首页> 外文期刊>Journal of pharmaceutical sciences. >Physicochemical Characterisation, Drug Polymer Dissolution and in Vitro Evaluation of Phenacetin and Phenylbutazone Solid Dispersions with Polyethylene Glycol 8000
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Physicochemical Characterisation, Drug Polymer Dissolution and in Vitro Evaluation of Phenacetin and Phenylbutazone Solid Dispersions with Polyethylene Glycol 8000

机译:聚乙二醇8000对非那西丁和苯丁丁酮固体分散体的理化特性,药物聚合物溶解度和体外评估

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Poor water solubility leads to low dissolution rate and consequently, it can limit bioavailability. Solid dispersions, where the drug is dispersed into an inert, hydrophilic polymer matrix can enhance drug dissolution. Solid dispersions were prepared using phenacetin and phenylbutazone as model drugs with polyethylene glycol (PEG) 8000 (carrier), by melt fusion method. Phenacetin and phenylbutazone displayed an increase in the dissolution rate when formulated as solid dispersions as compared with their physical mixture and drug alone counterparts. Characterisation of the solid dispersions was performed using differential scanning calorimetry (DSC), Fourier transform infrared spectroscopy (FTIR) and scanning electron microscopy (SEM). DSC studies revealed that drugs were present in the amorphous form within the solid dispersions. FTIR spectra for the solid dispersions of drugs suggested that there was a lack of interaction between PEG 8000 and the drug. However, the physical mixture of phenacetin with PEG 8000 indicated the formation of hydrogen bond between phenacetin and the carrier. Permeability of phenacetin and phenylbutazone was higher for solid dispersions as compared with that of drug alone across Caco-2 cell monolayers. Permeability studies have shown that both phenacetin and phenylbutazone, and their solid dispersions can be categorised as well-absorbed compounds.
机译:水溶性差导致溶解速率低,因此会限制生物利用度。将药物分散在惰性亲水聚合物基质中的固体分散体可以增强药物的溶解度。使用非那西丁和苯基丁a作为模型药物与聚乙二醇(PEG)8000(载体),通过熔融融合法制备固体分散体。与它们的物理混合物和单独的药物对应物相比,非那西丁和苯基丁a在配制为固体分散体时显示出溶出度的增加。使用差示扫描量热法(DSC),傅立叶变换红外光谱(FTIR)和扫描电子显微镜(SEM)对固体分散体进行表征。 DSC研究表明,药物以无定形形式存在于固体分散体中。药物固体分散体的FTIR光谱表明PEG 8000与药物之间缺乏相互作用。但是,非那西丁与PEG 8000的物理混合物表明非那西丁与载体之间形成氢键。与单独的药物相比,非那西丁和苯基丁solid的固体分散体在Caco-2细胞单层中的渗透性更高。渗透性研究表明非那西丁和苯丁氮酮及其固体分散体均可归类为吸收良好的化合物。

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