Department of Pharmaceutical Sciences, USF Health Taneja College of Pharmacy, University of South Florida, Tampa, FL 33612, USA.
Cells. 2023 Jul 12;12(14):1837. doi: 10.3390/cells12141837.
The failure of muscle to repair after injury during aging may be a major contributor to muscle mass loss. We recently generated muscle progenitor cells (MPCs) from human-induced pluripotent stem-cell (iPSC) cell lines using small molecules, CHIR99021 and Givinostat (Givi-MPCs) sequentially. Here, we test whether the chemokines overexpressed in injured endothelial cells direct MPC migration to the site by binding to their receptor, ITGA4. ITGA4 was heavily expressed in Givi-MPCs. To study the effects on the mobilization of Givi-MPCs, ITGA4 was knocked down by an ITGA4 shRNA lentiviral vector. With and without ITGA4 knocked down, cell migration in vitro and cell mobilization in vivo using aged NOD scid gamma (NSG) mice and mdx/scid mice were analyzed. The migration of shITGA4-Givi-MPCs was significantly impaired, as shown in a wound-healing assay. The knockdown of ITGA4 impaired the migration of Givi-MPCs towards human aortic endothelial cells (HAECs), in which CX3CL1 and VCAM-1 were up-regulated by the treatment of TNF-α compared with scramble ones using a transwell system. MPCs expressing ITGA4 sensed chemokines secreted by endothelial cells at the injury site as a chemoattracting signal to migrate to the injured muscle. The mobilization of Givi-MPCs was mediated by the ligand-receptor interaction, which facilitated their engraftment for repairing the sarcopenic muscle with injury.
衰老过程中肌肉损伤后无法修复可能是肌肉质量损失的主要原因。我们最近使用小分子 CHIR99021 和 Givinostat(Givi-MPCs)顺序从人诱导多能干细胞(iPSC)细胞系中生成肌肉祖细胞(MPC)。在这里,我们测试了受伤内皮细胞中过表达的趋化因子是否通过与其受体 ITGA4 结合来指导 MPC 迁移到损伤部位。ITGA4 在 Givi-MPC 中大量表达。为了研究对 Givi-MPC 动员的影响,我们使用 ITGA4 shRNA 慢病毒载体敲低了 ITGA4。在有和没有 ITGA4 敲低的情况下,使用老年 NOD scid gamma(NSG)小鼠和 mdx/scid 小鼠进行了体外细胞迁移和体内细胞动员分析。在划痕愈合测定中,显示 shITGA4-Givi-MPC 的迁移明显受损。与 scramble 相比,用 TNF-α处理后,CX3CL1 和 VCAM-1 在人主动脉内皮细胞(HAEC)中上调,ITGA4 的敲低会损害 Givi-MPC 向 HAEC 的迁移。使用 Transwell 系统。表达 ITGA4 的 MPC 可以感知内皮细胞在损伤部位分泌的趋化因子,作为趋化信号迁移到受损的肌肉。Givi-MPC 的动员是通过配体-受体相互作用介导的,这促进了它们的植入,用于修复受伤的肌肉。