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首页> 外文期刊>Drug development and industrial pharmacy >Preparation and evaluation of fast-disintegrating effervescent tablets of glibenclamide.
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Preparation and evaluation of fast-disintegrating effervescent tablets of glibenclamide.

机译:格列本脲速崩泡腾片的制备及评价。

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摘要

Fast-dissolving effervescent tablets (FETs) were prepared by the modification of nonreactive liquid-based wet granulation technique. Effervescent systems are not stable in the presence of trace amount of moisture, and elimination or inactivation of free water is the key to stability apart from manufacturing in controlled humidity environment. Our main objective of the project was to develop FETs of glibenclamide based on highly plastic granules that can be compressed at low pressure to form fast-melting pharmaceutical tablets. In this study, we have screened various acid and carbonate sources for the effervescent system. Citric acid was coated with plastic materials such as polyethylene glycol (PEG), which provide a physical barrier to the reaction. The inherent hygroscopic nature of PEG could decrease the affinity for moisture of effervescent mixtures and can provide a stabilizing effect. Sodium bicarbonate was blended with sugar alcohol like mannitol, which would give a protective coating. PEG 1000 melts at body temperature (approximately 37 degrees C) and thereby does not delay the reaction between the acid source and base. The present formulation using citric acid-sodium bicarbonate and citric acid-sodium glycine carbonate tablet with PEG and mannitol was found to have better reaction properties and reaction stability than does the standard citric acid-sodium bicarbonate tablet. FETs of glibenclamide might aid in dissolution due to increase in microenvironmental pH around the granules and saliva. Sensory study on disintegration time and mouth feel attributes ranked the present formulation based on grittiness, chalkiness, and overall preference as best.
机译:速溶泡腾片(FETs)是通过对非反应性液体基湿法制粒技术的改进而制备的。泡腾系统在微量水分的存在下是不稳定的,游离水的消除或失活是除在受控湿度环境中进行生产以外的稳定性的关键。该项目的主要目标是开发基于高塑料颗粒的格列本脲FET,该颗粒可在低压下压缩以形成速溶药物片。在这项研究中,我们为泡腾系统筛选了各种酸和碳酸盐来源。柠檬酸涂有塑料材料,例如聚乙二醇(PEG),可为反应提供物理屏障。 PEG固有的吸湿性可能会降低对泡腾混合物水分的亲和力,并可以起到稳定作用。将碳酸氢钠与糖醇(如甘露醇)共混,可得到保护性涂层。 PEG 1000在体温(约37摄氏度)下熔化,因此不会延迟酸源和碱之间的反应。发现使用柠檬酸-碳酸氢钠片剂和柠檬酸-甘氨酸碳酸钠片剂与PEG和甘露醇的本制剂具有比标准柠檬酸-碳酸氢钠片剂更好的反应性能和反应稳定性。格列本脲的FET可能由于颗粒和唾液周围微环境pH值的增加而有助于溶解。关于崩解时间和口感属性的感官研究将基于耐力,白垩度和总体偏好的本配方评为最佳。

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