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Effect of polymer type on the surface energy of acetaminophen solid dispersions prepared by melt method

机译:聚合物型对熔融法制备的乙酰氨基酚固体分散体的表面能的影响

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Many newly developed active pharmaceutical ingredients (APIs) have very low solubility in aqueous media. The preparation of solid dispersions (SDs) is one way of avoiding this problem. However, compound wettability and thus solubility are influenced by surface energy. In this study, we used inverse gas chromatography (IGC) to evaluate the surface energies of prepared SDs, and compared them with those obtained for physical mixtures (PMs). SDs containing different weight ratios of crystalline acetaminophen and one of three polymers (Kollidon (R) 12 PF, Kollidon (R) VA 64 or Soluplus (R)) were prepared by the melt-quenching of corresponding PMs. In all cases, as the polymer content increased, the surface energy decreased significantly. For the SDs and PMs containing Soluplus (R), this decrease in surface energy showed the same non-linear trend. In the cases of Kollidon (R) 12 PF and Kollidon (R) VA 64, the trend was linear, with the SDs showing a steeper decrease in surface energy than the corresponding PMs. Typically, such decreases are ascribed to the dissolution of the crystalline structure of an API. Our results suggest that in the case of the Kollidons, the steeper decrease is caused by another mechanism, namely, strong API-Kollidon interaction leading to the less wettable surface of SDs. (C) 2017 Elsevier B.V. All rights reserved.
机译:许多新开发的活性药物成分(API)在含水介质中具有非常低的溶解度。固体分散体(SDS)的制备是避免这个问题的一种方法。然而,复合润湿性和因此溶解度受表面能的影响。在该研究中,我们使用逆气相色谱(IGC)来评估制备的SDS的表面能,并将其与物理混合物(PMS)的那些进行比较。通过相应的PMS的熔体淬火制备含有不同重量比的结晶乙酰氨基酚和三种聚合物中的一种(kollidon(r)12pf,kollidonva44或soluplus)的Sds。在所有情况下,随着聚合物含量的增加,表面能显着下降。对于含有Soluplus(R)的SDS和PM,表面能量的降低显示出相同的非线性趋势。在kollidon(r)12pf和kollidon(r)Va 64的情况下,趋势是线性的,SDS显示比相应的pms的表面能降低。通常,这种减少归因于API的结晶结构的溶解。我们的研究结果表明,在kollidons的情况下,陡峭的减少是由另一种机制引起的,即强的API-kollidon相互作用导致SDS的较不可润湿的表面。 (c)2017年Elsevier B.V.保留所有权利。

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