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Polymer adhesion predictions for oral dosage forms to enhance drug administration safety. Part 2: In vitro approach using mechanical force methods

机译:口服剂型的聚合物粘附预测提高药物给药安全性。 第2部分:使用机械力方法的体外方法

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Predicting the potential for unintended adhesion of solid oral dosage forms (SODF) to mucosal tissue is an important aspect that should be considered during drug product development. Previous investigations into low strength mucoadhesion based on particle interactions methods provided evidence that rheological measurements could be used to obtain valid predictions for the development of SODF coatings that can be safely swallowed. The aim of this second work was to estimate the low mucoadhesive strength properties of different polymers using in vitro methods based on mechanical forces and to identify which methods are more precise when measuring reduced mucoadhesion. Another aim was to compare the obtained results to the ones achieved with in vitro particle interaction methods in order to evaluate which methodology can provide stronger predictions. The combined results correlate between particle interaction methods and mechanical force measurements. The polyethylene glycol grades (PEG) and carnauba wax showed the lowest adhesive potential and are predicted to support safe swallowing. Hydroxypropyl methylcellulose (HPMC) along with high molecular grades of polyvinylpyrrolidone (PVP) and polyvinyl alcohol (PVA) exhibited strong in vitro mucoadhesive strength. The combination of rheological and force tensiometer measurements should be considered when assessing the reduced mucoadhesion of polymer coatings to support safe swallowing of SODF. (C) 2018 Elsevier B.V. All rights reserved.
机译:预测固体口服剂型(SODF)对粘膜组织的意外粘附的潜力是在药物产品开发期间应考虑的一个重要方面。基于颗粒相互作用方法对低强度粘膜的研究提供了证据表明,可以使用流变测量来获得可安全吞咽的SODF涂层的发育的有效预测。第二种工作的目的是使用基于机械力的体外方法来估计不同聚合物的低粘膜强度特性,并在测量减少的粘膜时确定哪种方法更精确。另一种目的是将获得的结果与体外颗粒相互作用方法进行比较,以评估哪种方法可以提供更强的预测。合并的结果与颗粒相互作用方法和机械力测量之间的相关性相关。聚乙二醇等级(PEG)和Carnauba蜡显示出最低的粘合剂电位,并预计将吞咽吞咽。羟丙基甲基纤维素(HPMC)以及高分子等级的聚乙烯吡咯烷酮(PVP)和聚乙烯醇(PVA)表现出强大的体外粘接强度。在评估聚合物涂层的减少的粘膜以支撑SODF的安全吞咽时,应考虑流变和力张力计测量的组合。 (c)2018 Elsevier B.v.保留所有权利。

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