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Neuropeptide Y and peptide YY inhibit excitatory synaptic transmission in the rat dorsal motor nucleus of the vagus

机译:神经肽Y和肽YY抑制迷走神经大鼠背运动核中的兴奋性突触传递

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摘要

Pancreatic polypeptides (PPs) such as neuropeptide Y (NPY) and peptide YY (PYY) exert profound, vagally mediated effects on gastrointestinal (GI) motility and secretion. Whole-cell patch clamp recordings were made from brainstem slices containing identified GI-projecting rat dorsal motor nucleus of the vagus (DMV) neurons to determine the mechanism of action of PPs. Electrical stimulation of nucleus tractus solitarii (NTS) induced excitatory postsynaptic currents (EPSCs) that were reduced in a concentration-dependent manner by NPY and PYY (both at 0.1–300 nm) in 65 % of the neurons. An increase in the paired-pulse ratio without changes in the postsynaptic membrane input resistance or EPSC rise and decay time suggested that the effects of PPs on EPSCs were due to actions at presynaptic receptors. The Y1 and Y2 receptor selective agonists [Leu31,Pro34]NPY and NPY(3–36) (both at 100 nm) mimicked the inhibition of NPY and PYY on the EPSC amplitude. The effects of 100 nm NPY, but not PYY, were antagonized partially by the Y1 receptor selective antagonist BIBP3226 (0.1 μm). In addition, the inhibition of the EPSC amplitude induced by NPY, but not PYY, was attenuated partially by pretreatment with the α2 adrenoceptor antagonist yohimbine (10 μm), and occluded partially by the α2 adrenoceptor agonist UK14,304 (10 μm) as well as by pretreatment with reserpine. Pretreatment with a combination of BIBP3226 and yohimbine almost completely antagonized the NPY-mediated effects on EPSCs. Contrary to the inhibition of EPSCs, perfusion with PPs had no effect on the amplitude of inhibitory postsynaptic currents (IPSCs) and a minimal effect on a minority of DMV neurons. Differences in the receptor subtypes utilized and in the mechanism of action of NPY and PYY may indicate functional differences in their roles within the circuitry of the dorsal vagal complex (DVC).
机译:胰腺多肽(PPs),例如神经肽Y(NPY)和肽YY(PYY)对胃肠道(GI)的运动和分泌发挥着深远的,阴道介导的作用。全脑膜片钳记录是从脑干切片中提取的,该切片包含迷走神经(DMV)神经元的确定的GI投影大鼠背侧运动核,以确定PP的作用机理。电刺激孤束核(NTS)诱导兴奋性突触后电流(EPSC),其浓度依赖性地被NPY和PYY(均为0.1-300 nm)在65%的神经元中降低。在不改变突触后膜输入电阻或EPSC上升和衰减时间的情况下,配对脉冲比率的增加表明PP对EPSC的影响是由于对突触前受体的作用。 Y1和Y2受体选择性激动剂[Leu 31 ,Pro 34 ] NPY和NPY(3–36)(均在100 nm处)模仿了NPY和PYY的抑制作用EPSC振幅。 Y1受体选择性拮抗剂BIBP3226(0.1μm)部分拮抗了100 nm NPY而不是PYY的作用。此外,NPY诱导的对EPSC幅度的抑制作用,但PYY则不被抑制,部分通过用α2肾上腺素受体拮抗剂育亨宾(10μm)预处理而减弱,也部分地被α2肾上腺素受体激动剂UK14,304(10μm)所阻断。如用利血平预处理。用BIBP3226和育亨宾的组合进行的预处理几乎完全拮抗了NPY介导的对EPSC的作用。与EPSC的抑制相反,PP的灌注对抑制性突触后电流(IPSC)的幅度没有影响,而对少数DMV神经元的影响却很小。所利用的受体亚型以及NPY和PYY作用机制的差异可能表明其在背迷走神经复合体(DVC)回路中的作用具有功能差异。

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