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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Modulation of synaptic plasticity by physiological activation of M1 muscarinic acetylcholine receptors in the mouse hippocampus.
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Modulation of synaptic plasticity by physiological activation of M1 muscarinic acetylcholine receptors in the mouse hippocampus.

机译:通过生理激活小鼠海马中的M1毒蕈碱型乙酰胆碱受体来调节突触可塑性。

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摘要

The muscarinic acetylcholine receptor (mAChR) has been considered one of the neurotransmitter receptors regulating hippocampal synaptic plasticity, which likely plays a critical role in learning and memory. In previous studies, however, muscarinic agonists were used at relatively high concentrations, and the subtype selectivity of muscarinic antagonists was not satisfactory. Thus, it remains to be answered whether physiological levels of ACh are involved in the regulation of synaptic plasticity and which mAChR subtypes are responsible for such effects. We found in this study that a low concentration (50 nM) of carbachol enhanced long-term potentiation (LTP) of excitatory synaptic transmission in mouse hippocampal slices. Notably, this enhancing effect was abolished in M1 mAChR knock-out (KO) but not in M3 mAChR KO mice, although LTP itself was intact in both mutant mice. Furthermore, we found that repetitive stimulation in the stratum oriens, which presumably triggered the release of endogenous ACh from cholinergic terminals, could enhance LTP in wild-type mice but not in M1 mAChR KO mice. These results suggest that physiologically released ACh from cholinergic fibers modulates hippocampal synaptic plasticity through the postsynaptic M1 mAChR activation.
机译:毒蕈碱型乙酰胆碱受体(mAChR)被认为是调节海马突触可塑性的神经递质受体之一,可能在学习和记忆中起关键作用。然而,在先前的研究中,毒蕈碱激动剂以相对较高的浓度使用,毒蕈碱拮抗剂的亚型选择性并不令人满意。因此,尚需回答ACh的生理水平是否参与突触可塑性的调节以及哪些mAChR亚型负责这种作用。我们在这项研究中发现,低浓度(50 nM)的卡巴胆碱可增强小鼠海马切片中兴奋性突触传递的长期增强(LTP)。值得注意的是,尽管LTP本身在两个突变小鼠中均完好无损,但在M1 mAChR敲除(KO)中却没有消除这种增强作用,而在M3 mAChR KO小鼠中则没有。此外,我们发现在层层中的重复刺激(可能触发了胆碱能末端释放内源性ACh)可以增强野生型小鼠的LTP,但不能增强M1 mAChR KO小鼠的LTP。这些结果表明,从胆碱能纤维生理释放的乙酰胆碱通过突触后M1 mAChR激活来调节海马突触可塑性。

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