Department of Materials Science and Engineering, Tel-Aviv University, Tel-Aviv, 55 Chaim Levanon St., Ramat Aviv 69978, Israel.
School of Mechanical Engineering, Faculty of Engineering, Tel-Aviv University, Tel-Aviv, 55 Chaim Levanon St., Ramat Aviv 69978, Israel.
Biomolecules. 2021 Feb 23;11(2):337. doi: 10.3390/biom11020337.
Fibrin hydrogel is a central biological material in tissue engineering and drug delivery applications. As such, fibrin is typically combined with cells and biomolecules targeted to the regenerated tissue. Previous studies have analyzed the release of different molecules from fibrin hydrogels; however, the effect of embedded cells on the release profile has yet to be quantitatively explored. This study focused on the release of Fluorescein isothiocyanate (FITC)-dextran (FD) 250 kDa from fibrin hydrogels, populated with different concentrations of fibroblast or endothelial cells, during a 48-h observation period. The addition of cells to fibrin gels decreased the overall release by a small percentage (by 7-15% for fibroblasts and 6-8% for endothelial cells) relative to acellular gels. The release profile was shown to be modulated by various cellular activities, including gel degradation and physical obstruction to diffusion. Cell-generated forces and matrix deformation (i.e., densification and fiber alignment) were not found to significantly influence the release profiles. This knowledge is expected to improve fibrin integration in tissue engineering and drug delivery applications by enabling predictions and ways to modulate the release profiles of various biomolecules.
纤维蛋白水凝胶是组织工程和药物输送应用中的重要生物材料。因此,纤维蛋白通常与针对再生组织的细胞和生物分子结合使用。先前的研究已经分析了不同分子从纤维蛋白水凝胶中的释放情况;然而,嵌入细胞对释放曲线的影响尚未被定量研究。本研究集中于在 48 小时观察期内,用不同浓度的成纤维细胞或内皮细胞填充的纤维蛋白水凝胶中,异硫氰酸荧光素(FITC)-葡聚糖(FD)250 kDa 的释放情况。与无细胞凝胶相比,细胞添加到纤维蛋白凝胶中会使总释放量减少一小部分(成纤维细胞减少 7-15%,内皮细胞减少 6-8%)。释放曲线显示受到各种细胞活动的调节,包括凝胶降解和扩散的物理阻塞。细胞产生的力和基质变形(即致密化和纤维排列)并未被发现显著影响释放曲线。这些知识有望通过预测和调节各种生物分子的释放曲线来改善纤维蛋白在组织工程和药物输送应用中的整合。