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Thermal, osmotic and chemical modulation of neural activity in the paraventricular nucleus: In vitro studies
Authors:H Yamashita  K Inenaga  REJ Dyball
Institution:

1 Department of Physiology, University of Occupational and Environmental Health School of Medicine, Kitakyushu, 807, Japan

a Department of Anatomy, University of Cambridge, CB2 3DY, UK

Abstract:To investigate the functions of the paraventricular nucleus (PVN) which plays an important role as an integration site for the neuroendocrine and autonomic nervous systems, the firing activity of PVN neurons was recorded from hypothalamic slice preparations during thermal, osmotic and chemical stimulation. Neurons responded to environmental factors such as temperature and osmolarity and both warm-responsive and cold-responsive neurons were observed in the PVN. Some PVN neurons were also osmoresponsive and unlike neurons in the supraoptic nucleus, most osmoresponsive PVN neurons decreased their firing rate during hyperosmotic stimulation. One of the classical transmitters, noradrenaline, exerted excitatory effects on PVN neurons through greek small letter alpha1- and β-receptors and inhibitory responses through greek small letter alpha2-receptors. Atrial natriuretic polypeptide exerted inhibitory effects on putative parvocellular PVN neurons but it had no effect on putative magnocellular PVN neurons. An endogenous sugar derivative, 2-deoxytetronic acid, thought to be an endogenous satiety factor, elicited inhibitory effects, supporting the possibility that the PVN also may be related to feeding behaviour. Arginine-vasopressin and oxytocin which are synthesised in the magnocellular neurosecretory cells excited PVN neurons, suggesting that the PVN may have short circuits modulating neural activity within the nucleus itself. We conclude that neurons in the PVN may receive multiple information and act as one of the important integrative sites in the brain.
Keywords:Paraventricular nucleus  Thermosensitivity  Osmosensitivity  Noradrenaline  Vasopressin  Oxytocin  Angiotensin II  Atrial natriuretic polypeptide  2-Deoxytetronic acid
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