首页> 外文期刊>Journal of pharmaceutical sciences. >Properties of rapidly dissolving eutectic mixtures of poly(ethylene glycol) and fenofibrate: the eutectic microstructure.
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Properties of rapidly dissolving eutectic mixtures of poly(ethylene glycol) and fenofibrate: the eutectic microstructure.

机译:聚乙二醇和非诺贝特快速溶解的低共熔混合物的性质:低共熔的微观结构。

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摘要

Poly(ethylene glycol) or PEG is an ideal inactive component for preparing simple binary eutectic mixtures because of its low entropy of fusion ( approximately 0.0076 J/mol-K), lower melting point (approximately 62 degrees C) compared to most pharmaceuticals, miscibility with drugs at elevated temperatures, and its covalent crystalline lattice. Implication of these physicochemical properties on eutectic crystallization and size reduction of the drug is discussed. Enhancement of the dissolution rate of a poorly soluble compound through the formation of PEG-drug eutectics was investigated using fenofibrate. Solid dispersions of PEG-fenofibrate when characterized, revealed that PEG and fenofibrate form a simple eutectic mixture containing 20-25%(w/w) fenofibrate at the eutectic point. Eutectic crystallization led to the formation of an irregular microstructure in which fenofibrate crystals were found to be less than 10 microm in size. Dissolution rate improvement of fenofibrate correlated with the phase diagram, and the amount of fenofibrate released from the dispersions that contained fenofibrate as a eutectic mixture was at least 10-fold higher compared to untreated fenofibrate. On aging, the dissolution rate of the dispersion containing 15%(w/w) fenofibrate in PEG remained unaltered. The results indicate that PEG-drug eutectic formation is a valuable option for particle size reduction and subsequent dissolution rate improvement.
机译:聚(乙二醇)或PEG是制备简单的二元共晶混合物的理想无活性组分,因为与大多数药物相比,它的熔融熵低(约0.0076 J / mol-K),熔点低(约62摄氏度)。与药物在高温下共价的晶格。讨论了这些物理化学性质对共晶结晶和药物尺寸减小的影响。使用非诺贝特研究了通过形成PEG-药物共晶来提高难溶性化合物的溶解速率。表征时,PEG非诺贝特的固体分散体表明PEG和非诺贝特形成简单的低共熔混合物,在低共熔点含有20-25%(w / w)非诺贝特。共晶结晶导致形成不规则的微观结构,其中发现非诺贝特晶体的尺寸小于10微米。非诺贝特的溶出度改善与相图相关,并且从含有非诺贝特作为低共熔混合物的分散体中释放的非诺贝特的量比未处理的非诺贝特高至少10倍。老化时,在PEG中含15%(w / w)非诺贝特的分散体的溶解速率保持不变。结果表明,PEG-药物共晶形成是减小粒径和随后提高溶解速率的有价值的选择。

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