Kinetics Modelling of Vitamin B12 Release in an Agar/κ-Carrageenan Hydrogel Blend

Michael Sean P. Deang, Jayke Matthew Fajardo, David Tañá, T. Tumolva
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Abstract

A phycocolloidal hydrogel patch is studied as a potential material for the transdermal delivery device for vitamin B12. The vitamin release kinetics from an agar/κ-carrageenan hydrogel blend as a function of mass ratio and vitamin loading. Concentration measurements were done using a colorimetric method, and the experimental data were fitted into the Korsmeyer-Peppas model, Peppas-Sahlin model, and Berens-Hopfenberg model. From the curve fitting, parameters such as first-order polymer relaxation constant and diffusivity constant were obtained. The results showed that for the Korsmeyer-Peppas model and the Peppas-Sahlin model, the release mechanism followed Fickian diffusion predominantly. On the other hand, the Berens-Hopfenberg model fit shows that the release mechanism predominantly follows non-Fickian diffusion and may need to be modified.
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琼脂/κ-卡拉胶水凝胶混合物中维生素B12释放的动力学模型
研究了一种胶体水凝胶贴片作为维生素B12透皮给药装置的潜在材料。琼脂/κ-卡拉胶水凝胶共混物的维生素释放动力学与质量比和维生素负荷的关系。浓度测量采用比色法,实验数据拟合到Korsmeyer-Peppas模型、Peppas-Sahlin模型和Berens-Hopfenberg模型中。通过曲线拟合得到了一阶聚合物弛豫常数和扩散系数等参数。结果表明,在Korsmeyer-Peppas模型和Peppas-Sahlin模型中,释放机制以Fickian扩散为主。另一方面,Berens-Hopfenberg模型拟合表明,释放机制主要遵循非菲克扩散,可能需要修改。
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