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幼猫视觉皮层切片中的长时程增强及NMDA受体阻断的影响。

Long-term potentiation in slices of kitten visual cortex and the effects of NMDA receptor blockade.

作者信息

Bear M F, Press W A, Connors B W

机构信息

Department of Neuroscience, Brown University, Providence, Rhode Island 02912.

出版信息

J Neurophysiol. 1992 Apr;67(4):841-51. doi: 10.1152/jn.1992.67.4.841.

Abstract
  1. A slice preparation was used to study layer III field potentials (FPs) evoked by electrical stimulation of the white matter-layer VI border and their potentiation by patterned stimuli. 2. The dependence of the FP on recording position was investigated. The maximum field was recorded in layer III at a position radial to the site of stimulation. Because this negative FP reflects an excitatory synaptic current sink, this site was chosen for all subsequent experiments. 3. Under normal recording conditions, components of the layer III FP with latencies greater than 3 ms were completely abolished by kynurenate but unaffected by 2-amino-5-phosphonovalerate (AP5), indicating that this potential reflects the activation of non-NMDA excitatory amino acid receptors. 4. Addition of the gamma-aminobutyric acid (GABA)A receptor antagonist bicuculline methiodide (BMI) broadened the field potential and revealed an AP5-sensitive component. By filling the recording pipette with BMI, it was possible to substantially reduce inhibition locally around the recording site while avoiding stimulus-driven and spontaneous epileptiform activity. 5. Tetanic stimulation elicited a long-term potentiation (LTP) of the FP in 14 of 17 experiments when the BMI-filled pipette method was used. 6. Addition of 100 microM D,L-AP5 significantly reduced the average probability and magnitude of LTP. Nonetheless, in 2 of 8 experiments, significant LTP was observed after a tetanus in the presence of AP5. Control experiments confirmed that this concentration of AP5 was sufficient to maximally block cortical NMDA receptors. 7. We conclude that LTP of layer III field potentials can be reliably elicited, provided that GABAA-receptor mediated inhibition is blocked locally at the site of recording and that NMDA receptors are recruited during the conditioning stimulation. However, activation of NMDA receptors is apparently not an obligatory step for the induction of use-dependent increases in synaptic strength in the kitten striate cortex.
摘要
  1. 使用脑片制备技术来研究通过电刺激白质 - 六层边界所诱发的三层场电位(FPs),以及它们通过模式刺激的增强作用。2. 研究了场电位对记录位置的依赖性。在三层中,与刺激位点呈放射状的位置记录到最大场电位。由于这个负场电位反映了兴奋性突触电流汇,所以在所有后续实验中都选择了这个位点。3. 在正常记录条件下,三层场电位中潜伏期大于3毫秒的成分被犬尿烯酸完全消除,但不受2 - 氨基 - 5 - 磷酸戊酸(AP5)影响,这表明该电位反映了非NMDA兴奋性氨基酸受体的激活。4. 添加γ - 氨基丁酸(GABA)A受体拮抗剂甲基荷包牡丹碱(BMI)使场电位变宽,并揭示出一个对AP5敏感的成分。通过在记录电极中填充BMI,有可能在记录位点周围局部显著减少抑制作用,同时避免刺激驱动和自发性癫痫样活动。5. 当使用填充BMI的电极方法时,在17个实验中的14个实验中,强直刺激诱发了场电位的长时程增强(LTP)。6. 添加100微摩尔的D,L - AP5显著降低了LTP的平均概率和幅度。尽管如此,在8个实验中的2个实验中,在AP5存在的情况下,强直刺激后仍观察到显著的LTP。对照实验证实,该浓度的AP5足以最大程度地阻断皮质NMDA受体。7. 我们得出结论,只要在记录位点局部阻断GABAA受体介导的抑制作用,并且在条件刺激期间募集NMDA受体,就可以可靠地诱发三层场电位的LTP。然而,在小猫纹状皮质中,NMDA受体的激活显然不是诱导依赖使用的突触强度增加的必要步骤。

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