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Activated dendritic cells modulate proliferation and differentiation of human myoblasts

机译:活化的树突细胞调节人肌细胞的增殖和分化

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Idiopathic Inflammatory Myopathies (IIMs) are a heterogeneous group of autoimmune diseases affecting skeletal muscle tissue homeostasis. They are characterized by muscle weakness and inflammatory infiltration with tissue damage. Amongst the cells in the muscle inflammatory infiltration, dendritic cells (DCs) are potent antigen-presenting and key components in autoimmunity exhibiting an increased activation in inflamed tissues. Since, the IIMs are characterized by the focal necrosis/regeneration and muscle atrophy, we hypothesized that DCs may play a role in these processes. Due to the absence of a reliable in vivo model for IIMs, we first performed co-culture experiments with immature DCs (iDC) or LPS-activated DCs (actDC) and proliferating myoblasts or differentiating myotubes. We demonstrated that both iDC or actDCs tightly interact with myoblasts and myotubes, increased myoblast proliferation and migration, but inhibited myotube differentiation. We also observed that actDCs increased HLA-ABC, HLA-DR, VLA-5, and VLA-6 expression and induced cytokine secretion on myoblasts. In an in vivo regeneration model, the co-injection of human myoblasts and DCs enhanced human myoblast migration, whereas the absolute number of human myofibres was unchanged. In conclusion, we suggest that in the early stages of myositis, DCs may play a crucial role in inducing muscle-damage through cell–cell contact and inflammatory cytokine secretion, leading to muscle regeneration impairment.
机译:特发性炎症性肌病(IIMS)是影响骨骼肌组织稳态的异质性自身免疫疾病组。它们的特征在于肌肉弱点和炎症性浸润,组织损伤。在肌肉炎性浸润中的细胞中,树突细胞(DC)是有效的抗原呈递和自身免疫的关键组分,其表现出发炎组织中的激活增加。由于IIMS的特征在于局灶性坏死/再生和肌肉萎缩,我们假设DCS可能在这些过程中发挥作用。由于IIMS的体内模型中没有可靠,我们首先使用未成熟的DC(IDC)或LPS活化的DC(ACTDC)和增殖肌细胞或区分肌管的共同培养实验。我们证明,IDC或ACTDC都与肌细胞和肌霉素紧密相互作用,增加了肌细胞增殖和迁移,但抑制了肌管分化。我们还观察到,ACTDC增加HLA-ABC,HLA-DR,VLA-5和VLA-6表达并在肌细胞上诱导细胞因子分泌。在体内再生模型中,共注入人肌细胞和DCS增强了人肌细胞迁移,而绝对数量的人体Myofibres不变。总之,我们表明,在肌炎的早期阶段,DCS可能在通过细胞 - 细胞接触和炎症细胞因子分泌诱导肌肉损伤方面发挥至关重要的作用,导致肌肉再生损伤。

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