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首页> 外文期刊>Acta physiologica Scandinavica >Increased metabolism of infused 1-methylxanthine by working muscle.
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Increased metabolism of infused 1-methylxanthine by working muscle.

机译:工作肌肉增加了注入的1-甲基黄嘌呤的新陈代谢。

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摘要

Exogenous substrates for capillary endothelial enzymes have potential as markers for changes in capillary recruitment (albeit nutritive flow). The metabolism of infused 1-methylxanthine (1-MX) to 1-methylurate (1-MU) by capillary endothelial xanthine oxidase of the constant-flow perfused rat hindlimb was shown previously to decrease with oxygen uptake (VO2) when nutritive flow was decreased. In the present study, the metabolism of 1-MX was investigated under conditions when VO2 and nutritive flow are known to increase during muscle contraction. The constant-flow red blood cell-perfused rat hindlimb at 37 degrees C was used with sciatic nerve stimulation, and perfusate samples from whole hindlimb and working muscles taken for analysis of oxygen, lactate, 1-MX and 1-MU. Flow to muscle was assessed separately using fluorescent microspheres and was found to increase 2.3-fold to the working muscles while flow to the non-working leg muscles decreased to compensate. The activity of xanthine oxidase of whole muscle extracts was not altered by contraction. Samples from the vein draining the working muscles, and microsphere measurements of flow, indicated increased VO2 (5.5-fold to 249.2 +/- 43.1 micromol h-1 g-1, P < 0.001), and 1-MX conversion (2.5-fold to 1.87 +/- 0.25 micromol h-1 g-1, P < 0.01) (SEM are shown). It is concluded that as 1-MX metabolism parallels VO2, this substrate may be a useful indicator of changes in capillary (nutritive) surface area in muscle.
机译:毛细血管内皮酶的外源底物有潜力作为毛细血管募集变化的标志物(尽管营养流动)。先前显示,当营养流量减少时,恒定流量灌注的大鼠后肢的毛细血管内皮黄嘌呤氧化酶可将注入的1-甲基黄嘌呤(1-MX)代谢为1-甲基尿酸(1-MU)代谢。在本研究中,在肌肉收缩期间VO2和营养流量已知增加的条件下研究了1-MX的代谢。在37摄氏度下用恒流灌注的红血球大鼠后肢进行坐骨神经刺激,并取自整个后肢和工作肌肉的灌注液样品,以分析氧气,乳酸,1-MX和1-MU。使用荧光微球分别评估了肌肉的流量,发现流向工作肌肉的流量增加了2.3倍,而流向不工作的腿部肌肉的流量减少了,以进行补偿。整个肌肉提取物的黄嘌呤氧化酶的活性不会因收缩而改变。从静脉引流工作肌肉的样品以及微球的流量测量表明,VO2增加(5.5倍至249.2 +/- 43.1 micromol h-1 g-1,P <0.001)和1-MX转化(2.5倍)至1.87 +/- 0.25 micromol h-1 g-1,P <0.01)(显示SEM)。结论是,随着1-MX新陈代谢平行于VO2,该底物可能是肌肉毛细血管(营养)表面积变化的有用指标。

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