Beckh K, Beuers U, Engelhardt R, Jungermann K
Biol Chem Hoppe Seyler. 1987 Apr;368(4):379-86. doi: 10.1515/bchm3.1987.368.1.379.
In the perfused rat liver stimulation of the hepatic nerves around the portal vein and the hepatic artery was previously shown to increase glucose output, to shift lactate uptake to output, to decrease and re-distribute intrahepatic perfusion flow and to cause an overflow of noradrenaline into the hepatic vein. The metabolic effects could be caused directly via nerve hepatocyte contacts or indirectly by the hemodynamic changes and/or by noradrenaline overflow from the afferent vasculature into the sinusoids. Evidence against the indirect modes of nerve action is presented. Reduction of perfusion flow by lowering the perfusion pressure from 2 to 1 ml X min-1 X g-1--as after nerve stimulation--or to 0.35 ml X min-1 X g-1--far beyond the nerve stimulation-dependent effect--did not change glucose output and lowered lactate uptake only slightly. Only re-increase of flow to 2 ml X min-1 X g-1 enhanced glucose and lactate release transiently due to washout of glucose and lactate accumulated in parenchymal areas not perfused during low perfusion flow. In chemically sympathectomized livers nerve stimulation decreased perfusion flow almost normally but without changing the intrahepatic microcirculation; yet it enhanced glucose and lactate output only insignificantly and caused noradrenaline overflow of less than 10% of normal. Conversely, in the presence of nitroprussiate (III) nerve stimulation reduced overall flow only slightly without intrahepatic redistribution but still increased glucose and lactate output strongly and caused normal noradrenaline overflow.(ABSTRACT TRUNCATED AT 250 WORDS)
先前的研究表明,在灌注大鼠肝脏中,刺激门静脉和肝动脉周围的肝神经会增加葡萄糖输出,使乳酸摄取转变为输出,减少并重新分配肝内灌注血流,并导致去甲肾上腺素溢入肝静脉。这些代谢效应可能直接通过神经与肝细胞的接触引起,也可能间接由血流动力学变化和/或去甲肾上腺素从传入血管系统溢入肝血窦引起。本文提供了反对神经作用间接模式的证据。通过将灌注压力从2降至1 ml·min⁻¹·g⁻¹(如神经刺激后)或降至0.35 ml·min⁻¹·g⁻¹(远超过神经刺激依赖效应)来降低灌注血流,并不会改变葡萄糖输出,只会轻微降低乳酸摄取。只有将血流重新增加至2 ml·min⁻¹·g⁻¹,才会由于冲洗低灌注血流期间实质区域积累的葡萄糖和乳酸而短暂增强葡萄糖和乳酸释放。在化学去交感神经的肝脏中,神经刺激几乎正常地降低灌注血流,但不改变肝内微循环;然而,它仅轻微增强葡萄糖和乳酸输出,并导致去甲肾上腺素溢出量不到正常的10%。相反,在存在硝普钠(III)的情况下,神经刺激仅轻微降低总血流,无肝内血流重新分布,但仍强烈增加葡萄糖和乳酸输出,并导致正常的去甲肾上腺素溢出。(摘要截短于250字)