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骨骼肌钠钾ATP酶活性增加是失血性休克后乳酸生成增加的原因。

Increased skeletal muscle Na+, K+-ATPase activity as a cause of increased lactate production after hemorrhagic shock.

作者信息

Luchette F A, Friend L A, Brown C C, Upputuri R K, James J H

机构信息

Department of Surgery, University of Cincinnati College of Medicine, Ohio, USA.

出版信息

J Trauma. 1998 May;44(5):796-801; discussion 801-3. doi: 10.1097/00005373-199805000-00010.

Abstract

BACKGROUND

Lactate production after hemorrhagic shock may be produced by aerobic glycolysis, which has been linked to activity of the Na+/K+ pump in smooth muscle and other tissues. We tested whether increased muscle Na+/K+ pump activity after shock was linked to increased lactate production.

METHODS

Male Sprague-Dawley rats were subjected to 1 or 2 hours of hemorrhagic shock and then resuscitated with shed blood and normal saline. After 24 hours, pairs of extensor digitorum longus muscles were preincubated for 30 minutes in Krebs buffer (95:5, O2:CO2) with 10 mmol/L glucose. One muscle served as a control and was incubated in buffer alone; the other was incubated in buffer with 1 mmol/L ouabain, an inhibitor of the Na+, K+-ATPase. Lactate, ADP, ATP, glycogen, and creatinine-phosphate were determined.

RESULTS

Under these well-oxygenated conditions, muscles from shocked rats produced about twice as much lactate as sham muscles. Inhibition of the Na+/K+ pump by ouabain significantly reduced lactate production.

CONCLUSIONS

Hypoxia is unlikely to account for increased muscle lactate production after resuscitated hemorrhagic shock, because high lactate production persists under well-oxygenated incubation conditions. Inhibition of shock-induced lactate production by ouabain indicates energetic coupling of glycolysis to the Na+, K+-ATPase.

摘要

背景

失血性休克后乳酸生成可能由有氧糖酵解产生,这与平滑肌和其他组织中钠钾泵的活性有关。我们测试了休克后肌肉钠钾泵活性增加是否与乳酸生成增加有关。

方法

将雄性Sprague-Dawley大鼠进行1或2小时的失血性休克,然后用自体血和生理盐水进行复苏。24小时后,将成对的趾长伸肌在含10 mmol/L葡萄糖的 Krebs缓冲液(95:5,氧气:二氧化碳)中预孵育30分钟。一块肌肉作为对照,仅在缓冲液中孵育;另一块肌肉在含1 mmol/L哇巴因(一种钠钾ATP酶抑制剂)的缓冲液中孵育。测定乳酸、二磷酸腺苷(ADP)、三磷酸腺苷(ATP)、糖原和磷酸肌酸。

结果

在这些充分氧合的条件下,休克大鼠的肌肉产生的乳酸量约为假手术组肌肉的两倍。哇巴因抑制钠钾泵可显著降低乳酸生成。

结论

缺氧不太可能是复苏后失血性休克肌肉乳酸生成增加的原因,因为在充分氧合的孵育条件下仍持续有高乳酸生成。哇巴因抑制休克诱导的乳酸生成表明糖酵解与钠钾ATP酶存在能量偶联。

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