Development and Characterization of Hydrogel containing Finasteride

Wajid Ahmad, Rihan Jawed
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Abstract

The major goal of this study was to create a controlled-release dosage form utilizing a cellulose-based hydrogel that was cross-linked with propylene glycol. Hydrogels were made by crosslinking the polymer Sodium Alginate + Na CMC with propylene glycol, a suitable crosslinking agent. There is no indication of interaction between the medication, polymers, and other excipients, according to an IR and DSC analysis. The hydrogel gave good swelling and controlled release properties due to the cross linking process. The effect of Calcium Chloride concentration on drug content and t75 percent CDR was found to be non-significant based on the findings. However, the influence of Calcium Chloride concentration on swelling index was substantial, indicating that as Calcium Chloride concentration rose, the swelling index of the hydrogel decreased. Again, the effect of response time on drug content and t75 of percent CDR was substantial, implying that as reaction time rose, drug content and t75 of percent CDR of hydrogel increased as well. However, the effect of response time on the swelling index was not statistically significant. Drug content, swelling index, and t75 of percent CDR of run BB1 are the best than compared with based on all responses. This run's drug content, swelling index, and t75 percent CDR are respectively 99.5 percent, 276.64 percent, and 3.5 hrs. So BB1 was used to test the improved formulation, which produced the best in vitro release of 94.24 percent in 6hrs. Different kinetic models were fitted to the in vitro data which showed the best model was higuchi with non-fickian mode of drug release and stability data showed that the formulations were stable during the time span of the study. From the study it was concluded that the prepared hydrogel can provide a sustained release effect with better bioavailability which will surely enhance its absorption throughout the body.
非那雄胺水凝胶的制备与表征
本研究的主要目的是利用与丙二醇交联的纤维素基水凝胶创造一种控释剂型。采用合适的交联剂丙二醇对海藻酸钠+钠CMC聚合物进行交联制备水凝胶。根据IR和DSC分析,没有迹象表明药物,聚合物和其他辅料之间存在相互作用。由于交联过程,水凝胶具有良好的溶胀和控释性能。根据研究结果,氯化钙浓度对药物含量和75% CDR的影响不显著。而氯化钙浓度对溶胀指数的影响较大,说明随着氯化钙浓度的升高,水凝胶的溶胀指数降低。同样,反应时间对药物含量和t75% CDR的影响是显著的,这意味着随着反应时间的增加,水凝胶的药物含量和t75% CDR也增加。而反应时间对肿胀指数的影响无统计学意义。药物含量、肿胀指数和t75%的CDR在所有反应中均优于对照组。该药的药物含量为99.5%,溶胀指数为276.64%,CDR为3.5 h。采用BB1对改进后的制剂进行测试,其体外释放率为94.24%,为6h。体外实验数据拟合了不同的动力学模型,结果表明,体外实验模型中最优模型为非粘性释药模型,稳定性数据表明,制剂在研究时间内稳定。研究结果表明,所制备的水凝胶具有较好的生物利用度和缓释作用,可提高其在全身的吸收。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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