| Literature DB >> 20411353 |
Shinjae Chung1, Timothy Wong, Hiroshi Nagasaki, Olivier Civelli.
Abstract
Melanin-concentrating hormone (MCH) is a hypothalamic neuropeptide which has been shown to regulate energy homeostasis. Using genetic knockout mice lacking the MCH1 receptor (MCH1R), we investigated how these mice adapt to metabolic changes caused by excessive caloric consumption. We show that the MCH system is one of the players mediating behavioral and metabolic responses upon increased caloric consumption. MCH1R knockout mice showed decreased tendency of food intake upon exposure to a high-fat diet. They also are resistant to gain weight upon high-fat diet by increasing fat metabolism. Therefore, the MCH system is important in regulating metabolic responses upon various environmental stimuli such as high-fat diet.Entities:
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Year: 2010 PMID: 20411353 PMCID: PMC2955453 DOI: 10.1007/s12031-010-9358-5
Source DB: PubMed Journal: J Mol Neurosci ISSN: 0895-8696 Impact factor: 3.444
Figure 1Food intake and feed efficiency of MCH1R knockout mice in response to switching from low-fat (LF) to high-fat (HF) diet. a Food intake pattern during low-fat diet (LF) and 0–24, 24–48, and 48–72 h after switching to a high-fat diet (HF) in WT (white bars) and MCH1R KO (black bars) mice (*p < 0.05, ***p < 0.001 compared to LF; +p < 0.05 compared to WT; two-way ANOVA followed by Bonferroni posttests for multiple comparisons). b Body weight gain in WT and MCH1R KO mice during 72 h of HF diet (***p < 0.001 compared to WT; unpaired t test). c Feed efficiency of WT and MCH1R KO mice during 72 h of HF consumption. Feed efficiency was calculated by dividing body weight gain with the amount of calories that each animal consumed over 72 h (***p < 0.001 compared to WT; unpaired t test)
Figure 2Oxygen consumption (VO ) and the respiratory exchange ratio (RER) of MCH1R knockout mice in response to switching from low-fat (LF) to high-fat (HF) diet. a VO2 in response to switching from low-fat diet to high-fat diet (**p < 0.01 compared to LF; two-way ANOVA followed by Bonferroni posttests for multiple comparisons). b RER in response to switching from low-fat to high-fat diet (*p < 0.05, **p < 0.01, ***p < 0.001 compared to LF; two-way ANOVA followed by Bonferroni posttests for multiple comparisons)