Kim Ok-Hyeon, Park Jun-Hyung, Son Jong-In, Yoon Ok-Ja, Lee Hyun-Jung
Department of Anatomy and Cell Biology, College of Medicine, Chung-Ang University, Seoul 06974, Korea.
Department of Global Innovative Drugs, Graduate School of Chung-Ang University, Seoul 06974, Korea.
Polymers (Basel). 2021 Apr 29;13(9):1433. doi: 10.3390/polym13091433.
Suitable scaffolds with appropriate mechanical and biological properties can improve mesenchymal stromal cell (MSC) therapy. Because silk fibroins (SFs) are biocompatible materials, they were electrospun and applied as scaffolds for MSC therapy. Consequently, interferon (IFN)-primed human bone marrow MSCs on SF nanofibers were administered into a polymicrobial sepsis murine model. The IL-6 level gradually decreased from 40 ng/mL at 6 h after sepsis to 35 ng/mL at 24 h after sepsis. The IL-6 level was significantly low as 5 ng/mL in primed MSCs on SF nanofibers, and 15 ng/mL in primed MSCs on the control surface. In contrast to the acute response, inflammation-related factors, including HO-1 and COX-2 in chronic liver tissue, were effectively inhibited by MSCs on both SF nanofibers and the control surface at the 5-day mark after sepsis. An in vitro study indicated that the anti-inflammatory function of MSCs on SF nanofibers was mediated through enhanced COX-2-PGE production, as indomethacin completely abrogated PGE production and decreased the survival rate of septic mice. Thus, SF nanofiber scaffolds potentiated the anti-inflammatory and immunomodulatory functions of MSCs, and were beneficial as a culture platform for the cell therapy of inflammatory disorders.
具有适当机械和生物学特性的合适支架可改善间充质基质细胞(MSC)疗法。由于丝素蛋白(SFs)是生物相容性材料,因此将其进行电纺丝并用作MSC疗法的支架。因此,将在SF纳米纤维上经干扰素(IFN)预处理的人骨髓间充质干细胞注入多微生物败血症小鼠模型中。白细胞介素-6(IL-6)水平从败血症后6小时的40 ng/mL逐渐降至败血症后24小时的35 ng/mL。在SF纳米纤维上的预处理间充质干细胞中,IL-6水平显著低至5 ng/mL,而在对照表面上的预处理间充质干细胞中为15 ng/mL。与急性反应相反,在败血症后第5天,包括慢性肝组织中的血红素加氧酶-1(HO-1)和环氧化酶-2(COX-2)在内的炎症相关因子在SF纳米纤维和对照表面上均被间充质干细胞有效抑制。一项体外研究表明,间充质干细胞在SF纳米纤维上的抗炎功能是通过增强COX-2-前列腺素E(PGE)的产生来介导的,因为吲哚美辛完全消除了PGE的产生并降低了败血症小鼠的存活率。因此,SF纳米纤维支架增强了间充质干细胞的抗炎和免疫调节功能,作为炎症性疾病细胞治疗的培养平台是有益的。