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μ-Opioid receptor activation modulates CA3-to-CA1 gamma oscillation phase-coupling

机译:μ阿片受体激活可调节CA3至CA1伽马振荡相位耦合

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摘要

In the intact brain, hippocampal area CA1 alternates between low-frequency gamma oscillations (γ), phase-locked to low-frequency γ in CA3, and high-frequency γ, phase-locked to γ in the medial entorhinal cortex. In hippocampal slices, γ in CA1 is phase-locked to CA3 low-frequency γ. However, when Schaffer collaterals are cut, CA1 can generate its own high-frequency γ. Here we test whether (un)coupling of CA1 γ from CA3 γ can be caused by μ-opioid receptor (MOR) modulation.In CA1 minislices isolated from rat ventral hippocampus slices, MOR activation by DAMGO reduced the dominant frequency of intrinsic fast γ, induced by carbachol. In intact slices, DAMGO strongly reduced the dominant frequency of CA3 slow γ, but did not affect γ power consistently. DAMGO suppressed the phase coupling of CA1 γ to CA3 slow γ and increased the power of CA1 intrinsic fast γ, but not in the presence of the MOR antagonist CTAP. The benzodiazepine zolpidem and local application of DAMGO to CA3 both mimicked the reduction in dominant frequency of CA3 slow γ, but did not reduce the phase coupling. Local application of DAMGO to CA1 reduced phase coupling.These results suggest that MOR-expressing CA1 interneurons, feed-forwardly activated by Schaffer collaterals, are responsible for the phase coupling between CA3 γ and CA1 γ. Modulating their activity may switch the CA1 network between low-frequency γ and high-frequency γ, controlling the information flow between CA1 and CA3 or medial entorhinal cortex respectively.
机译:在完整的大脑中,海马区CA1在低频伽马振荡(γ)和CA3内的低频γ相位锁相和高频γ,在内侧内嗅皮层的γ相位锁相之间交替变化。在海马切片中,CA1中的γ锁相到CA3低频γ。但是,在切割Schaffer抵押品时,CA1可以生成自己的高频γ。在这里,我们测试了CA1γ与CA3γ的(非)偶联是否可能是由μ阿片受体(MOR)调节引起的。由卡巴胆碱诱导。在完整切片中,DAMGO大大降低了CA3慢γ的主导频率,但并未持续影响γ功率。 DAMGO抑制了CA1γ与CA3慢γ的相位耦合,并增加了CA1固有快γ的功率,但在MOR拮抗剂CTAP的存在下没有。苯二氮卓唑酯和DAMGO在CA3上的局部应用都模仿了CA3慢γ的主频降低,但并未降低相位耦合。 DAMGO在CA1上的局部应用降低了相耦合。这些结果表明,由Schaffer侧支前馈激活的表达MOR的CA1中神经元负责CA3γ和CA1γ之间的相耦合。调节它们的活动可能会在低频γ和高频γ之间切换CA1网络,分别控制CA1和CA3之间或内侧内嗅皮层之间的信息流。

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