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Developmental changes in hypothalamic leptin receptor: relationship with the postnatal leptin surge and energy balance neuropeptides in the postnatal rat.

机译:下丘脑瘦素受体的发育变化:与出生后大鼠出生后瘦素激增和能量平衡神经肽的关系。

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摘要

In the adult brain, leptin regulates energy homeostasis primarily via hypothalamic circuitry that affects food intake and energy expenditure. Evidence from rodent models has demonstrated that during early postnatal life, leptin is relatively ineffective in modulating these pathways, despite the high circulating levels and the presence of leptin receptors within the central nervous system. Furthermore, in recent years, a neurotrophic role for leptin in the establishment of energy balance circuits has emerged. The precise way in which leptin exerts these effects, and the site of leptin action, is unclear. To provide a detailed description of the development of energy balance systems in the postnatal rat in relation to leptin concentrations during this time, endogenous leptin levels were measured, along with gene expression of leptin receptors and energy balance neuropeptides in the medial basal hypothalamus, using in situ hybridization. Expression of leptin receptors and both orexigenic and anorexigenic neuropeptides increased in the arcuate nucleus during the early postnatal period. At postnatal day 4 (P4), we detected dense leptin receptor expression in ependymal cells of the third ventricle (3V), which showed a dramatic reduction over the first postnatal weeks, coinciding with marked morphological changes in this region. An acute leptin challenge robustly induced suppressor of cytokine signaling-3 expression in the 3V of P4 but not P14 animals, revealing a clear change in the location of leptin action over this period. These findings suggest that the neurotrophic actions of leptin may involve signaling at the 3V during a restricted period of postnatal development.
机译:在成人大脑中,瘦素主要通过下丘脑回路调节能量稳态,这会影响食物摄入和能量消耗。啮齿动物模型的证据表明,在出生后早期,尽管中枢神经系统内循环水平高且存在瘦素受体,但瘦素在调节这些途径方面相对无效。此外,近年来,已经出现了瘦素在建立能量平衡回路中的神经营养作用。瘦素发挥这些作用的确切方式以及瘦素作用部位尚不清楚。为了详细描述这段时间内产后大鼠与瘦素浓度相关的能量平衡系统的发展,测量了内源性瘦素水平,以及内侧下丘脑中瘦素受体和能量平衡神经肽的基因表达,使用了原位杂交。在产后早期,弓形核中的瘦素受体以及致食性和厌食性神经肽的表达均增加。在出生后第4天(P4),我们在第三脑室(3V)的室管膜细胞中检测到了密集的瘦素受体表达,这在出生后的头几周显着减少,这与该区域的形态学变化相吻合。急性瘦素激发强烈诱导了P4动物(而非P14动物)的3V细胞因子信号转导3表达的抑制因子,揭示了在此期间瘦素作用位置的明显变化。这些发现表明,瘦素的神经营养作用可能涉及在产后发育的有限时期内在3V处发出信号。

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