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Delineating the relationship between immune system aging and myogenesis in muscle repair

机译:划定免疫系统衰老与肌肉修复中肌动生殖物的关系

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摘要

Recruited immune cells play a critical role in muscle repair, in part by interacting with local stem cell populations to regulate muscle regeneration. How aging affects their communication during myogenesis is unclear. Here, we investigate how aging impacts the cellular function of these two cell types after muscle injury during normal aging or after immune rejuvenation using a young to old (Y‐O) or old to old (O‐O) bone marrow (BM) transplant model. We found that skeletal muscle from old mice (20 months) exhibited elevated basal inflammation and possessed fewer satellite cells compared with young mice (3 months). After cardiotoxin muscle injury (CTX), old mice exhibited a blunted inflammatory response compared with young mice and enhanced M2 macrophage recruitment and IL‐10 expression. Temporal immune and cytokine responses of old mice were partially restored to a young phenotype following reconstitution with young cells (Y‐O chimeras). Improved immune responses in Y‐O chimeras were associated with greater satellite cell proliferation compared with O‐O chimeras. To identify how immune cell aging affects myoblast function, conditioned media (CM) from activated young or old macrophages was applied to cultured C2C12 myoblasts. CM from young macrophages inhibited myogenesis while CM from old macrophages reduced proliferation. These functional differences coincided with age‐related differences in macrophage cytokine expression. Together, this study examines the infiltration and proliferation of immune cells and satellite cells after injury in the context of aging and, using BM chimeras, demonstrates that young immune cells retain cell autonomy in an old host to increase satellite cell proliferation.
机译:募集免疫细胞在肌肉修复中发挥着关键作用,部分是与局部干细胞群相互作用以调节肌肉再生。如何在肌发育过程中影响他们的通信尚不清楚。在这里,我们研究了在正常老化期间肌肉损伤或使用年轻对旧(Y-O)或旧(O-O)骨髓(BM)移植的肌肉损伤后肌肉损伤后的肌肉损伤后如何影响这两种细胞类型的细胞功能模型。我们发现,与幼小小鼠(3个月)相比,来自老鼠(20个月)的骨骼肌(20个月)表现出升高的基础炎症,并且具有更少的卫星细胞(3个月)。在心脏毒素肌肉损伤(CTX)后,与幼小小鼠相比,旧小鼠表现出钝的炎症反应,并增强了M2巨噬细胞募集和IL-10表达。旧小鼠的时间免疫和细胞因子应答部分恢复到患有幼细胞(Y-O嵌合体)重构后的年轻表型。与O-O嵌合体相比,Y-O嵌合体中的改善免疫应答与更大的卫星细胞增殖相关。为了鉴定免疫细胞老化的影响如何影响肌细胞功能,将来自活化的年轻或旧巨噬细胞的调节培养基(cm)应用于培养的C2C12肌细胞。来自幼苗的Cm抑制肌发离术,而来自旧巨噬细胞的Cm均降低增殖。这些功能差异与巨噬细胞因子表达的年龄相关的差异。该研究在一起,研究了在衰老的背景下造成损伤后免疫细胞和卫星细胞的渗透和增殖,并使用BM嵌合体证明幼小免疫细胞在旧宿主中保留细胞自主性以增加卫星细胞增殖。

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