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首页> 外文期刊>Micron: The international research and review journal for microscopy >Characterization and scanning electron microscopic investigation of crosslinked freeze dried gelatin matrices for study of drug diffusivity and release kinetics
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Characterization and scanning electron microscopic investigation of crosslinked freeze dried gelatin matrices for study of drug diffusivity and release kinetics

机译:交联冻干明胶基质的表征和扫描电子显微镜研究,用于研究药物扩散和释放动力学

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摘要

Drug delivery is a promising technique to enhance the therapeutic efficacy of the drug. However, properties of carrier materials require intense improvement for effective transport of drug molecules. In the current study, attempts have been made to develop freeze dried gelatin matrices cross linked with genipin at various temperatures (5℃, 15℃ and 25℃) prior to freeze-drying (-80℃). The freeze dried matrices thus obtained at the said temperatures are characterized for crosslinking density, compression strength, swelling behaviors. The matrix crosslinked at 25℃ showed highest Flory-Rehner crosslinking density (467 ± 46) (p < 0.05), highest compressive strength (12.36 ± 0.12) (p < 0.05) and lowest equilibrium water content. In this context, scanning electron microscopy (SEM) was performed to study the surface morphology (size and shape of pores) of the crosslinked matrices. These images were further processed for quantitative analysis of morphological features, viz., areas, radius, ferret diameter, length of major and minor axis and eccentricity using MATLAB toolboxes. These quantitative analyses correlate transport and the release kinetics of model anti-inflammatory drug (indomethacin) from crosslinked matrices in vitro to tune as a controllable delivery system. The diffusional exponent (n) for all constructs ranging from 0.61 to 0.69 (p < 0.05) (0.45 < n < 0.89) indicated non-Fickian release kinetics.
机译:药物递送是增强药物治疗功效的有前途的技术。然而,载体材料的性质需要大力改进以有效地运输药物分子。在当前的研究中,已经尝试开发在冷冻干燥(-80℃)之前在各种温度(5℃,15℃和25℃)下与genipin交联的冷冻干燥明胶基质。在所述温度下如此获得的冷冻干燥的基质的特征在于交联密度,压缩强度,溶胀行为。在25℃交联的基体具有最高的Flory-Rehner交联密度(467±46)(p <0.05),最高的抗压强度(12.36±0.12)(p <0.05)和最低的平衡水含量。在这种情况下,进行了扫描电子显微镜(SEM)以研究交联基质的表面形态(孔的大小和形状)。使用MATLAB工具箱对这些图像进行进一步处理,以定量分析形态特征,即面积,半径,雪貂直径,长短轴长度和偏心距。这些定量分析将模型抗炎药(吲哚美辛)的运输与体外交联基质的释放动力学相关联,以调节为可控的递送系统。所有构建体的扩散指数(n)在0.61至0.69(p <0.05)(0.45

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