Institute of Physiology, Medical School, University of Pécs, Pécs, Szigeti st. 12, H-7624, Hungary; Centre for Neuroscience, University of Pécs, Pécs, Ifjúság st. 20, H-7624, Hungary.
Institute of Physiology, Medical School, University of Pécs, Pécs, Szigeti st. 12, H-7624, Hungary; Centre for Neuroscience, University of Pécs, Pécs, Ifjúság st. 20, H-7624, Hungary.
Neurosci Biobehav Rev. 2018 Feb;85:44-53. doi: 10.1016/j.neubiorev.2017.04.024. Epub 2017 Apr 25.
Multiple functional attributes of glucose-monitoring neurons in the medial orbitofrontal (ventrolateral prefrontal) cortex. NEUROSCI BIOBEHAV REV 73(1) XXX-XXX, 2017.- Special chemosensory cells, the glucose-monitoring (GM) neurons, reportedly involved in the central feeding control, exist in the medial orbitofrontal (ventrolateral prefrontal) cortex (mVLPFC). Electrophysiological, metabolic and behavioral studies reveal complex functional attributes of these cells and raise their homeostatic significance. Single neuron recordings, by means of the multibarreled microelectrophoretic technique, elucidate differential sensitivities of limbic forebrain neurons in the rat and the rhesus monkey to glucose and other chemicals, whereas gustatory stimulations demonstrate their distinct taste responsiveness. Metabolic examinations provide evidence for alteration of blood glucose level in glucose tolerance test and elevation of plasma triglyceride concentration after destruction of the local GM cells by streptozotocin (STZ). In behavioral studies, STZ microinjection into the mVLPFC fails to interfere with the acquisition of saccharin conditioned taste avoidance, does cause, however, taste perception deficit in taste reactivity tests. Multiple functional attributes of GM neurons in the mVLPFC, within the frame of the hierarchically organized central GM neuronal network, appear to play important role in the maintenance of the homeostatic balance.
内侧眶额皮层(腹外侧前额叶)中葡萄糖监测神经元的多种功能属性。神经科学与生物行为评论 73(1)XXX-XXX, 2017.- 据报道,特殊的化学感觉细胞,即葡萄糖监测(GM)神经元,存在于内侧眶额皮层(腹外侧前额叶)(mVLPFC)中。电生理、代谢和行为研究揭示了这些细胞的复杂功能属性,并提高了它们的稳态意义。通过多桶微电泳技术的单细胞记录,阐明了大鼠和恒河猴边缘前脑神经元对葡萄糖和其他化学物质的不同敏感性,而味觉刺激则证明了它们对不同味觉的反应性。代谢研究为葡萄糖耐量试验中血糖水平的变化以及链脲佐菌素(STZ)破坏局部 GM 细胞后血浆甘油三酯浓度升高提供了证据。在行为研究中,将 STZ 微注射到 mVLPFC 中不会干扰蔗糖条件性味觉回避的获得,但会导致味觉反应测试中的味觉感知缺陷。mVLPFC 中的 GM 神经元具有多种功能属性,在分层组织的中枢 GM 神经元网络中,似乎在维持体内平衡方面发挥着重要作用。