulation and Processing Variables on the Characteristics of Tolmetin Microspheres Prepared by Double Emulsion Solvent Diffusion Method

机译:配方和加工变量对双乳液溶剂扩散法制备的托美汀微球特性的影响

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摘要

The aim of this study was to evaluate microencapsulated controlled release preparations of tolmetin sodium using ethylcellulose as a retardant material. Microspheres were prepared by using water-in-oil-in-oil (W/O1/O2) double-emulsion solvent diffusion method, using different ratios of ethylcellulose to tolmetin sodium. Span 80 was used as the droplet stabilizer and n-hexane was added to harden the microspheres. The prepared microspheres were characterized for their micromeritic properties, drug content, loading efficiency, production yield, and particle size. Fourier transform infrared spectroscopy, differential scanning calorimetry, X-ray powder diffractometry and scanning electron microscopy were used to characterize microparticles. The in vitro release studies were performed in pH 1.2 and 7.4. The prepared microspheres were spherical in shape. The drug-loaded microspheres showed near to the theoretical of entrapment and release was extended up to 24. The X-ray diffractogram and differential scanning thermographs showed amorphous state of the drug in the microspheres. It was shown that the drug: polymer ratio, stirring rate, volume of dispersing medium and surfactant influenced the drug loading, particle size and drug release behavior of the formed microparticles. The results showed that, generally, an increase in the ratio of drug: polymer (0.5:1) resulted in a reduction in the release rate of the drug which may be attributed to the hydrophobic nature of the polymer. The in vitro release profile could be modified by changing various processing and formulation parameters to give a controlled release of drug from the microparticules. The release of tolmetin was influenced by the drug to polymer ratio and particle size and was found to be diffusion and erosion controlled. The best-fit release kinetic was achieved with Peppas model.
机译:这项研究的目的是评估乙基纤维素作为阻滞材料的托美汀钠微囊控释制剂。通过使用不同比例的乙基纤维素与托美汀钠,使用油包水油包水(W / O1 / O2)双乳剂溶剂扩散法制备微球。 Span 80用作液滴稳定剂,并添加正己烷以硬化微球。所制备的微球的微团性质,药物含量,负载效率,生产收率和粒径表征。使用傅里叶变换红外光谱,差示扫描量热法,X射线粉末衍射法和扫描电子显微镜来表征微粒。在pH 1.2和7.4下进行了体外释放研究。制备的微球为球形。载药的微球显示出接近于理论的包封,并且释放扩展至24个。X射线衍射图和差示扫描热像图显示了微球中药物的非晶态。结果表明,药物:聚合物的比例,搅拌速率,分散介质和表面活性剂的体积会影响所形成的微粒的载药量,粒径和释药性能。结果表明,通常,药物:聚合物比例(0.5∶1)的增加导致药物释放速率的降低,这可能归因于聚合物的疏水性。可以通过改变各种加工和配方参数来改变体外释放曲线,以控制药物从微粒中的释放。托美汀的释放受药物与聚合物的比例和颗粒大小的影响,并且发现其受扩散和侵蚀的控制。 Peppas模型实现了最佳拟合释放动力学。

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