首页> 外文期刊>The Journal of Physiology >Age-dependent, steroid-specific effects of oestrogen on long-term potentiation in rat hippocampal slices.
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Age-dependent, steroid-specific effects of oestrogen on long-term potentiation in rat hippocampal slices.

机译:雌激素的年龄依赖性,类固醇特异性作用对大鼠海马切片的长期增强作用。

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1. Long-term potentiation (LTP) of hippocampal population spike responses and excitatory postsynaptic potentials (EPSPs) from area CA1 stratum pyramidale was induced in slices of rat hippocampus maintained in vitro following brief high-frequency stimulation (HFS) of the Schaffer collateral-commissural pathway. When administered to slices prior to HFS, 17beta-oestradiol (OE2), at a concentration as low as 0.1 nM, suppressed the magnitude of the resultant HFS-induced potentiation in slices from prepubertal animals (3 and 4 weeks old) of both sexes. 2. OE2 did not suppress the induction of LTP in slices taken from the hippocampus of adult animals of either sex. 3. There was no similar suppressant effect of 17alpha-oestradiol (OE1), progesterone (PRG) or testosterone (TST) on LTP in the young animals, even at a concentration 100 times greater than was effective for OE2. 4. The anti-oestrogen compound tamoxifen (TMX; 1.0 and 10.0 microM), which acts principally at intracellular binding sites within the nucleus, was without effect in diminishing the suppressant effect of OE2 on LTP in slices from young animals. 5. The LTP observed in slices from both 3-week-old and adult rats was AP5 sensitive and thus was shown to be dependent on activation of NMDA receptors. Results from whole-cell recording experiments suggested that OE2 caused the LTP-suppressant effect through an action on NMDA-mediated currents. 6. These data suggest an age-dependent and possibly a surface membrane receptor-mediated role for oestrogens in modulating the efficacy of input-output properties of CA1 neurones produced by HFS during a critical period in development.
机译:1.在短暂的高频刺激(HFS)对Schaffer侧支进行体外维持后,在体外维持的大鼠海马切片中诱导了CA1角锥体层海马区的长时程增强(LTP)和兴奋性突触后电位(EPSPs)。合路。当在HFS之前对切片给药时,浓度低至0.1 nM的17β-雌二醇(OE2)抑制了来自男女两性的青春期前动物(3周和4周大)的切片中所产生的HFS诱导的增强作用的幅度。 2. OE2不会抑制取自任何性别的成年动物海马的切片中LTP的诱导。 3.17α-雌二醇(OE1),孕酮(PRG)或睾丸激素(TST)对幼年动物的LTP没有类似的抑制作用,即使浓度比对OE2有效的浓度大100倍。 4.抗雌激素化合物他莫昔芬(TMX; 1.0和10.0 microM)主要作用于细胞核内的细胞内结合位点,而没有减弱OE2对年幼动物切片中LTP的抑制作用。 5.在3周龄和成年大鼠的切片中观察到的LTP对AP5敏感,因此显示依赖于NMDA受体的激活。全细胞记录实验的结果表明,OE2通过对NMDA介导的电流起作用而引起LTP抑制作用。 6.这些数据表明,雌激素在发育的关键时期调节HFS产生的CA1神经元的输入输出特性的功效时,年龄依赖于雌激素,并且可能是由表面膜受体介导的。

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