Faculty of Pharmacy, the University of Lahore, Lahore, 54600, Pakistan.
Faculty of Pharmacy, University of Chakwal, Chakwal, 48800, Pakistan.
Macromol Rapid Commun. 2024 Nov;45(22):e2400421. doi: 10.1002/marc.202400421. Epub 2024 Sep 28.
To cope with the constraints of conventional drug delivery systems, site-specific drug delivery systems are the major focus of researchers. The present research developed water-swellable, pH-responsive methacrylic acid-based hydrogel scaffolds of Artemisia vulgaris seed mucilage with mucin and loaded with acyclovir sodium as a model drug. The developed hydrogel discs are evaluated for diverse parameters. Drug loading efficiency in all formulations ranges from 63% to 75%. The hydrogels exhibited pH-dependent swelling, displaying optimum swelling in a phosphate buffer (pH 7.4), and insignificant swelling in an acidic buffer (pH 1.2), in addition, they responded well to electrolyte concentrations. The sol-gel fraction is estimated ranging from 60 to 95%. Dissolution studies unveiled sustained drug release for 24 h in a phosphate buffer of pH 7.4, exhibiting zero-order release kinetics. Moreover, FTIR spectra confirmed the drug-excipient compatibility. SEM photomicrographs revealed a rough and porous surface of hydrogel discs with several pores and channels. The PXRD diffractograms exposed the amorphous nature of the polymeric blends. The findings of acute toxicity studies proved the developed hydrogel network is biocompatible. Therefore, these outcomes connote the newly created network as a smart delivery system, able to dispatch acyclovir sodium into the intestinal segment for a prolonged period.
为了应对传统药物输送系统的限制,靶向药物输送系统是研究人员的主要关注点。本研究开发了具有粘蛋白的水膨胀性、pH 响应性甲基丙烯酸基青蒿种子粘液水凝胶支架,并将阿昔洛韦钠负载为模型药物。所开发的水凝胶盘被评估了多种参数。所有配方的药物负载效率均在 63%至 75%之间。水凝胶表现出 pH 依赖性溶胀,在磷酸盐缓冲液 (pH 7.4) 中显示出最佳溶胀,在酸性缓冲液 (pH 1.2) 中溶胀不明显,此外,它们对电解质浓度的响应也很好。溶胶-凝胶分数估计在 60%至 95%之间。溶解研究表明,在 pH 7.4 的磷酸盐缓冲液中,药物可以持续释放 24 小时,表现出零级释放动力学。此外,傅里叶变换红外 (FTIR) 光谱证实了药物-赋形剂的相容性。SEM 照片显示水凝胶盘具有粗糙多孔的表面,有几个孔和通道。粉末 X 射线衍射 (PXRD) 图谱显示了聚合物混合物的无定形性质。急性毒性研究的结果证明了所开发的水凝胶网络是生物相容的。因此,这些结果表明新创建的网络是一种智能输送系统,能够将阿昔洛韦钠输送到肠道段进行长时间的输送。