Zamani M R, Desmond N L, Levy W B
Department of Neurological Surgery, University of Virginia Health System, Charlottesville, Virginia 22908, USA.
J Neurophysiol. 2000 Oct;84(4):1800-8. doi: 10.1152/jn.2000.84.4.1800.
Fluctuating estradiol levels in the adult, female rat modify the anatomical and functional organization of the hippocampal CA1 region. When systemic levels of estradiol are low, e.g., on estrus or in ovariectomized (OVX) rats, long-term synaptic potentiation is difficult to induce in vivo. However, little is known about the role of this ovarian hormone in long-term synaptic depression. Using multiple conditioning paradigms, we assess the magnitude of long-term depression (LTD) at CA3-CA1 synapses in vitro from adult, ovariectomized rats as a function of systemic estradiol replacement. In hippocampal slices from control OVX rats with low levels of estradiol, a low-frequency (2 Hz), asynchronous conditioning stimulation protocol does not produce LTD at 1 h postconditioning. However, this same protocol induces robust LTD in slices from estradiol-treated OVX rats. When the conditioning frequency is increased to 4 Hz, slices from both groups of rats show robust LTD in vitro. At an even higher conditioning frequency (10 Hz), the 2-Hz-based observations are reversed; no consistent changes in synaptic transmission are observed in slices from estradiol-treated OVX rats, but those from control rats (OVX + oil) show robust LTD. Thus estradiol reduces the frequency threshold for LTD induction at the CA3-CA1 synapses. Further, regardless of the conditioning frequency employed, where robust LTD is seen, its induction depends on normally functioning N-methyl-D-aspartate (NMDA) receptors during conditioning. The shift in conditioning frequency needed to elicit LTD is consistent with a decrease in NMDA receptor activation with decreasing estradiol levels.
成年雌性大鼠体内波动的雌二醇水平会改变海马CA1区的解剖结构和功能组织。当雌二醇的全身水平较低时,例如在发情期或去卵巢(OVX)大鼠中,体内很难诱导出长期突触增强。然而,关于这种卵巢激素在长期突触抑制中的作用,人们了解甚少。我们使用多种条件刺激范式,评估成年去卵巢大鼠体外CA3-CA1突触处长期抑制(LTD)的程度,作为全身雌二醇替代的函数。在雌二醇水平较低的对照OVX大鼠的海马切片中,低频(2 Hz)异步条件刺激方案在条件刺激后1小时不会产生LTD。然而,相同的方案在经雌二醇处理的OVX大鼠的切片中可诱导出强烈的LTD。当条件刺激频率增加到4 Hz时,两组大鼠的切片在体外均显示出强烈的LTD。在更高的条件刺激频率(10 Hz)下,基于2 Hz的观察结果相反;在经雌二醇处理的OVX大鼠的切片中未观察到突触传递的一致变化,但对照大鼠(OVX + 油)的切片显示出强烈的LTD。因此,雌二醇降低了CA3-CA1突触处LTD诱导的频率阈值。此外,无论采用何种条件刺激频率,只要观察到强烈的LTD,其诱导都依赖于条件刺激期间正常发挥作用的N-甲基-D-天冬氨酸(NMDA)受体。引发LTD所需的条件刺激频率的变化与随着雌二醇水平降低NMDA受体激活的减少一致。