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铵可降低猫脊髓在体时的兴奋性突触传递。

Ammonium decreases excitatory synaptic transmission in cat spinal cord in vivo.

作者信息

Raabe W

机构信息

Department of Neurology, Veterans Administration Medical Center, Minneapolis, Minnesota.

出版信息

J Neurophysiol. 1989 Dec;62(6):1461-73. doi: 10.1152/jn.1989.62.6.1461.

DOI:10.1152/jn.1989.62.6.1461
PMID:2600634
Abstract
  1. Glutamine is thought to be a precursor of the pool of glutamate that is used as synaptic transmitter. NH4+ inhibits glutaminase, the enzyme presumed to cleave glutamine into glutamate in synaptic terminals. Therefore a decrease by NH4+ of excitatory synaptic transmission in hippocampus was suggested to be due to the inability to utilize glutamine as a precursor for glutamate and subsequent transmitter depletion. This study reexamines the effects of NH4+ on excitatory synaptic transmission. 2. The effects of NH4+ on excitatory synaptic transmission from low-threshold afferent fibers, presumably Ia-afferent fibers, to motoneurons was investigated in the spinal cord of anesthetized cats in vivo. 3. Action potentials of low-threshold afferent fibers were recorded at the entry of the dorsal roots into the spinal cord. An extracellular electrode within a motoneuron nucleus recorded the action potential of low-threshold afferent fibers and the extracellular monosynaptic excitatory postsynaptic potential, i.e., the focal synaptic potential (FSP). This extracellular electrode also recorded the antidromic field potential (AFP) in response to ventral root stimulation. Electrodes on the ventral roots recorded the monosynaptic reflex (MSR) and the monosynaptic excitatory postsynaptic potential in motoneurons electrotonically conducted into the ventral roots (VR-EPSP). 4. Intravenous infusion of ammonium acetate (AA) reversibly decreased MSR, VR-EPSP, and FSP, i.e., decreased excitatory synaptic transmission. 5. The decrease of VR-EPSP and FSP was accompanied initially by a decrease of conduction and, eventually, a conduction block in presynaptic terminals of low-threshold afferent fibers. 6. The decreases of VR-EPSP and FSP were also accompanied by the transient appearance of a reflex discharge, triggered by VR-EPSPs of decreased amplitude, and changes of the AFP indicating increased invasion of motoneuron somata by antidromic action potentials. 7. It is suggested that NH4+ depolarizes intraspinal Ia-afferent fibers and motoneurons. This depolarization initially decreases and then blocks conduction of action potentials into the presynaptic terminals of Ia-afferent fibers. The conduction block prevents the release of excitatory transmitter and decreases excitatory synaptic transmission. 8. The suggested depolarizing action of NH4+ may be due to K+-like ionic properties of NH4+ and/or an inhibition of K+-uptake into astrocytes. 9. The conduction block in presynaptic terminals of low-threshold afferent fibers can fully explain the decrease of excitatory synaptic transmission by NH4+. Because of the conduction block in presynaptic terminals, this study does not permit a conclusion as to an inhibition by NH4+ fo the utilization of glutamine as a precursor for glutamate used as synaptic transmitter.
摘要
  1. 谷氨酰胺被认为是用作突触递质的谷氨酸池的前体。NH4+抑制谷氨酰胺酶,该酶被推测在突触终末将谷氨酰胺裂解为谷氨酸。因此,有人提出海马中NH4+导致兴奋性突触传递减少是由于无法将谷氨酰胺用作谷氨酸的前体以及随后递质耗竭。本研究重新审视了NH4+对兴奋性突触传递的影响。2. 在体内麻醉猫的脊髓中,研究了NH4+对从低阈值传入纤维(可能是Ia传入纤维)到运动神经元的兴奋性突触传递的影响。3. 在背根进入脊髓处记录低阈值传入纤维的动作电位。运动神经元核内的一个细胞外电极记录低阈值传入纤维的动作电位和细胞外单突触兴奋性突触后电位,即局灶性突触电位(FSP)。该细胞外电极还记录了对腹根刺激的逆向场电位(AFP)。腹根上的电极记录单突触反射(MSR)和电紧张性传入腹根的运动神经元中的单突触兴奋性突触后电位(VR-EPSP)。4. 静脉输注醋酸铵(AA)可逆地降低了MSR、VR-EPSP和FSP,即降低了兴奋性突触传递。5. VR-EPSP和FSP的降低最初伴随着传导的减少,最终伴随着低阈值传入纤维突触前终末的传导阻滞。6. VR-EPSP和FSP的降低还伴随着由振幅降低的VR-EPSP触发的反射放电的短暂出现,以及AFP的变化,表明逆向动作电位对运动神经元胞体的侵入增加。7. 有人提出NH4+使脊髓内Ia传入纤维和运动神经元去极化。这种去极化最初降低然后阻断动作电位向Ia传入纤维突触前终末的传导。传导阻滞阻止兴奋性递质的释放并降低兴奋性突触传递。8. 所提出的NH4+的去极化作用可能是由于NH4+类似K+的离子特性和/或对星形胶质细胞摄取K+的抑制。9. 低阈值传入纤维突触前终末的传导阻滞可以充分解释NH4+对兴奋性突触传递的降低作用。由于突触前终末的传导阻滞,本研究无法得出关于NH4+是否抑制将谷氨酰胺用作突触递质的谷氨酸前体利用的结论。

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引用本文的文献

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Oxidative stress and mitogen-activated protein kinase phosphorylation mediate ammonia-induced cell swelling and glutamate uptake inhibition in cultured astrocytes.氧化应激和丝裂原活化蛋白激酶磷酸化介导氨诱导的培养星形胶质细胞肿胀和谷氨酸摄取抑制。
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Effect of glutamine synthetase inhibition on astrocyte swelling and altered astroglial protein expression during hyperammonemia in rats.
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Increased extracellular brain glutamate in acute liver failure: decreased uptake or increased release?急性肝衰竭时细胞外脑谷氨酸水平升高:摄取减少还是释放增加?
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Hyperammonaemia does not impair brain function in the absence of net glutamine synthesis.在没有净谷氨酰胺合成的情况下,高氨血症不会损害脑功能。
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