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首页> 外文期刊>The journal of physiological sciences: JPS >Impact of intramuscular administration of lipid-soluble and water-soluble vehicles into regenerating muscle at the distinct phases of skeletal muscle regeneration
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Impact of intramuscular administration of lipid-soluble and water-soluble vehicles into regenerating muscle at the distinct phases of skeletal muscle regeneration

机译:脂溶性和水溶性车辆肌肉内施用对骨骼肌再生不同阶段再生肌肉的影响

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Interpretation on the effectiveness of potential substances to enhance skeletal muscle regeneration is difficult if an inappropriate vehicle is administered, since vehicle administration can directly enhance or suppress regenerative capacity. In the current study, intramuscular administration of lipid-soluble and water-soluble vehicles into regenerating muscle at the distinct phases of skeletal muscle regeneration (regenerative vs. remodeling) were investigated. Tested vehicles included lipid-soluble [olive oil, (0.1, 1, 5, and 40%) dimethyl sulfoxide (DMSO), and 40% propylene glycol (PG)] and water-soluble [0.9% NaCl, PBS, 0.1% ethanol, and distilled water]. Skeletal muscle regeneration was induced by 1.2% BaCl~(2)injection to the tibialis anterior muscle of 10-week-old C57BL/6 male mice. Histological features, skeletal muscle stem cell activity, regenerating muscle fiber formation, angiogenesis, extracellular matrix remodeling, and macrophage infiltration were examined. The results revealed repeated administration of 40% DMSO and 40% PG causes significant recurrent muscle injury, which is pronounced during the remodeling phase compared to the regenerative phase. These findings were supported by (1) massive infiltration of F4/80_(+)macrophages; (2) significant increase of skeletal muscle stem cell re-activation and nascent regenerating muscle fiber formation; (3) excess fibrous formation; and (4) decreased regenerating muscle fiber cross-sectional area. These deleterious effects were comparable to 2% trypsin (degenerative substance) administration and less pronounced with a single administration. Nevertheless, recurrent muscle injury was still presented with 5% DMSO administration but it can be alleviated when 0.1% DMSO was administered during the remodeling phase. In contrast, none of the tested vehicles enhanced regenerative capacity compared with IGF-1 administration. Altogether, intramuscular administration of vehicle containing high concentration of DMSO or PG could impair skeletal muscle regenerative capacity and potentially affect validation of the investigational substance.
机译:如果施用不适当的车辆,难以提高潜在物质来增强骨骼肌再生的潜在物质的有效性,因为载体给药可以直接增强或抑制再生能力。在目前的研究中,研究了在骨骼肌再生的明显阶段(再生与重塑)的不同阶段的再生肌肉肌肉溶解和水溶性型肌肉。测试的车辆包括脂质 - 可溶性[橄榄油,(0.1,15,5和40%)二甲基亚砜(DMSO)和40%丙二醇(PG)]和水溶性[0.9%NaCl,PBS,0.1%乙醇和蒸馏水]。将骨骼肌再生诱导为10周龄C57BL / 6雄性小鼠的胫骨前肌肉诱导1.2%Bacl〜(2)注射。检查组织学特征,骨骼肌干细胞活性,再生肌纤维形成,血管生成,细胞外基质重塑和巨噬细胞浸润。结果表明,重复施用40%DMSO和40%PG导致显着的复发肌肉损伤,与再生阶段相比,在重塑阶段发音。这些发现得到了(1)F4 / 80 _(+)巨噬细胞的大规模渗透; (2)骨骼肌干细胞重新激活和新生再生肌纤维形成的显着增加; (3)过量的纤维形成; (4)减少再生肌纤维横截面积。这些有害的效果与2%胰蛋白酶(退化物质)给药和单一施用不那么明显。然而,仍然含有5%DMSO给药的复发肌损伤,但在重塑期期间施用0.1%DMSO时,可以缓解。相反,与IGF-1给药相比,没有测试的车辆增强了再生能力。共用含有高浓度DMSO或PG的肌肉肌肉施用可能会损害骨骼肌再生能力,并且可能影响研究的验证。

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