首页> 外文期刊>Journal of pharmaceutical sciences. >Influence of Polymer Molecular Weight on Drug-Polymer Solubility: A Comparison between Experimentally Determined Solubility in PVP and Prediction Derived from Solubility in Monomer
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Influence of Polymer Molecular Weight on Drug-Polymer Solubility: A Comparison between Experimentally Determined Solubility in PVP and Prediction Derived from Solubility in Monomer

机译:聚合物分子量对药物-聚合物溶解度的影响:实验确定的PVP溶解度与单体溶解度预测值的比较

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In this study, the influence of polymer molecular weight on drug-polymer solubility was investigated using binary systems containing indomethacin (IMC) and polyvinylpyrrolidone (PVP) of different molecular weights. The experimental solubility in PVP, measured using a differential scanning calorimetry annealing method, was compared with the solubility calculated from the solubility of the drug in the liquid analogue N-vinylpyrrolidone (NVP). The experimental solubility of IMC in the low-molecular-weight PVP K12 was not significantly different from that in the higher molecular weight PVPs (K25, K30, and K90). The calculated solubilities derived from the solubility in NVP (0.31-0.32 g/g) were found to be lower than those experimentally determined in PVP (0.38-0.40 g/g). Nevertheless, the similarity between the values indicates that the analogue solubility can provide valuable indications on the solubility in the polymer. Hence, if a drug is soluble in an analogue of the polymer, it is most likely also soluble in the polymer. In conclusion, the solubility of a given drug-polymer system is determined by the strength of the drug-polymer interactions rather than the molecular weight of the polymer. Therefore, during the first screenings for drug solubility in polymers, only one representative molecular weight per polymer is needed. (c) 2015 Wiley Periodicals, Inc. and the American Pharmacists Association J Pharm Sci 104:2905-2912, 2015
机译:在这项研究中,使用包含吲哚美辛(IMC)和不同分子量的聚乙烯吡咯烷酮(PVP)的二元体系,研究了聚合物分子量对药物-聚合物溶解度的影响。将使用差示扫描量热退火方法测量的PVP中的实验溶解度与根据药物在液体类似物N-乙烯基吡咯烷酮(NVP)中的溶解度计算出的溶解度进行比较。 IMC在低分子量PVP K12中的实验溶解度与在较高分子量PVP(K25,K30和K90)中的溶解度没有显着差异。发现在NVP中的溶解度(0.31-0.32 g / g)得出的计算的溶解度低于在PVP中实验确定的溶解度(0.38-0.40 g / g)。然而,值之间的相似性表明类似物的溶解度可以提供关于聚合物中溶解度的有价值的指示。因此,如果药物可溶于聚合物的类似物中,则它很可能也可溶于聚合物。总之,给定药物-聚合物系统的溶解度取决于药物-聚合物相互作用的强度,而不是聚合物的分子量。因此,在第一次筛选聚合物中的药物溶解度时,每个聚合物仅需要一个代表性的分子量。 (c)2015年,Wiley Periodicals,Inc.和美国药剂师协会J Pharm Sci 104:2905-2912,

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