Comparative Evaluation of Amorphous Polymers in Solubility and Bioavailability Enhancement of Famotidine Through Solid Dispersion

Ankit Mishra, Priyanka Chaturvedi, Pranali Mishra, M. Sudheesh
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引用次数: 1

Abstract

The present study aimed to enhance the dissolution rate, therefore bioavailability, of famotidine (FMT) using its solid dispersions (SDs) with polyvinyl pyrrolidone (PVP)-K 30, milk powder, and inulin, both in-vitro and in-vivo. The study was also aimed to compare the effect of different amorphous polymers in enhancing the dissolution rate of FMT. The SDs were prepared with a 1:4 weight ratio by a solvent evaporation technique. Evaluation of the properties of the SDs was performed using dissolution, Fourier-transform infrared (FTIR) spectroscopy, and X-ray diffraction (XRD) studies. The SDs of FMT exhibited an enhanced dissolution rate. The FTIR spectroscopic studies showed the stability of FMT and the absence of well-defined drug excipient interaction. The XRD studies indicated the amorphous state of FMT in SDs. The drug release rate of all SDs formulation was found to be greater than the pure drug. Within one hour of dissolution studies, 99.43%, 92.5%, and 58.93% drug release were obtained, respectively, for PVP K-30, milk powder, and inulin. The first two were showing significantly higher release. SDs were also studied for bioavailability studies in-vivo in rats, which confirms that the SDs prepared by PVP K-30 and milk powder significantly enhancing the bioavailability of FMT. The maximum concentration of 15.05±2.45 μg/ml was achieved in 2 hours, and the area under the curve was found to be 33.78±7.3 μg. hour/ml. Therefore, the study results conclude that SDs of the FMT prepared by PVP K-30 successfully increases the dissolution and in-vivo bioavailability. Keywords – Solid dispersion, Second generation solid dispersions, Famotidine, In-vivo bioavailability, amorphous polymers, dissolution enhancement, solubility enhancement.
非晶聚合物固体分散法莫替丁溶解度和生物利用度的比较评价
本研究旨在利用法莫替丁(FMT)与聚乙烯吡罗烷酮(PVP)- k30、奶粉和菊粉的固体分散体(SDs)提高其体外和体内溶出率,从而提高生物利用度。研究还比较了不同的非晶态聚合物对提高FMT溶解速率的影响。采用溶剂蒸发法制备SDs,质量比为1:4。利用溶解、傅里叶变换红外(FTIR)光谱和x射线衍射(XRD)研究对SDs的性能进行了评价。FMT的SDs溶出率提高。FTIR光谱研究表明FMT的稳定性和没有明确的药物赋形剂相互作用。XRD研究表明FMT在SDs中呈无定形。所有SDs制剂的释药速度均大于纯药。在溶出试验的1小时内,PVP K-30、奶粉和菊粉的释药率分别为99.43%、92.5%和58.93%。前两个表现出明显更高的释放。对SDs进行了大鼠体内生物利用度研究,证实PVP K-30和奶粉制备的SDs可显著提高FMT的生物利用度。在2 h内达到最大浓度15.05±2.45 μg/ml,曲线下面积为33.78±7.3 μg。小时/毫升。因此,研究结果表明,PVP K-30制备的FMT的SDs成功地提高了溶出度和体内生物利用度。关键词:固体分散体,第二代固体分散体,法莫替丁,体内生物利用度,非晶聚合物,溶解增强,溶解增强。
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