[E2 signaling in myofibers promots macrophage efferocytosis in mouse skeletal muscles with cardiotoxin-induced acute injury].

Q Cai, H Lan, B Xian, L Liu, N Wang, X Huang, X Niu, X Hu, C Li, J Xie, Z Liao
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Abstract

Objective: To investigate the effect of E2 signaling in myofibers on muscular macrophage efferocytosis in mice with cardiotoxin-induced acute skeletal muscle injury.

Methods: Female wild-type C57BL/6 mice with and without ovariectomy and male C57BL/6 mice were given a CTX injection into the anterior tibial muscle to induce acute muscle injury, followed by intramuscular injection of β-estradiol (E2) or 4-hydroxytamoxifen (4-OHT). The changes in serum E2 of the mice were detected using ELISA, and the number, phenotypes, and efferocytosis of the macrophages in the inflammatory exudates and myofiber regeneration and repair were evaluated using immunofluorescence staining and flow cytometry. C2C12 cells were induced to differentiate into mature myotubes, which were treated with IFN- γ for 24 before treatment with β -Estradiol or 4-OHT. The treated myotubes were co-cultured with mouse peritoneal macrophages in a 1:2 ratio, followed by addition of PKH67-labeled apoptotic mouse mononuclear spleen cells induced by UV irradiation, and macrophage efferocytosis was observed using immunofluorescence staining and flow cytometry.

Results: Compared with the control mice, the female mice with ovariectomy showed significantly increased mononuclear macrophages in the inflammatory exudates, with increased M1 cell percentage, reduced M2 cell percentage and macrophage efferocytosis in the injured muscle, and obviously delayed myofiber regeneration and repair. In the cell co-culture systems, treatment of the myotubes with β-estradiol significantly increased the number and proportion of M2 macrophages and macrophage efferocytosis, while 4-OHT treatment resulted in the opposite changes.

Conclusion: In injured mouse skeletal muscles, myofiber E2 signaling promotes M1 to M2 transition to increase macrophage efferocytosis, thereby relieving inflammation and promoting muscle regeneration and repair.

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[肌纤维中的E2信号促进心脏毒素引起的急性损伤小鼠骨骼肌的巨噬细胞efferocysis]。
目的:探讨心肌纤维E2信号对心脏毒素致急性骨骼肌损伤小鼠肌肉巨噬细胞efferocycytes的影响。方法:将切除卵巢和未切除卵巢的雌性野生型C57BL/6小鼠及雄性C57BL/6小鼠胫骨前肌内注射CTX诱导急性肌肉损伤,然后肌内注射β-雌二醇(E2)或4-羟他莫昔芬(4-OHT)。ELISA法检测小鼠血清E2的变化,免疫荧光染色和流式细胞术检测小鼠炎性渗出液中巨噬细胞的数量、表型和effocytic,以及肌纤维再生和修复。用IFN- γ诱导C2C12细胞向成熟肌管分化24小时,再用β -雌二醇或4-OHT处理。将处理后的肌管与小鼠腹膜巨噬细胞按1:2比例共培养,加入经紫外光照射诱导的pkh67标记的小鼠凋亡单核脾细胞,采用免疫荧光染色和流式细胞术观察巨噬细胞的efferocytic。结果:与对照组小鼠相比,切除卵巢的雌性小鼠炎性渗出液中单核巨噬细胞明显增加,损伤肌肉中M1细胞百分比增加,M2细胞百分比减少,巨噬细胞effocylosis减少,肌纤维再生和修复明显延迟。在细胞共培养系统中,β-雌二醇处理肌管显著增加M2巨噬细胞的数量和比例以及巨噬细胞efferocytosis,而4-OHT处理则相反。结论:损伤小鼠骨骼肌中,肌纤维E2信号可促进M1向M2转化,增加巨噬细胞的efferocysis,从而缓解炎症,促进肌肉的再生和修复。
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来源期刊
南方医科大学学报杂志
南方医科大学学报杂志 Medicine-Medicine (all)
CiteScore
1.50
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208
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