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首页> 外文期刊>Tropical Journal of Pharmaceutical Research >Formulation of Extended-Release Metformin Hydrochloride Matrix Tablets
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Formulation of Extended-Release Metformin Hydrochloride Matrix Tablets

机译:盐酸二甲双胍缓释基质制剂的制备

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Purpose: To develop and characterize an oral extended-release matrix tablet of metformin hydrochloride using a combination of a hydrophobic carrier and a hydrophilic polymer, and two types of formulation techniques. Methods: Various metformin hydrochloride formulations containing a hydrophobic carrier (stearic acid) and a hydrophilic polymer (polyethylene oxide) were prepared using a 32 factorial design. Two types of formulation techniques – melt granulation and direct compression – were evaluated. The influence of the carrier, polymer and preparation method on metformin release from the formulations in vitro as well as other physicochemical properties were studied. The release data were subjected to various release kinetic models and also compared with those of a commercial brand. Results: The physicochemical characteristics of all the granules and tablets were generally satisfactory. Optimization results indicate that the release rate of metformin HCl was directly proportional to the levels of stearic acid (SA) and polyethylene oxide (PEO) in the tablet formulations. Release rate was also dependent on the method of granulation used. Kinetic analysis showed that the formulation containing 30 %w/w of polymer exhibited release similar to that of the commercial brand with a similarity factor (f2) of 81.1. Melt granulation was more effective in extending drug release than direct compression. Release mechanism followed most closely the Korsemeyer-Peppas model with a correlation coefficient (r2) and 0.991. Conclusion: The use of a hydrophobic carrier along with a hydrophilic polymer effectively controls the initial rapid release of a highly water soluble drug such as metformin HCl. Hot melt granulation method was especially more effective in achieving this than the direct compression method.
机译:目的:使用疏水性载体和亲水性聚合物以及两种配制技术,开发和表征盐酸二甲双胍的口服缓释基质片剂。方法:采用3 2 析因设计,制备了多种含有疏水性载体(硬脂酸)和亲水性聚合物(聚环氧乙烷)的盐酸二甲双胍制剂。评估了两种类型的配制技术-熔融制粒和直接压片-。研究了载体,聚合物和制备方法对二甲双胍体外制剂释放的影响以及其他理化性质。释放数据经历了各种释放动力学模型,并与商业品牌的释放动力学模型进行了比较。结果:所有颗粒和片剂的理化特性总体令人满意。优化结果表明,盐酸二甲双胍的释放速率与片剂中的硬脂酸(SA)和聚环氧乙烷(PEO)含量成正比。释放速率还取决于所使用的制粒方法。动力学分析表明,含有30%w / w聚合物的制剂表现出与商业品牌相似的释放,相似系数(f2)为81.1。熔体制粒比直接压制在延长药物释放方面更有效。释放机理最接近Korsemeyer-Peppas模型,相关系数(r 2 )和0.991。结论:疏水性载体与亲水性聚合物一起使用可有效控制高水溶性药物(如盐酸二甲双胍)的初始快速释放。热熔制粒法比直接压缩法更有效地达到了这一目的。

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