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Effects of Gastrin-releasing Peptide on Hippocampal Neural Networks in Vascular Dementia Rats*

机译:胃泌素释放肽对血管性痴呆大鼠海马神经网络的影响 *

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Gastrin-releasing peptide (GRP) has been confirmed to exhibit a variety of physiological functions in the brain and play a role in many neurological diseases. Our previous research found that GRP could restore the impaired synaptic plasticity and the spatial learning and memory impairments induced by vascular dementia (VD). However, the specific mechanisms of GRP affecting hippocampus, especially the effects on the neuronal oscillations were still poorly understood. In this study, we examined the effects of GRP on the changes of the interactions between theta and gamma oscillations in the hippocampal CA3-CA1 pathway of VD rats and explored the potential electrophysiological mechanism. To this purpose, local field potentials (LFPs) simultaneously collected from hippocampal CA3 and CA1 were measured by the power spectrum, phase synchronization, phase-phase coupling (PPC) and phase-amplitude coupling (PAC). We found that GRP substantially restored the phase synchronization of the theta and gamma oscillations. The GRP also significantly improved the strength of theta-gamma cross-frequency coupling (including theta-gamma PPC and theta-gamma PAC) in the CA3-CA1 network. The results indicated that GRP could alleviate the changes of neural activities in hippocampal CA3-CA1 pathway induced by VD. This might be an electrophysiological mechanism for GRP preventing cognitive impairments induced by VD.
机译:胃泌素释放肽(GRP)已被证实在大脑中表现出多种生理功能,并在许多神经系统疾病中发挥作用。我们以前的研究发现,GRP可以恢复受损的突触可塑性和血管性痴呆(VD)引起的空间学习和记忆障碍。然而,GRP影响海马的具体机制,特别是对神经元振荡的影响仍知之甚少。在这项研究中,我们研究了GRP对VD大鼠海马CA3-CA1途径中theta和γ振荡之间相互作用的变化的影响,并探讨了其潜在的电生理机制。为此,通过功率谱,相位同步,相位-相位耦合(PPC)和相位-幅度耦合(PAC)测量了从海马CA3和CA1同时采集的局部电场电势(LFP)。我们发现,GRP基本上恢复了theta和gamma振荡的相位同步。 GRP还显着提高了CA3-CA1网络中theta-gamma跨频耦合(包括theta-gamma PPC和theta-gamma PAC)的强度。结果表明,GRP可以减轻VD诱导的海马CA3-CA1通路中神经活动的改变。这可能是GRP预防由VD引起的认知障碍的电生理机制。

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