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A study of diffusion in poly(ethyleneglycol)-gelatin based semi-interpenetrating networks for use in wound healing

机译:基于聚乙二醇-明胶的半互穿网络在伤口愈合中的扩散研究

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摘要

Semi-interpenetrating networks (sIPNs) designed to mimic extracellular matrix via covalent crosslinking of poly(ethylene glycol) diacrylate in the presence of gelatin have been shown to aid in wound healing, particularly when loaded with soluble factors. Ideal systems for tissue repair permit an effective release of therapeutic agents and flow of nutrients to proliferating cells. Appropriate network characterization can, consequently, be used to convey an understanding of the mass transfer kinetics necessary for materials to aid in the wound healing process. Solute transport from and through sIPNs has not yet been thoroughly evaluated. In the current study, the diffusivity of growth factors and nutrients through the polymeric system was determined. Transport of keratinocyte growth factor was modeled by treating the sIPN as a plane sheet into which the protein was loaded. The diffusion coefficient was determined to be 4.86 × 10−9 ± 1.86 × 10−12 cm2/s. Glucose transport was modeled as flow through a semi-permeable membrane. Using lag-time analysis, the diffusion coefficient was calculated to be 2.25 × 10−6 ± 1.98 × 10−7 cm2/s. The results were evaluated in conjunction with previous studies on controlled drug release from sIPNs. As expected from Einstein-Stokes equation, diffusivity decreased as molecular size increased. The results offer insight into the structure-function design paradigm and show that release from the polymeric system is diffusion controlled, rather than dissolution controlled.
机译:设计用于在明胶存在下通过聚(乙二醇)二丙烯酸酯的共价交联模拟细胞外基质的半互穿网络(sIPNs)有助于伤口愈合,尤其是在负载可溶性因子时。用于组织修复的理想系统允许有效释放治疗剂并使营养物质流向增殖细胞。因此,适当的网络表征可用于传达对材料有助于伤口愈合过程必需的传质动力学的理解。从sIPN和通过sIPN的溶质迁移尚未得到彻底评估。在当前的研究中,确定了生长因子和养分在聚合物体系中的扩散性。角质形成细胞生长因子的转运是通过将sIPN视为装载蛋白质的平板来建模的。扩散系数确定为4.86×10 −9 ±1.86×10 −12 cm 2 / s。葡萄糖转运建模为通过半透膜的流动。使用滞后时间分析,计算出扩散系数为2.25×10 -6 ±1.98×10 −7 cm 2 / s。结合先前关于sIPNs受控药物释放的研究对结果进行了评估。正如爱因斯坦-斯托克斯方程式所预期的,扩散率随分子大小的增加而降低。结果提供了对结构-功能设计范例的洞察力,并表明从聚合物系统中释放是受扩散控制的,而不是受溶出控制的。

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