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The potency of mu-opioid hyperpolarization of hypothalamic arcuate neurons is rapidly attenuated by 17 beta-estradiol

机译:下丘脑弓形神经元的mu阿片类药物超极化的能力被17β-雌二醇迅速减弱

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摘要

The mu-opioid agonist DAMGO (Tyr-D-Ala-Gly-MePhe-Gly-ol) hyperpolarizes the majority of arcuate hypothalamic (ARC) neurons by opening an inwardly rectifying potassium conductance. The EC50 for the DAMGO- induced hyperpolarization was 60 +/- 3 nM in ARC neurons from ovariectomized guinea pigs. Superfusion of 17 beta-estradiol (E2; 100 nM) for 20 min in vitro resulted in a significant decrease in DAMGO potency (EC50 = 212 +/- 16 nM) in 40% of the neurons that were tested. This rapid effect of E2 on the mu-opioid response was not mimicked by the biologically inactive isomer 17 alpha-estradiol. Multiple concentrations of E2 were used to generate an E2 concentration-response curve, with an EC50 of 9 nM and a maximal increase in the DAMGO EX50 of 411% of controls. The membrane properties and firing rate of E2- sensitive and E2-insensitive neurons were not different. Streptavidin- FITC labeling did not reveal any significant morphological differences between the groups, but a higher number of E2-sensitive cells was found in the lateral ARC and cell-poor zone. Moreover, immunocytochemical staining of the recorded cells revealed that beta-endorphin neurons were among those sensitive to E2. Therefore, E2 could increase beta- endorphin release by decreasing the potency of beta-endorphinergic autoinhibition, thus increasing the tonic opioid inhibition of E2- insensitive cells. Furthermore, the diffuse projections of hypothalamic beta-endorphin neurons would allow E2 to alter processes throughout the brain, as well as having local effects in the hypothalamus.
机译:μ阿片类激动剂DAMGO(Tyr-D-Ala-Gly-MePhe-Gly-ol)通过向内整流钾电导来使大多数弓形下丘脑(ARC)神经元超极化。 DAMGO诱导的超极化的EC50在去卵巢的豚鼠的ARC神经元中为60 +/- 3 nM。在体外对17β-雌二醇(E2; 100 nM)进行20分钟的过度融合会导致40%的神经元DAMGO效能显着降低(EC50 = 212 +/- 16 nM)。 E2对mu阿片类药物反应的这种快速作用并未被无生物活性的异构体17α-雌二醇所模仿。使用多种浓度的E2生成E2浓度-响应曲线,EC50为9 nM,DAMGO EX50的最大增加为对照组的411%。 E2敏感和E2不敏感的神经元的膜性质和放电速率无差异。链霉亲和素-FITC标记未显示两组之间的任何显着形态差异,但在外侧ARC和细胞贫乏区发现了更多的E2敏感细胞。此外,记录细胞的免疫细胞化学染色显示,β-内啡肽神经元属于对E2敏感的神经元。因此,E2可以通过降低β-内啡肽能自抑制的效力来增加β-内啡肽的释放,从而增加对E2-不敏感细胞的强力阿片样物质的抑制作用。此外,下丘脑β-内啡肽神经元的弥散投射将使E2改变整个大脑的过程,并对下丘脑产生局部影响。

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