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大鼠脊髓胶状质神经元体外膜特性

Membrane properties of rat substantia gelatinosa neurons in vitro.

作者信息

Yoshimura M, Jessell T M

机构信息

Howard Hughes Medical Institute, Columbia University, College of Physicians and Surgeons, New York, New York 10032.

出版信息

J Neurophysiol. 1989 Jul;62(1):109-18. doi: 10.1152/jn.1989.62.1.109.

DOI:10.1152/jn.1989.62.1.109
PMID:2754464
Abstract
  1. The membrane properties of substantia gelatinosa (SG) neurons in an in vitro adult rat transverse spinal cord slice preparation with attached dorsal root have been examined. Intracellular recordings were obtained from identified SG neurons. 2. Seventy-six percent of SG neurons exhibited a time-dependent anomalous rectification (AR) when the membrane was hyperpolarized from the resting potential. The time-dependent AR was blocked by cesium (Cs+, 2 mM) but not by barium (Ba2+, 2 mM). Application of Cs+ itself caused membrane hyperpolarization in those SG neurons that expressed the time-dependent AR. The activation of the time-dependent AR was maximal at potentials 5-10 mV below the resting membrane potential. 3. In a few SG neurons, the current-voltage relationship revealed a marked inward rectification, even though there was no detectable time-dependent anomalous rectification during hyperpolarization. Analysis of the Ba2+- and Cs+-sensitivity of these neurons confirmed that SG neurons expressed two distinct ARs, one of which is fast and Ba2+-sensitive and the other of which is time-dependent and Ba2+-insensitive. 4. Fifty-one percent of SG neurons exhibited a transient outward rectification when hyperpolarizing current pulses were applied from potentials more positive than -60 mV or when depolarizing pulses were applied from potentials more negative than -65 mV. The transient outward rectification persisted for 0.3-2 s when hyperpolarizing pulses were applied at -55 mV. 5. The transient outward rectification was associated with a decrease in membrane resistance and was enhanced in low K+ solutions. 4-aminopyridine (4-AP, 2 mM) reversibly blocked the transient outward rectification. 6. The time-dependent anomalous and transient outward rectifying currents exerted opposite effects on the firing properties of SG neurons. Activation of the time-dependent AR increased neuronal excitability. In neurons that exhibited the time-dependent AR, membrane depolarization caused the appearance of a rebound depolarization that resulted in the generation of spikes with only a short delay after application of the depolarizing pulse. In contrast, the transient outward rectifying current markedly delayed spike firing in response to depolarizing pulses. This delay was blocked by application of 4-AP. 7. The diversity in response properties of subpopulations of SG neurons may result in part from this heterogeneity in membrane properties.
摘要
  1. 对带有背根的成年大鼠离体横向脊髓切片制备中的胶状质(SG)神经元的膜特性进行了研究。从已识别的SG神经元获得细胞内记录。2. 当膜从静息电位超极化时,76%的SG神经元表现出时间依赖性反常整流(AR)。时间依赖性AR被铯(Cs+,2 mM)阻断,但不被钡(Ba2+,2 mM)阻断。在那些表现出时间依赖性AR的SG神经元中,施加Cs+本身会导致膜超极化。时间依赖性AR的激活在比静息膜电位低5 - 10 mV的电位时最大。3. 在少数SG神经元中,电流 - 电压关系显示出明显的内向整流,尽管在超极化期间没有可检测到的时间依赖性反常整流。对这些神经元的Ba2+和Cs+敏感性分析证实,SG神经元表达两种不同的AR,其中一种是快速且对Ba2+敏感的,另一种是时间依赖性且对Ba2+不敏感的。4. 当从比 - 60 mV更正的电位施加超极化电流脉冲时,或者当从比 - 65 mV更负的电位施加去极化脉冲时,51%的SG神经元表现出瞬时外向整流。当在 - 55 mV施加超极化脉冲时,瞬时外向整流持续0.3 - 2秒。5. 瞬时外向整流与膜电阻降低有关,并且在低钾溶液中增强。4 - 氨基吡啶(4 - AP,2 mM)可逆地阻断瞬时外向整流。6. 时间依赖性反常和瞬时外向整流电流对SG神经元的放电特性产生相反的影响。时间依赖性AR的激活增加神经元兴奋性。在表现出时间依赖性AR的神经元中,膜去极化导致出现反弹去极化,这导致在施加去极化脉冲后仅短延迟就产生动作电位。相反,瞬时外向整流电流显著延迟对去极化脉冲的动作电位发放。这种延迟被施加4 - AP阻断。7. SG神经元亚群反应特性的多样性可能部分源于这种膜特性的异质性。

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