Central nesfatin-1-expressing neurons are sensitive to peripheral inflammatory stimulus

<p>Abstract</p> <p>Recently, a novel factor with anorexigenic properties was identified and called nesfatin-1. This protein (82 aac) is not only expressed in peripheral organs but it is also found in neurons located in specific structures including the hypothalamus and the brainste...

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Main Authors: Trouslard Jérôme, Pecchi Emilie, Bonnet Marion S, Jean André, Dallaporta Michel, Troadec Jean-Denis
Format: Article
Language:English
Published: BMC 2009-09-01
Series:Journal of Neuroinflammation
Online Access:http://www.jneuroinflammation.com/content/6/1/27
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spelling doaj-c22dd097af414d44bbebb7872b6781722020-11-25T01:17:54ZengBMCJournal of Neuroinflammation1742-20942009-09-01612710.1186/1742-2094-6-27Central nesfatin-1-expressing neurons are sensitive to peripheral inflammatory stimulusTrouslard JérômePecchi EmilieBonnet Marion SJean AndréDallaporta MichelTroadec Jean-Denis<p>Abstract</p> <p>Recently, a novel factor with anorexigenic properties was identified and called nesfatin-1. This protein (82 aac) is not only expressed in peripheral organs but it is also found in neurons located in specific structures including the hypothalamus and the brainstem, two sites strongly involved in food intake regulation. Here, we studied whether some of the neurons that become activated following an injection of an anorectic dose of lipopolysaccharides (LPS) exhibit a nesfatin-1 phenotype. To this end, we used double immunohistochemistry to target the expression of the immediate-early gene <it>c-fos </it>and of nesfatin-1 on coronal frozen sections of the rat brain. The number of c-Fos+/nesfatin-1+ neurons was evaluated in the immunosensitive structures reported to contain nesfatin-1 neurons; i.e. paraventricular hypothalamic nucleus (PVN), supraoptic nucleus (SON), arcuate nucleus (ARC) and nucleus of the solitary tract (NTS). LPS strongly increased the number of c-Fos+/nesfatin-1+ neurons in the PVN, SON and NTS, and to a lesser extent in the ARC. Triple labeling showed that a portion of the nesfatin-1 neurons activated in response to LPS within the NTS are catecholaminergic since they co-express tyrosine hydroxylase (TH). Our data therefore indicate that a portion of nesfatin-1 neurons of both the hypothalamus and brainstem are sensitive to peripheral inflammatory signals, and provide the first clues suggesting that centrally released nesfatin-1 may contribute to the neural mechanisms leading to endotoxaemic anorexia.</p> http://www.jneuroinflammation.com/content/6/1/27
collection DOAJ
language English
format Article
sources DOAJ
author Trouslard Jérôme
Pecchi Emilie
Bonnet Marion S
Jean André
Dallaporta Michel
Troadec Jean-Denis
spellingShingle Trouslard Jérôme
Pecchi Emilie
Bonnet Marion S
Jean André
Dallaporta Michel
Troadec Jean-Denis
Central nesfatin-1-expressing neurons are sensitive to peripheral inflammatory stimulus
Journal of Neuroinflammation
author_facet Trouslard Jérôme
Pecchi Emilie
Bonnet Marion S
Jean André
Dallaporta Michel
Troadec Jean-Denis
author_sort Trouslard Jérôme
title Central nesfatin-1-expressing neurons are sensitive to peripheral inflammatory stimulus
title_short Central nesfatin-1-expressing neurons are sensitive to peripheral inflammatory stimulus
title_full Central nesfatin-1-expressing neurons are sensitive to peripheral inflammatory stimulus
title_fullStr Central nesfatin-1-expressing neurons are sensitive to peripheral inflammatory stimulus
title_full_unstemmed Central nesfatin-1-expressing neurons are sensitive to peripheral inflammatory stimulus
title_sort central nesfatin-1-expressing neurons are sensitive to peripheral inflammatory stimulus
publisher BMC
series Journal of Neuroinflammation
issn 1742-2094
publishDate 2009-09-01
description <p>Abstract</p> <p>Recently, a novel factor with anorexigenic properties was identified and called nesfatin-1. This protein (82 aac) is not only expressed in peripheral organs but it is also found in neurons located in specific structures including the hypothalamus and the brainstem, two sites strongly involved in food intake regulation. Here, we studied whether some of the neurons that become activated following an injection of an anorectic dose of lipopolysaccharides (LPS) exhibit a nesfatin-1 phenotype. To this end, we used double immunohistochemistry to target the expression of the immediate-early gene <it>c-fos </it>and of nesfatin-1 on coronal frozen sections of the rat brain. The number of c-Fos+/nesfatin-1+ neurons was evaluated in the immunosensitive structures reported to contain nesfatin-1 neurons; i.e. paraventricular hypothalamic nucleus (PVN), supraoptic nucleus (SON), arcuate nucleus (ARC) and nucleus of the solitary tract (NTS). LPS strongly increased the number of c-Fos+/nesfatin-1+ neurons in the PVN, SON and NTS, and to a lesser extent in the ARC. Triple labeling showed that a portion of the nesfatin-1 neurons activated in response to LPS within the NTS are catecholaminergic since they co-express tyrosine hydroxylase (TH). Our data therefore indicate that a portion of nesfatin-1 neurons of both the hypothalamus and brainstem are sensitive to peripheral inflammatory signals, and provide the first clues suggesting that centrally released nesfatin-1 may contribute to the neural mechanisms leading to endotoxaemic anorexia.</p>
url http://www.jneuroinflammation.com/content/6/1/27
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