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血液pH值和局部缺血对脑葡萄糖转运动力学常数的影响。

Effect of blood pH and ischemia on kinetic constants for cerebral glucose transport.

作者信息

Yanushka J M, Costello D J, Gilboe D D

出版信息

Am J Physiol. 1983 Oct;245(4):E384-90. doi: 10.1152/ajpendo.1983.245.4.E384.

Abstract

In 117 experiments, the isolated canine brain was subjected either to 4-min pulses with blood ranging from pH 6.8 to 7.8, 30 min of hypoxia (PaO2 30 mmHg or 40 mmHg), or 30 min of complete ischemia followed by 60 min of perfusion with normal oxygenated blood. Unidirectional and net glucose fluxes were measured under all experimental conditions, and kinetic constants were calculated for unidirectional transport at each pH and after ischemia. In brains perfused with blood having a PaO2 of 30 or 40 mmHg, we observed a 58 and a 55% increase, respectively, in the net flux; however, there was no significant change in the unidirectional flux either during hypoxia or during the recovery period. Exposure of the brains to blood with a pH of 6.8, 7.0, and 7.2 had no effect on the unidirectional flux; however, as pH was raised above 7.4 both the Km and Vmax increased, reaching a maximum of 12.06 +/- 2.34 mM and 2.38 +/- 0.28 mumol X g-1 X min-1, respectively, at pH 7.8. The V/K ratio was unchanged. After 30 min of ischemia, there was a significant change (P less than 0.05) in the Km of the unidirectional glucose transport process from a control value of 5.84 +/- 1.75 mM to 17.40 +/- 5.50. These studies suggest that unidirectional flux is impaired after ischemia due to a decrease in the carrier's affinity for glucose; however, the observed changes are apparently unrelated to a fall in tissue pH. A similar mechanism is believed to be responsible for the decrease in unidirectional glucose flux after hypoxia.

摘要

在117项实验中,对离体犬脑进行了如下处理:用pH值在6.8至7.8之间的血液进行4分钟脉冲处理,进行30分钟缺氧处理(动脉血氧分压为30 mmHg或40 mmHg),或进行30分钟完全缺血处理,随后用正常氧合血液灌注60分钟。在所有实验条件下测量了单向和净葡萄糖通量,并计算了每个pH值下以及缺血后的单向转运动力学常数。在用动脉血氧分压为30或40 mmHg的血液灌注的大脑中,我们分别观察到净通量增加了58%和55%;然而,在缺氧期间或恢复期间,单向通量没有显著变化。将大脑暴露于pH值为6.8、7.0和7.2的血液中对单向通量没有影响;然而,当pH值升高到7.4以上时,米氏常数(Km)和最大反应速度(Vmax)均增加,在pH值为7.8时分别达到最大值12.06±2.34 mM和2.38±0.28 μmol·g⁻¹·min⁻¹。V/K比值未改变。缺血30分钟后,单向葡萄糖转运过程的米氏常数从对照值5.84±1.75 mM显著变化(P<0.05)至17.40±5.50。这些研究表明,缺血后单向通量受损是由于载体对葡萄糖的亲和力降低;然而,观察到的变化显然与组织pH值下降无关。类似的机制被认为是缺氧后单向葡萄糖通量降低的原因。

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