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Controlled release from triple layer donut-shaped tablets with enteric polymers

机译:具有肠溶性聚合物的三层甜甜圈形片剂的控释

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摘要

The purpose of this research was to evaluate triple layer, donut-shaped tablets (TLDSTs) for extended release dosage forms. TLDSTs were prepared by layering 3 powders sequentially after pressing them with a punch. The core tablet consisted of enteric polymers, mainly hydroxypropyl methylcellulose acetate succinate, and the bottom and top layers were made of a water-insoluble polymer, ethyl cellulose. Drug release kinetics were dependent on the pH of the dissolution medium and the drug properties, such as solubility, salt forms of weak acid and weak base drugs, and drug loading. At a 10% drug loading level, all drugs, regardless of their type or solubility, yielded the same release profiles within an acceptable level of experimental error. As drug loading increased from 10% to 30%, the drug release rate of neutral drugs increased for all except sulfathiazole, which retained the same kinetics as at 10% loading. HCl salts of weak base drugs had much slower release rates than did those of neutral drugs (eg, theophylline) as drug loading increased. The release of labetalol HCl retarded as drug loading increased from 10% to 30%. On the other hand, Na salts of weak acid drugs had much higher release rates than did those of neutral drugs (eg, theophylline). Drug release kinetics were governed by the ionization/erosion process with slight drug diffusion, observing no perfect straight line. A mathematical expression for drug release kinetics (erosion-controlled system) of TLDSTs is presented. In summary, a TLDST is a good design to obtain zero-order or nearly zero-order release kinetics for a wide range of drug solubilities.
机译:这项研究的目的是评估三层甜甜圈形片剂(TLDSTs)的缓释剂型。通过用冲头将3种粉末依次压成层来制备TLDST。核心片剂由肠溶性聚合物组成,主要是乙酸羟丙基甲基纤维素琥珀酸酯,底层和顶层由水不溶性聚合物乙基纤维素制成。药物释放动力学取决于溶出介质的pH值和药物特性,例如溶解度,弱酸和弱碱药物的盐形式以及药物载量。在10%的载药量水平下,所有药物,无论其类型或溶解度如何,均在可接受的实验误差水平内产生相同的释放曲线。当载药量从10%增加到30%时,除磺胺噻唑外,所有药物的中性药物释放速率均增加,而磺胺噻唑的动力学与载药量10%相同。随着药物载量的增加,弱碱药物的HCl盐释放速率比中性药物(例如,茶碱)慢得多。随着药物载量从10%增加到30%,拉贝洛尔HCl的释放受阻。另一方面,弱酸药物的钠盐释放速率比中性药物(例如茶碱)高。药物释放动力学受电离/侵蚀过程的控制,药物扩散很小,没有观察到完美的直线。提出了TLDSTs药物释放动力学(侵蚀控制系统)的数学表达式。总而言之,TLDST是一种很好的设计,可以针对多种药物溶解度获得零级或接近零级的释放动力学。

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