首页> 外文期刊>International journal of developmental neuroscience: the official journal of the International Society for Developmental Neuroscience >Mifepristone (RU486) inhibits lateral perforant path long-term potentiation in hippocampal slices from prenatally morphine-exposed female rats.
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Mifepristone (RU486) inhibits lateral perforant path long-term potentiation in hippocampal slices from prenatally morphine-exposed female rats.

机译:米非司酮(RU486)抑制产前暴露于吗啡的雌性大鼠海马切片中的侧穿孔路径长期增强。

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摘要

In brain slices from prenatally saline-exposed female rats during proestrus and diestrus, long-term potentiation (LTP) can be induced in the lateral perforant pathway (LPP). Prenatal morphine exposure suppresses LTP induction in the LPP during proestrus. Here we studied synaptic plasticity in the LPP in slices from female rats prenatally exposed to morphine. Two additional factors were investigated: the role of the estrous cycle and role of glucocorticoid receptors. Hippocampal slices were prepared from adult, prenatally saline- or morphine-exposed female rats. One hour prior to decapitation, vaginal smears were obtained and the rats either in proestrus or diestrus were treated with a non-specific glucocorticoid receptor antagonist mifepristone (RU486) or with a vehicle. LPP was stimulated with high-frequency stimulation. Short-tem plasticity (STP) and the induction and maintenance of long-term potentiation (LTP) were assessed. In all groups of prenatally saline-exposed rats, LTP was induced and maintained with the exception of RU486-treated rats during proestrus where the LTP was induced but not maintained. In prenatally morphine-exposed females in diestrus, both STP and LTP were induced after postnatal vehicle treatment. In morphine-exposed, proestrous females, neither STP nor LTP were induced irrespective of the postnatal treatment. Thus, prenatal morphine exposure suppresses the induction of LTP in the LPP, except during diestrus. Data indicate that the induction and maintenance of LTP in the LPP in hippocampal slices from female rats is multifactorial: ovarian steroids and functionality of glucocorticoid receptors cooperation are necessary for induction and maintenance of the LTP, prenatal morphine exposure interferes with this process possibly by its long-term effects on synaptic plasticity.
机译:在发情前期和二头肌期中,来自产前生理盐水暴露的雌性大鼠的脑片中,可以在侧向穿孔途径(LPP)中诱导长期增强(LTP)。产前吗啡暴露会抑制发情期LPP中LTP的诱导。在这里,我们研究了产前暴露于吗啡的雌性大鼠切片中LPP的突触可塑性。研究了另外两个因素:动情周期的作用和糖皮质激素受体的作用。从成年,暴露于盐水或吗啡的成年雌性大鼠制备海马切片。在断头之前一小时,获得阴道涂片,并用非特异性糖皮质激素受体拮抗剂米非司酮(RU486)或媒介物治疗处于发情期或发情期的大鼠。用高频刺激刺激LPP。评估了短期可塑性(STP)以及长期增强的诱导和维持(LTP)。在所有产前生理盐水暴露的大鼠组中,LTP被诱导和维持,除了在发情前被RU486处理的大鼠诱发L​​TP,但并未维持LTP。产后媒介物治疗后,在产前暴露于吗啡的雌性女性中,STP和LTP均被诱导。在暴露于吗啡的雌性雌激素中,无论产后治疗如何,均未诱导STP和LTP。因此,产前吗啡暴露抑制了LPP中LTP的诱导,除非在二头肌期间。数据表明,雌性大鼠海马切片中LPP中LTP的诱导和维持是多因素的:卵巢类固醇和糖皮质激素受体的功能协同对LTP的诱导和维持是必要的,产前吗啡暴露可能会干扰该过程的持续时间。对突触可塑性的长期影响。

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