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Predicting the gastrointestinal behaviour of modified-release products: Utility of a novel dynamic dissolution test apparatus involving the use of bicarbonate buffers

机译:预测调释产品的胃肠道行为:新型动态溶出度测试仪的实用性,涉及使用碳酸氢盐缓冲液

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The establishment of physiologically relevant in vitro-in vivo correlations (IV-IVCs) is key for any biorelevant dissolution test. Historically, bicarbonate buffers have produced better correlations than compendial phosphate buffered media, though such tests are usually performed at a constant pH experiment, overlooking the notion that the pH of the luminal fluids is variable and fluctuating. In this work, we have devised a dynamic dissolution test method employing a physiological bicarbonate buffer under pH conditions of the proximal gut in order to assess the dissolution behaviour of various enteric polymer-coated (gastro-resistant) prednisolone tablets. The pH of the media is modulated and controlled by an Auto pH System? which exploits the physiological equilibria between [H_2CO_3] and [HCO_3~-], to match it to the aboral change in pH with transit of the dosage form through the proximal small intestine (from pH 5.6 up to 6.8). The lag time values for an accelerated release and standard EUDRAGIT~R L30D-55 coated formulation (25 min and 60 min, respectively) were close to the previously reported initial tablet disintegration time data obtained in-vivo by 7-scintigraphy (28 min and 66 min, respectively). Dissolution of alternative delayed release coated products was also better discriminated in the dynamic buffer system. These data confirm the dynamic dissolution system provides a robust and reliable platform to predict the in vivo fate of oral products in a laboratory setting.
机译:建立生理相关的体外-体内相关性(IV-IVC)是任何生物相关的溶出度测试的关键。从历史上看,碳酸氢盐缓冲液产生的相关性比药典磷酸盐缓冲液更好,尽管此类测试通常在恒定的pH实验中进行,而忽略了管腔液的pH值可变且波动的想法。在这项工作中,我们设计了一种动态溶出度测试方法,该方法在近端肠道的pH条件下使用生理性碳酸氢盐缓冲液,以评估各种肠溶性聚合物包衣(耐胃)泼尼松龙片的溶出度。介质的pH是由自动pH系统调节和控制的吗?它利用[H_2CO_3]和[HCO_3〜-]之间的生理平衡,使之与pH的改变有关,随着剂型通过近端小肠的迁移(从pH 5.6到6.8)。加速释放和标准EUDRAGIT_R L30D-55包衣制剂的滞后时间值(分别为25分钟和60分钟)接近于先前报道的通过7闪烁体内获得的初始片剂崩解时间数据(28分钟和25分钟)。分别为66分钟)。在动态缓冲系统中,也更好地区分了其他延迟释放包衣产品的溶解度。这些数据证实了动态溶出系统为在实验室环境中预测口服产品的体内命运提供了强大而可靠的平台。

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