首页> 外文期刊>European journal of pharmaceutical sciences >Applicability of near-infrared spectroscopy in the monitoring of film coating and curing process of the prolonged release coated pellets
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Applicability of near-infrared spectroscopy in the monitoring of film coating and curing process of the prolonged release coated pellets

机译:近红外光谱在控释包衣微丸的膜包衣和固化过程中的适用性

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摘要

Although process analytical technology (PAT) guidance has been introduced to the pharmaceutical industry just a decade ago, this innovative approach has already become an important part of efficient pharmaceutical development, manufacturing, and quality assurance. PAT tools are especially important in technologically complex operations which require strict control of critical process parameters and have significant effect on final product quality. Manufacturing of prolonged release film coated pellets is definitely one of such processes. The aim of the present work was to study the applicability of the at-line near-infrared spectroscopy (NIR) approach in the monitoring of pellet film coating and curing steps. Film coated pellets were manufactured by coating the active ingredient containing pellets with film coating based on polymethacrylate polymers (Eudragit (R) RS/RL). The NIR proved as a useful tool for the monitoring of the curing process since it was able to determine the extent of the curing and hence predict drug release rate by using partial least square (PLS) model. However, such approach also showed a number of limitations, such as low reliability and high susceptibility to pellet moisture content, and was thus not able to predict drug release from pellets with high moisture content. On the other hand, the at-line NIR was capable to predict the thickness of Eudragit RS/RL film coating in a wide range (up to 40 mu m) with good accuracy even in the pellets with high moisture content. To sum up, high applicability of the at-line NIR in the monitoring of the prolonged release pellets production was demonstrated in the present study. The present findings may contribute to more efficient and reliable PAT solutions in the manufacturing of prolonged release dosage forms. (C) 2016 Elsevier B.V. All rights reserved.
机译:尽管就在十年前,过程分析技术(PAT)指导已被引入制药行业,但是这种创新方法已经成为有效的药物开发,制造和质量保证的重要组成部分。 PAT工具在需要严格控制关键工艺参数并对最终产品质量产生重大影响的技术复杂的操作中尤其重要。延长释放膜包衣的粒料的制造绝对是此类方法之一。本工作的目的是研究在线近红外光谱(NIR)方法在丸粒薄膜涂层和固化步骤的监测中的适用性。通过用基于聚甲基丙烯酸酯聚合物(Eudragit(R)RS / RL)的膜包衣将包含活性成分的丸剂包衣来制备膜包衣的丸剂。 NIR被证明是监测固化过程的有用工具,因为它能够确定固化程度并因此通过使用偏最小二乘(PLS)模型预测药物释放速率。但是,这种方法还显示出许多局限性,例如可靠性低和对丸粒水分含量的敏感性高,因此不能预测药物从水分含量高的丸粒中释放出来。另一方面,即使在水分含量高的颗粒中,在线近红外光谱也能够以很高的精度预测Eudragit RS / RL薄膜涂层的厚度(最大40微米)。综上所述,本研究证明了在线近红外技术在监测延长释放药丸生产中的高度适用性。目前的发现可能有助于制造延长释放剂型的更有效和可靠的PAT解决方案。 (C)2016 Elsevier B.V.保留所有权利。

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