Solís H, Bravo J, Galindo-Morales J A
Laboratory of Physiology of Motor Control, National Institute of Neurology and Neurosurgery, México D.F.
Bol Estud Med Biol. 1992 Jan-Dec;40(1-4):49-56.
The majority of mechanisms proposed to explain epileptic discharge suggest an excessive synaptic input into the cell or possible changes in cellular excitability which result in a decreased firing threshold and in the presence of self-sustained activity. It is likely that these changes are caused by modifications in the membrane receptor sensitivity to a specific neurotransmitter. In view of the above, the purpose of the present study has been to evaluate the sensitivity of the postsynaptic receptor by means of the microiontophoretic applications of substances whose pharmacological effect is known, thus determining its possible involvement in the epileptic process. Changes in cortical excitability were induced by electric stimuli in the sensorimotor cortex of rats anesthetized with urethane (1 g/kg intraperitoneally), immobilized with pancuronium bromide and kept alive with mechanical respiration. The electric stimuli consisted of trains of biphasic pulses, each lasting one millisecond, with a frequency of 100 pps and with a train duration of 1 second. The response of the neuron to acetylcholine was evaluated before and after the kindling had been established. The dosage was measured in nanoamperes of microiontophoretic ejecting current. Extracellular field potentials were recorded with the central barrel of 4-barrel micropipettes. Peripheral barrels were used for iontophoretic applications of Acetylcholine (Ach .1, 1M), Atropine (25mM). One of these barrels containing NaCl (2M) was used for the automatic passage of balancing current.(ABSTRACT TRUNCATED AT 250 WORDS)
大多数用于解释癫痫放电的机制表明,细胞的突触输入过多或细胞兴奋性可能发生变化,这会导致放电阈值降低并出现自持活动。这些变化很可能是由膜受体对特定神经递质的敏感性改变引起的。鉴于上述情况,本研究的目的是通过微离子电泳施加已知药理作用的物质来评估突触后受体的敏感性,从而确定其可能参与癫痫过程的情况。通过电刺激在以氨基甲酸乙酯(1 g/kg腹腔注射)麻醉、用溴化潘库溴铵固定并用机械通气维持生命的大鼠的感觉运动皮层中诱导皮层兴奋性变化。电刺激由双相脉冲序列组成,每个脉冲持续一毫秒,频率为100次/秒,序列持续时间为1秒。在点燃建立前后评估神经元对乙酰胆碱的反应。剂量以微离子电泳喷射电流的纳安为单位测量。用4管微电极的中央管记录细胞外场电位。外周管用于乙酰胆碱(Ach.1,1M)、阿托品(25mM)的离子电泳应用。其中一个装有氯化钠(2M)的管用于平衡电流的自动通过。(摘要截断于250字)