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Opiates suppress a resting sodium-dependent inward current and activate an outward potassium current in locus coeruleus neurons

机译:阿片抑制静息钠依赖的内向电流并激活蓝斑神经元中的外向钾电流

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摘要

The opioid peptide met-enkephalin (met-ENK) produces an outward current with an increase in input conductance in locus coeruleus (LC) neurons. This current has been attributed to an opening of potassium channels. However, the opioid-induced current tends to reverse at potentials more negative than the expected potassium reversal potential (EK) or does not reverse at all. Since lack of reversal can occur if there is a simultaneous increase in one conductance and a decrease in a second conductance, we tested the possible contribution of a second conductance to the opioid-induced outward current in LC neurons. Biochemically, opiates inhibit adenylate cyclase in LC neurons and cAMP- active agents produce a sodium-dependent inward current in these neurons. This current is also present at rest, as sodium substitution hyperpolarizes LC neurons. By inhibiting adenylate cyclase, could opiates be turning off this current? To evaluate this possibility, we used intracellular voltage-clamp technique in rat LC slices, and studied the effect of sodium substitution on the opiate response. Replacement of external sodium (80%) with Tris or choline caused (1) an outward current with a decrease in input conductance and (2) an approximately 50% decrease in the met-ENK-induced outward current with a shift in its reversal potential toward EK. Extracellular Ba2+, a K+ channel blocker, also partially reduced the opiate response, but it shifted its reversal potential away from EK. The met-ENK-induced outward current was almost totally abolished by combined sodium substitution and extracellular Ba2+ in an additive manner.(ABSTRACT TRUNCATED AT 250 WORDS)
机译:阿片肽met-enkephalin(met-ENK)产生外向电流,并且在蓝斑(LC)神经元中输入电导增加。该电流归因于钾通道的开放。但是,阿片类药物诱导的电流倾向于以比预期的钾逆转电位(EK)更负的电位逆转或根本不逆转。由于如果同时增加一种电导和减少第二种电导会发生缺乏逆转的情况,我们测试了第二种电导对阿片类药物诱导的LC神经元外向电流的可能贡献。生化上,鸦片剂抑制LC神经元中的腺苷酸环化酶,而cAMP活性剂在这些神经元中产生钠依赖性内向电流。由于钠取代使LC神经元超极化,因此该电流也处于静止状态。通过抑制腺苷酸环化酶,鸦片剂可以关闭这种电流吗?为了评估这种可能性,我们在大鼠LC切片中使用了细胞内电压钳技术,并研究了钠替代对阿片类药物反应的影响。用Tris或胆碱代替外部钠(80%)会导致(1)输入电导率降低的外向电流,以及(2)met-ENK诱导的外向电流降低约50%,且其反转电位发生变化向EK。细胞外Ba2 +,一种K +通道阻滞剂,也部分减轻了鸦片的反应,但将其逆转潜力从EK转移了出去。钠取代和细胞外Ba2 +的加和作用几乎完全消除了met-ENK诱导的外向电流。(摘要截断为250字)

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