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首页> 外文期刊>American Journal of Physiology >Leptin depolarizes rat hypothalamic paraventricular nucleus neurons.
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Leptin depolarizes rat hypothalamic paraventricular nucleus neurons.

机译:瘦素使大鼠下丘脑室旁核神经元去极化。

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摘要

Leptin, the protein product of the ob/ob gene, is thought to have a central site of action, presumably within the hypothalamus, through which it regulates feeding behavior. THe paraventricular nucleus (PVN) is one structure that has been implicated in regulating feeding behavior. Using patch-clamp recording techniques, this study examines the direct membrane effects of leptin on neurons in a coronal PVN slice. Bath application of the physiologically active leptin fragment (amino acids 22-56) elicited dose-related depolarizations in 82% of the type I cells tested (n = 17) and 67% of the type II cells tested (n = 9). By contrast, the physiologically inactive leptin fragment (amino acids 57-92) had no discernible effect on membrane potential (n = 7). The effects of this peptide were unaffected following synaptic isolation of the cells by bath application of the sodium channel blocker tetrodotoxin (n = 5). Voltage clamp recordings in six cells demonstrated that leptin increased a nonspecific cation conductance with a reversal potential near -30 mV. These findings suggest that neurons in PVN may play an important role in the central neuronal circuitry involved in the physiological response to leptin.
机译:瘦素是ob / ob基因的蛋白质产物,被认为在下丘脑内有一个中心作用位点,通过它调节喂养行为。脑室旁核(PVN)是一种与调节进食行为有关的结构。使用膜片钳记录技术,这项研究检查了瘦素对冠状PVN切片中神经元的直接膜作用。生理活性瘦蛋白片段(氨基酸22-56)的沐浴应用在82%的I型细胞(n = 17)和67%的II型细胞(n = 9)中引起剂量相关的去极化作用。相比之下,生理上无活性的瘦素片段(氨基酸57-92)对膜电位没有明显影响(n = 7)。在通过突触分离钠通道阻断剂河豚毒素(n = 5)进行细胞突触分离后,该肽的作用不受影响。六个单元中的电压钳记录表明,瘦素增加了非特异性阳离子电导,其反向电位接近-30 mV。这些发现表明,PVN中的神经元可能在参与瘦素生理反应的中枢神经元回路中发挥重要作用。

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