首页> 美国卫生研究院文献>The Journal of Neuroscience >Vasoactive Intestinal Polypeptide and Pituitary Adenylate Cyclase-Activating Polypeptide Activate Hyperpolarization-Activated Cationic Current and Depolarize Thalamocortical Neurons In Vitro
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Vasoactive Intestinal Polypeptide and Pituitary Adenylate Cyclase-Activating Polypeptide Activate Hyperpolarization-Activated Cationic Current and Depolarize Thalamocortical Neurons In Vitro

机译:血管活性肠多肽和垂体腺苷酸环化酶激活多肽在体外激活超极化激活的阳离子电流并使丘脑皮层神经元去极化。

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摘要

Ascending pathways mediated by monoamine neurotransmitters regulate the firing mode of thalamocortical neurons and modulate the state of brain activity. We hypothesized that specific neuropeptides might have similar actions. The effects of vasoactive intestinal peptide (VIP) and pituitary adenylate cyclase-activating polypeptide (PACAP) were tested on thalamocortical neurons using whole-cell patch-clamp techniques applied to visualized neurons in rat brain slices. VIP (2 μm) and PACAP (100 nm) reversibly depolarized thalamocortical neurons (7.8 ± 0.6 mV; n = 16), reduced the membrane resistance by 33 ± 3%, and could convert the firing mode from bursting to tonic. These effects on resting membrane potential and membrane resistance persisted in the presence of TTX. Morphologically diverse thalamocortical neurons located in widespread regions of thalamus were all depolarized by VIP and PACAP38. In voltage-clamp mode, we found that VIP and PACAP38 reversibly activated a hyperpolarization-activated cationic current (IH) in thalamocortical neurons and altered voltage- and time-dependent activation properties of the current. The effects of VIP on membrane conductance were abolished by the hyperpolarization-activated cyclic-nucleotide-gated channel (HCN)-specific antagonist ZD7288, showing that HCN channels are the major target of VIP modulation. The effects of VIP and PACAP38 on HCN channels were mediated by PAC1 receptors and cAMP. The actions of PACAP-related peptides on thalamocortical neurons suggest an additional and novel endogenous neurophysiological pathway that may influence both normal and pathophysiological thalamocortical rhythm generation and have important behavioral effects on sensory processing and sleep–wake cycles.
机译:由单胺神经递质介导的上升途径调节丘脑皮质神经元的放电模式并调节大脑活动状态。我们假设特定的神经肽可能具有类似的作用。使用全细胞膜片钳技术对大鼠大脑切片中的可视化神经元进行了血管活性肠肽(VIP)和垂体腺苷酸环化酶激活多肽(PACAP)对丘脑皮层神经元的作用测试。 VIP(2μm)和PACAP(100 nm)可逆去极化丘脑皮质神经元(7.8±0.6 mV; n = 16),使膜电阻降低33±3%,并且可以将激发模式从爆裂转变为强直。在存在TTX的情况下,这些对静息膜电位和膜阻力的影响持续存在。 VIP和PACAP38使位于丘脑广泛区域的形态各异的丘脑皮质神经元全部去极化。在电压钳模式下,我们发现VIP和PACAP38可逆地激活丘脑皮层神经元中的超极化激活的阳离子电流(IH),并改变了电流的电压和时间依赖性激活特性。超极化激活的环核苷酸门控通道(HCN)特异性拮抗剂ZD7288消除了VIP对膜电导的影响,表明HCN通道是VIP调节的主要目标。 VIP和PACAP38对HCN通道的影响由PAC1受体和cAMP介导。 PACAP相关肽在丘脑皮质神经元上的作用表明,另外一种新颖的内源性神经生理学途径可能会影响正常和病理生理学的丘脑皮质节律的产生,并对感觉过程和睡眠-觉醒周期具有重要的行为影响。

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