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Effects of detraining on the temporal expression of positive and negative angioregulatory proteins in skeletal muscle of mice

机译:训练对小鼠骨骼肌正负血管调节蛋白时间表达的影响

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Temporal expression of positive and negative angiogenic factors in response to detraining is poorly understood. We report the protein expression of anti-angiogenic peptides (thrombospondin-1, TSP-1; and endostatin) as well as pro-angiogenic factors (vascular endothelial growth factor, VEGF; matrix metalloproteinases-2 and -9), and nucleolin (a nuclear protein involved with synthesis and maturation of ribosomes) in response to detraining in triceps surae muscles of C57BL/6 mice. Male mice were allowed to exercise voluntarily for 21 days, and then basal and acute response to exercise were evaluated at 1, 7, 14 and 28 days detraining (D1, D7, D14, D28, respectively, n = 12/group). As seen in the D1 mice, training resulted in the increased muscle capillary-to-fibre ratio (C/F), increased maximal running time and elevated basal expression of VEGF and matrix metalloproteinase-9 (P < 0.05). After 7 days of detraining (D7), C/F levels were similar to control levels, but both basal VEGF and TSP-1 were elevated (P < 0.05). At D14 and D28, TSP-1 protein was not different compared to baseline levels; however, VEGF was elevated in gastrocnemius (GA), but not the soleus (SOL) or plantaris (PLT) muscles, of D14 mice. Endostatin tended to decrease in D14 and D28 compared to controls. Timing of nucleolin protein expression differed between muscle groups, with increases at D1, D7 and D14 in the PLT, SOL and GA muscles, respectively. The response of VEGF and nucleolin to acute exercise was blunted with training, and remained blunted in the PLT and SOL even after 28 days of detraining, at a time point long after muscle capillarization was observed to be similar to pre-training levels. These data suggest that TSP-1 may be a mediator of capillary regression with detraining, even in the face of elevated VEGF, suggesting that pro-angiogenic regulators may not be able to prevent the regression of skeletal muscle capillaries under physiological conditions. The responses of matrix metalloproteinases, endostatin and nucleolin poorly correlated with detraining-induced capillary regression.
机译:积极的和消极的血管生成因子响应训练的时间表达了解甚少。我们报告了抗血管生成肽(血小板反应蛋白-1,TSP-1和内皮抑素)以及促血管生成因子(血管内皮生长因子,VEGF,基质金属蛋白酶-2和-9)和核仁蛋白(a核蛋白与核糖体的合成和成熟有关的核蛋白)响应于C57BL / 6小鼠肱三头肌肌肉的训练。使雄性小鼠自愿运动21天,然后在1、7、14和28天训练时评估对运动的基础和急性反应(分别为D1,D7,D14,D28,n = 12 /组)。如在D1小鼠中所见,训练导致增加的肌肉毛细纤维比(C / F),增加的最长运行时间以及VEGF和基质金属蛋白酶9的基础表达增加(P <0.05)。训练7天(D7)后,C / F水平与对照水平相似,但基础VEGF和TSP-1均升高(P <0.05)。在D14和D28,TSP-1蛋白与基线水平相比没有差异。然而,D14小鼠的腓肠肌(GA)而不是比目鱼(SOL)或plant肌(PLT)肌肉中的VEGF升高。与对照相比,内皮抑素在D14和D28中趋于减少。肌肉群中核仁蛋白表达的时机不同,分别在PLT,SOL和GA肌肉中的D1,D7和D14处增加。训练使血管内皮生长因子和核仁素对急性运动的反应减弱,即使在训练后28天,在观察到肌肉毛细血管化的时间与训练前的水平相似的很长时间后,PLT和SOL仍然保持钝化。这些数据表明,即使面对VEGF升高,TSP-1仍可能是毛细血管消退与调解的介体,这表明促血管生成调节剂可能无法阻止生理条件下骨骼肌毛细血管的消退。基质金属蛋白酶,内皮抑素和核仁素的反应与训练引起的毛细血管退化无关。

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