Departamento de Fisiología, Facultad de Ciencias Exactas y Naturales, Biología Molecular y Celular "Dr. Héctor Maldonado", Universidad de Buenos Aires, Ciudad de Buenos Aires, Argentina.
Instituto de Fisiología, Biología Molecular y Neurociencias (IFIBYNE), CONICET-Universidad de Buenos Aires, Intendente Güiraldes 2160, Ciudad Universitaria, C1428EGA, Ciudad Autónoma de Buenos Aires, Argentina.
Brain Struct Funct. 2018 Jun;223(5):2499-2514. doi: 10.1007/s00429-018-1645-x. Epub 2018 Mar 8.
Leptin is an adipose-derived hormone that controls appetite and energy expenditure. Leptin receptors are expressed on extra-hypothalamic ventrobasal (VB) and reticular thalamic (RTN) nuclei from embryonic stages. Here, we studied the effects of pressure-puff, local application of leptin on both synaptic transmission and action potential properties of thalamic neurons in thalamocortical slices. We used whole-cell patch-clamp recordings of thalamocortical VB neurons from wild-type (WT) and leptin-deficient obese (ob/ob) mice. We observed differences in VB neurons action potentials and synaptic currents kinetics when comparing WT vs. ob/ob. Leptin reduced GABA release onto VB neurons throughout the activation of a JAK2-dependent pathway, without affecting excitatory glutamate transmission. We observed a rapid and reversible reduction by leptin of the number of action potentials of VB neurons via the activation of large conductance Ca-dependent potassium channels. These leptin effects were observed in thalamocortical slices from up to 5-week-old WT but not in leptin-deficient obese mice. Results described here suggest the existence of a leptin-mediated trophic modulation of thalamocortical excitability during postnatal development. These findings could contribute to a better understanding of leptin within the thalamocortical system and sleep deficits in obesity.
瘦素是一种脂肪源性激素,可控制食欲和能量消耗。瘦素受体在胚胎期就表达于下丘脑外侧区(VB)和丘脑网状核(RTN)核。在这里,我们研究了通过压力喷雾局部应用瘦素对丘脑皮质切片中丘脑神经元的突触传递和动作电位特性的影响。我们使用来自野生型(WT)和瘦素缺乏肥胖(ob/ob)小鼠的丘脑皮质 VB 神经元的全细胞膜片钳记录。当比较 WT 与 ob/ob 时,我们观察到 VB 神经元动作电位和突触电流动力学的差异。瘦素通过激活依赖 JAK2 的途径,减少 GABA 对 VB 神经元的释放,而不影响兴奋性谷氨酸传递。我们观察到瘦素通过激活大电导钙依赖性钾通道,迅速而可逆地减少 VB 神经元的动作电位数量。这些瘦素作用仅在 WT 而非瘦素缺乏肥胖小鼠的丘脑皮质切片中观察到。这里描述的结果表明,在出生后发育过程中存在瘦素介导的对丘脑皮质兴奋性的营养调节。这些发现有助于更好地理解瘦素在丘脑皮质系统和肥胖睡眠不足中的作用。