Golshadi Masoud, Claffey Elaine F, Grenier Jennifer K, Miller Andrew, Willand Michael, Edwards Michael G, Moore Tim P, Sledziona Michael, Gordon Tessa, Borschel Gregory H, Cheetham Jonathan
Cornell University College of Veterinary Medicine, 930 Campus Road, Ithaca, NY, 14853, USA.
Epineuron Technologies Inc, 5100 Orbitor Dr., Mississauga, ON, L4W 5R8, Canada.
NPJ Regen Med. 2023 Feb 27;8(1):12. doi: 10.1038/s41536-023-00285-4.
Effective regeneration after peripheral nerve injury requires macrophage recruitment. We investigated the activation of remodeling pathways within the macrophage population when repair is delayed and identified alteration of key upstream regulators of the inflammatory response. We then targeted one of these regulators, using exogenous IL10 to manipulate the response to injury at the repair site. We demonstrate that this approach alters macrophage polarization, promotes macrophage recruitment, axon extension, neuromuscular junction formation, and increases the number of regenerating motor units reaching their target. We also demonstrate that this approach can rescue the effects of delayed nerve graft.
周围神经损伤后的有效再生需要巨噬细胞的募集。我们研究了修复延迟时巨噬细胞群体内重塑途径的激活情况,并确定了炎症反应关键上游调节因子的改变。然后,我们以这些调节因子之一为靶点,使用外源性白细胞介素10来操纵修复部位对损伤的反应。我们证明,这种方法可改变巨噬细胞极化,促进巨噬细胞募集、轴突延伸、神经肌肉接头形成,并增加到达其靶点的再生运动单位数量。我们还证明,这种方法可以挽救延迟神经移植的影响。