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Inhibition of IL-1R1/MyD88 signalling promotes mesenchymal stem cell-driven tissue regeneration

机译:IL-1R1 / MyD88信号的抑制促进间充质干细胞驱动的组织再生

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Tissue injury and the healing response lead to the release of endogenous danger signals including Toll-like receptor (TLR) and interleukin-1 receptor, type 1 (IL-1R1) ligands, which modulate the immune microenvironment. Because TLRs and IL-1R1 have been shown to influence the repair process of various tissues, we explored their role during bone regeneration, seeking to design regenerative strategies integrating a control of their signalling. Here we show that IL-1R1/MyD88 signalling negatively regulates bone regeneration, in the mouse. Furthermore, IL-1β which is released at the bone injury site, inhibits the regenerative capacities of mesenchymal stem cells (MSCs). Mechanistically, IL-1R1/MyD88 signalling impairs MSC proliferation, migration and differentiation by inhibiting the Akt/GSK-3β/β-catenin pathway. Lastly, as a proof of concept, we engineer a MSC delivery system integrating inhibitors of IL-1R1/MyD88 signalling. Using this strategy, we considerably improve MSC-based bone regeneration in the mouse, demonstrating that this approach may be useful in regenerative medicine applications.
机译:组织损伤和愈合反应导致释放内源性危险信号,包括Toll样受体(TLR)和白细胞介素1受体1型(IL-1R1)配体,这些信号可调节免疫微环境。由于已显示TLR和IL-1R1影响各种组织的修复过程,因此我们探索了它们在骨骼再生过程中的作用,以寻求设计整合其信号控制的再生策略。在这里,我们显示IL-1R1 / MyD88信号负调控小鼠的骨再生。此外,在骨损伤部位释放的IL-1β抑制了间充质干细胞(MSCs)的再生能力。从机制上讲,IL-1R1 / MyD88信号传导通过抑制Akt /GSK-3β/β-catenin途径而损害MSC的增殖,迁移和分化。最后,作为概念验证,我们设计了一个整合了IL-1R1 / MyD88信号传导抑制剂的MSC递送系统。使用这种策略,我们可以大大改善小鼠中基于MSC的骨再生,这表明该方法在再生医学应用中可能有用。

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