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哺乳动物无髓神经纤维中的氧消耗和磷酸盐外流

Oxygen consumption and phosphate efflux in mammalian non-myelinated nerve fibres.

作者信息

Ritchie J M, Straub R W

出版信息

J Physiol. 1980 Jul;304:109-21. doi: 10.1113/jphysiol.1980.sp013313.

Abstract
  1. A comparison has been made between the efflux of labelled phosphate from the non-myelinated fibres of the desheathed rabbit vagus nerve at 37 degrees C and the corresponding O2 consumption at rest and during activity, and during a variety of experimental interventions. 2. The resting rate constant of phosphate efflux was 2.61 X 10(-3) min-1: electrical stimulation (10 sec-1, 3 min) produced an extra fractional loss of 6.75 X 10(-6) impulse-1. 3. The corresponding resting O2 consumption was 0.484 m-mole x kg-1 impulse-1. 4. Ouabain (100 microM) produced a sustained depression (of about 40%) of the resting O2 consumption, accompanied by a transient fall (of about 14%) in the rate constant of phosphate efflux. 5. Na salicylate (10 mM) or Na arsenate (1 mM) produced a much larger increase in phosphate efflux than in resting O2 consumption. 6. Changing the external phosphate concentration (between 0.02 and 2 mM), addition of acetylcholine (1.7 mM), and addition of lanthanum (20 microM)--all of which are known to affect markedly the phosphate efflux in rabbit non-myelinated fibres--had little or no effect on the resting O2 consumption or, where tested, on the extra O2 consumption with electrical stimulation. 7. Changing the external Ca concentration (between 0.09 and 9 mM) had only minor effects on the O2 consumption (resting and stimulated) and on the rate constant of resting phosphate efflux. 8. It is concluded that although changes in metabolism of the nerve produce changes in the phosphate efflux expected on the basis of the concomitant changes in the internal concentration of inorganic phosphate, the converse is not true; and increases and decreases in the rate constant of phosphate efflux do not necessarily signal the corresponding metabolic changes.
摘要
  1. 已对37摄氏度时去鞘兔迷走神经无髓纤维中标记磷酸盐的流出量与静息及活动期间相应的耗氧量进行了比较,且在各种实验干预过程中也进行了比较。2. 磷酸盐流出的静息速率常数为2.61×10⁻³分钟⁻¹:电刺激(10次/秒,3分钟)导致额外的分数损失为6.75×10⁻⁶次冲动⁻¹。3. 相应的静息耗氧量为0.484毫摩尔×千克⁻¹次冲动⁻¹。4. 哇巴因(100微摩尔)使静息耗氧量持续降低(约40%),同时磷酸盐流出速率常数短暂下降(约14%)。5. 水杨酸钠(10毫摩尔)或砷酸钠(1毫摩尔)使磷酸盐流出量的增加比静息耗氧量的增加大得多。6. 改变外部磷酸盐浓度(在0.02至2毫摩尔之间)、添加乙酰胆碱(1.7毫摩尔)以及添加镧(20微摩尔)——所有这些都已知会显著影响兔无髓纤维中的磷酸盐流出——对静息耗氧量几乎没有影响,或者在测试时对电刺激后的额外耗氧量也几乎没有影响。7. 改变外部钙浓度(在0.09至9毫摩尔之间)对耗氧量(静息和刺激时)以及静息磷酸盐流出速率常数仅有轻微影响。8. 得出的结论是,尽管神经代谢的变化会导致基于无机磷酸盐内部浓度的相应变化而预期的磷酸盐流出量的变化,但反之则不然;磷酸盐流出速率常数的增加和减少不一定表明相应的代谢变化。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/50ba/1282919/72d2c9468b39/jphysiol00720-0117-a.jpg

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