Literature DB >> 26399348

Intracerebroventricular injection of adiponectin regulates locomotor activity in rats.

Yumiko Miyatake1, Tetsuya Shiuchi, Tomoyo Ueta, Yasuko Taniguchi, Akari Futami, Fukiko Sato, Tadahiro Kitamura, Rie Tsutsumi, Nagakatsu Harada, Yutaka Nakaya, Hiroshi Sakaue.   

Abstract

Enhancing exercise motivation is the best way to prevent obesity and diabetes. In this study, we examined whether adiponectin affects locomotion activity in Wister and Spontaneously-Running Tokushima-Shikoku (SPORTS) rats using two types of behavioral assays: home cage and wheel running activity. SPORTS rats were established from an original line from Wister strain that had shown high level of wheel running activity in our laboratory. Injection of adiponectin into the lateral ventricle of Wister rats and SPORTS rats decreased home cage activity, but no change was observed in the food intake and oxygen consumption. This result indicates the possibility that adiponectin can reduce non-exercise activity thermogenesis (NEAT) and physical activity via the central nervous system. In contrast, injection of adiponectin did not change wheel running activity in SPORTS rats. We produced hypothalamus-destructed model rat using monosodium glutamate (MSG) to elucidate the regulation site of adiponectin. Injection of adiponectin into MSG-treated SPORTS rats did not change amount of home cage activity and food intake, suggesting that adiponectin action on home cage activity was in the hypothalamic area. These results suggest that adiponectin regulates locomotion activity through mediobasal hypothalamus.

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Year:  2015        PMID: 26399348     DOI: 10.2152/jmi.62.199

Source DB:  PubMed          Journal:  J Med Invest        ISSN: 1343-1420


  5 in total

1.  Adiponectin Protects against Glutamate-Induced Excitotoxicity via Activating SIRT1-Dependent PGC-1α Expression in HT22 Hippocampal Neurons.

Authors:  Liang Yue; Lei Zhao; Haixiao Liu; Xia Li; Bodong Wang; Hao Guo; Li Gao; Dayun Feng; Yan Qu
Journal:  Oxid Med Cell Longev       Date:  2016-11-30       Impact factor: 6.543

2.  Functional Changes Induced by Orexin A and Adiponectin on the Sympathetic/Parasympathetic Balance.

Authors:  Antonietta Messina; Marcellino Monda; Anna Valenzano; Giovanni Messina; Ines Villano; Fiorenzo Moscatelli; Giuseppe Cibelli; Gabriella Marsala; Rita Polito; Maria Ruberto; Marco Carotenuto; Vincenzo Monda; Andrea Viggiano; Aurora Daniele; Ersilia Nigro
Journal:  Front Physiol       Date:  2018-03-22       Impact factor: 4.566

Review 3.  The Role of Leptin and Adiponectin in Obesity-Associated Cognitive Decline and Alzheimer's Disease.

Authors:  Leticia Forny-Germano; Fernanda G De Felice; Marcelo Nunes do Nascimento Vieira
Journal:  Front Neurosci       Date:  2019-01-14       Impact factor: 4.677

4.  Recombinant adiponectin peptide promotes neuronal survival after intracerebral haemorrhage by suppressing mitochondrial and ATF4-CHOP apoptosis pathways in diabetic mice via Smad3 signalling inhibition.

Authors:  Xun Wu; Jianing Luo; Haixiao Liu; Wenxing Cui; Wei Guo; Lei Zhao; Hao Guo; Hao Bai; Kang Guo; Dayun Feng; Yan Qu
Journal:  Cell Prolif       Date:  2020-01-10       Impact factor: 6.831

5.  Leptin and adiponectin regulate the activity of nuclei involved in sleep-wake cycle in male rats.

Authors:  Oscar Daniel Ramírez-Plascencia; Nadia Saderi; Skarleth Cárdenas-Romero; Fabio García-García; Carolina Peña-Escudero; Omar Flores-Sandoval; Lucia Azuara-Álvarez; Adrián Báez-Ruiz; Roberto Salgado-Delgado
Journal:  Front Neurosci       Date:  2022-07-22       Impact factor: 5.152

  5 in total

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