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培养的小鼠脊髓和背根神经节神经元中的异质性钙电流与递质释放

Heterogeneous calcium currents and transmitter release in cultured mouse spinal cord and dorsal root ganglion neurons.

作者信息

Yu C, Lin P X, Fitzgerald S, Nelson P

机构信息

Laboratory of Developmental Neurobiology, National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, Maryland 20892.

出版信息

J Neurophysiol. 1992 Mar;67(3):561-75. doi: 10.1152/jn.1992.67.3.561.

Abstract
  1. Calcium currents and transmitter release were studied in cocultures of fetal mouse neurons from the ventral half of the spinal cord (VH neurons) and from dorsal root ganglion (DRG neurons). The effects of BayK 8644 and omega-conotoxin on calcium currents and transmitter release were compared. 2. The presence of low voltage-activated (LVA) calcium current in both VH and DRG neurons is variable. Some cells exhibit only high voltage-activated (HVA) currents, whereas others show both HVA and LVA currents. 3. BayK 8644 did not affect LVA currents but strongly augmented both steady and transient components of the HVA calcium conductance. 4. omega-Conotoxin GVIA reduces both transient and steady components of the HVA but does not abolish either component even after 3 h of application. 5. Calcium currents that were resistant to omega-contoxin were augmented by BayK 8644. 6. Synaptic transmission between pairs of spinal cord neurons from the ventral half of the spinal cord (VH-VH connections) or between dorsal root ganglion neurons and VH neurons (DRG-VH connections) were studied with two-cell recording and stimulation techniques. 7. In approximately 70% of VH-VH connections and 50% of DRG-VH connections, BayK 8644 or its active optical isomer failed to affect transmitter output. Substantial augmentation of the remainder of the connections could be reliably produced by the dihydropyridines. Raised calcium in the extracellular medium produced augmentation of synaptic connections in all cases. BayK 8644 produced substantial, consistent augmentation of voltage-sensitive calcium channels in both VH and DRG neurons. 8. The toxin, omega-conotoxin, produced no consistent effect on excitatory or inhibitory postsynaptic potentials (EPSPs or IPSPs) elicited in VH neurons by stimulation of nearby VH neurons. VH EPSPs elicited by stimulation of nearby DRG neurons were reduced to approximately 50% of control values after 10 min of omega-conotoxin perfusion. Spontaneous and evoked synaptic activity could be recorded in VH neurons as long as 2 h after cultures were incubated in 0.5 microM omega-conotoxin. omega-Conotoxin produced a modest reduction in HVA currents in both VH and DRG neurons. 9. BayK 8644 did not produce consistent augmentation of transmission at the frog neuromuscular junction. omega-Conotoxin produced total blockade of transmission in this preparation. 10. We conclude that neither sustained nor inactivating high-threshold voltage-sensitive (HVA) calcium channels sensitive to BayK 8644 or omega-conotoxin such as those measured in the neuronal cell bodies are responsible for action-potential-evoked transmitter release from the majority of VH neurons.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在来自脊髓腹侧半的胎鼠神经元(VH神经元)和背根神经节(DRG神经元)的共培养物中研究了钙电流和递质释放。比较了BayK 8644和ω-芋螺毒素对钙电流和递质释放的影响。2. VH和DRG神经元中低电压激活(LVA)钙电流的存在情况各不相同。一些细胞仅表现出高电压激活(HVA)电流,而其他细胞则同时表现出HVA和LVA电流。3. BayK 8644不影响LVA电流,但强烈增强了HVA钙电导的稳态和瞬态成分。4. ω-芋螺毒素GVIA降低了HVA的瞬态和稳态成分,但即使在应用3小时后也没有消除任何一个成分。5. 对ω-芋螺毒素有抗性的钙电流被BayK 8644增强。6. 用双细胞记录和刺激技术研究了来自脊髓腹侧半的脊髓神经元对之间(VH-VH连接)或背根神经节神经元与VH神经元之间(DRG-VH连接)的突触传递。7. 在大约70%的VH-VH连接和%的DRG-VH连接中,BayK 8644或其活性光学异构体未能影响递质输出。二氢吡啶类药物能可靠地使其余连接显著增强。细胞外培养基中钙升高在所有情况下都能增强突触连接。BayK 8644在VH和DRG神经元中均能使电压敏感性钙通道显著且持续增强。8. 毒素ω-芋螺毒素对附近VH神经元刺激在VH神经元中引发的兴奋性或抑制性突触后电位(EPSP或IPSP)没有一致的影响。在灌注ω-芋螺毒素10分钟后,由附近DRG神经元刺激引发的VH EPSP降低至对照值的约50%。在0.5微摩尔ω-芋螺毒素中培养后长达2小时,仍可在VH神经元中记录到自发和诱发的突触活动。ω-芋螺毒素在VH和DRG神经元中均使HVA电流适度降低。9. BayK 8644在蛙神经肌肉接头处并未使传递一致增强。ω-芋螺毒素在此制剂中使传递完全阻断。10. 我们得出结论:对BayK 8644或ω-芋螺毒素敏感的持续性或失活性高阈值电压敏感性(HVA)钙通道,如在神经元胞体中测量的那些通道,并非大多数VH神经元动作电位诱发递质释放的原因。(摘要截选至400字)

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