细胞生物学
干细胞
超细纤维
间充质干细胞
巨噬细胞极化
组织工程
再生医学
化学
细胞生长
细胞迁移
再生(生物学)
细胞
内皮干细胞
巨噬细胞
生物
生物医学工程
体外
生物化学
医学
有机化学
作者
Shan Gao,Lina Wang,Yu Zhang,Lan Li,Yunsha Zhang,Xiumei Gao,Jingyuan Mao,Lianyong Wang,Li‐Chen Wang,Hongjun Wang,Meifeng Zhu,Guanwei Fan
标识
DOI:10.1016/j.apmt.2020.100841
摘要
Direct implantation of cell-free scaffolds capable of promoting tissue regeneration by manipulating immune responses has proven to be a promising therapeutic strategy for regenerative medicine. Here, we developed aligned microfiber scaffolds with sustained release of tanshinone ⅡA (Tan ⅡA) to modulate macrophages phenotypic transition, which subsequently promoted stem cell recruitment and capillary formation. Aligned microfibers scaffolds loaded with 1μM Tan ⅡA (AF-1) significantly down-regulated the expression of proinflammatory genes and proteins, while they upregulated anti-inflammatory genes and proteins, in RAW 264.7 macrophages. Conditioned medium collected from macrophages cultured on AF-1 scaffolds enhanced bone marrow-derived mesenchymal stem cell (BMSC) proliferation and migration, and also regulated their multiple biological functions as evidenced by RNA-Seq assays. Moreover, the conditioned medium also promoted human umbilical vein endothelial cell (HUVEC) proliferation, migration, and tube formation. Enhancement of endogenous stem cell recruitment and vascularization by regulating macrophage phenotype transition was further confirmed by utilizing rat subcutaneous implantation of the scaffolds. These results support the use of drug-loaded aligned microfiber scaffolds to enable immune modulation to stimulate stem cell recruitment and vascularization, which could potentially result in successful cell-free, scaffold-guided tissue regeneration.
科研通智能强力驱动
Strongly Powered by AbleSci AI