Bratincsák A, Kovács Z I, Palkovits M
Neuromorphological and Neuroendocrine Research Laboratory, Semmelweis University, Hungarian Academy of Sciences, Budapest, Hungary.
Neuroscience. 2008 Oct 28;156(4):966-72. doi: 10.1016/j.neuroscience.2008.08.038. Epub 2008 Aug 27.
The preoptic area orchestrates thermoregulatory responses in homeotherm animals and humans. This thermoregulatory center receives thermal information about core body and skin temperatures, and in turn, it induces thermogenic responses. The physiology of effector mechanisms has been described in detail outlining the brain areas participating in the execution of thermal responses. Previous studies have presented evidence of peripheral thermosensation, existence of skin thermoreceptors, participation of spinal and brainstem sensory neurons in thermal stress, but only recently has been identified the first evidence of an ascending neuronal pathway transmitting thermal signal to the preoptic thermoregulatory center. Nevertheless, a few brainstem areas have not been linked to an afferent or efferent thermal pathway and the neuronal network of thermoafferent signals has only partially been identified. In the present study, we identified a distinct ascending neuronal projection that originates from the thermoreactive cells of the peritrigeminal nucleus in the medulla oblongata, and projects to the thermoreactive cells of the medial preoptic area in the hypothalamus of rats. First, we have demonstrated retrogradely labeled thermoreactive neurons in the parabrachial, pontine and peritrigeminal cells following the injection of pseudorabies virus, a retrograde multi-synaptic tract tracer, into the ventrolateral subdivision of the medial preoptic area. Confirming the existence of a direct neuronal connection, we detected biotinylated dextran amine (BDA) containing axonal fibers and boutons around thermoreactive cells of the ventrolateral subdivision of the medial preoptic area after BDA injection into the peritrigeminal nucleus that is known to respond the temperature changes. Our findings indicate the existence of a so far unrecognized ascending direct neuronal pathway that transmits thermal signal from the lower brainstem to the thermoregulatory preoptic center.
视前区协调恒温动物和人类的体温调节反应。这个体温调节中枢接收有关核心体温和皮肤温度的热信息,进而引发产热反应。效应器机制的生理学已被详细描述,概述了参与热反应执行的脑区。先前的研究已经提供了外周热感觉、皮肤温度感受器的存在、脊髓和脑干感觉神经元在热应激中的参与的证据,但直到最近才首次发现了一条将热信号传递到视前体温调节中枢的上行神经元通路的证据。然而,一些脑干区域尚未与传入或传出热通路相关联,热传入信号的神经网络也只是部分被识别。在本研究中,我们确定了一条独特的上行神经元投射,它起源于延髓三叉神经周核的热反应细胞,并投射到大鼠下丘脑内侧视前区的热反应细胞。首先,我们在向内侧视前区腹外侧亚区注射伪狂犬病病毒(一种逆行多突触示踪剂)后,在臂旁核、脑桥和三叉神经周细胞中证实了逆行标记的热反应神经元。在向已知对温度变化有反应的三叉神经周核注射生物素化葡聚糖胺(BDA)后,我们在内侧视前区腹外侧亚区的热反应细胞周围检测到了含有BDA的轴突纤维和终扣,从而证实了直接神经元连接的存在。我们的研究结果表明存在一条迄今为止未被认识的上行直接神经元通路,它将热信号从脑干下部传递到体温调节视前中枢。