Multiple functional attributes of glucose-monitoring neurons in the medial orbitofrontal (ventrolateral prefrontal) cortex
•Single unit recordings reveal chemical responsiveness of mVLPFC neurons.•GM neurons possess distinct endo- and exogenous chemosensitivities.•STZ microinjection into the mVLPFC alters glucose tolerance and triglyceride level.•STZ administration into the mVLPFC results in deficit of taste reactivity....
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Veröffentlicht in: | Neuroscience and biobehavioral reviews 2018-02, Vol.85, p.44-53 |
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Sprache: | eng |
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Zusammenfassung: | •Single unit recordings reveal chemical responsiveness of mVLPFC neurons.•GM neurons possess distinct endo- and exogenous chemosensitivities.•STZ microinjection into the mVLPFC alters glucose tolerance and triglyceride level.•STZ administration into the mVLPFC results in deficit of taste reactivity.•mVLPFC GM neurons are involved in the homeostatic control.
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. |
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ISSN: | 0149-7634 1873-7528 |
DOI: | 10.1016/j.neubiorev.2017.04.024 |