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Gum Dammar and poly(acrylamide)-based hydrogels and zirconium-based organic-inorganic hybrid materials for controlled drug delivery and their biodegradation studies

机译:Gum Dammar和聚(丙烯酰胺)基于水凝胶和基于锆的有机无机杂化材料,用于受控药物递送及其生物降解研究

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摘要

The present research work was aimed at the use of pre-synthesized Gum Dammar and poly(AAm)-based polymeric networks (hydrogel) and zirconium-based Gd-cl-poly(AAm)-ZIO organo-inorganic hybrid networks (ion exchanger) for in situ release of metformin hydrochloride under different pH conditions such as 4.0, 7.0 and 9.2 at 37 A degrees C. Further biodegradation studies of the samples were also done using soil burial and soil composting method. It has been observed from the release dynamics of the drug that the diffusion exponent 'n' under different pH conditions is between 0.1 and 0.7 in case of hydrogel and between 0.09 and 0.7 in case of organo-inorganic hybrid material. It can be inferred from the values of the 'n' that the release of drug in different pH conditions is pH responsive. Hence these materials can be exploited as drug delivery devices. The initial diffusion coefficient has a greater value than the later diffusion coefficient indicating a higher drug release rate during the early stage. Different stages of biodegradation were characterized using scanning electron microscopic studies.
机译:本研究工作旨在使用预合成的牙龈达米芽孢杆菌和聚(AAM)基于聚合物网络(水凝胶)和基于锆的GD-CL-多(AAM)-ZIO有机无机混合网络(离子交换器)对于在37℃的不同pH条件下原位盐酸二甲双胍释放,如4.0,7.0和9.2在37℃下。使用土壤埋葬和土壤堆肥方法也进行了对样品的进一步生物降解研究。从药物的释放动力学中观察到不同pH条件下的扩散指数'n'在水凝胶的情况下在0.1和0.7之间,在有机无机杂化材料的情况下为0.09和0.7。可以从“N”的值推断,即药物在不同pH条件下的药物释放是pH响应性的。因此,这些材料可以被利用为药物递送装置。初始扩散系数具有比后来的扩散系数更大的值,该扩散系数表示早期阶段期间更高的药物释放速率。使用扫描电子显微镜研究表征了生物降解的不同阶段。

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