Weight loss and brown adipose tissue reduction in rat model of sleep apnea

<p>Abstract</p> <p>Background -</p> <p>Obesity is related to obstructive sleep apnea-hypopnea syndrome (OSAHS), but its roles in OSAHS as cause or consequence are not fully clarified. Isocapnic intermittent hypoxia (IIH) is a model of OSAHS. We verified the effect of II...

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Main Authors: de Oliveira Patricia G, Vasconcellos Luiz FT, Martinez Denis, Konrad Signorá P
Format: Article
Language:English
Published: BMC 2008-07-01
Series:Lipids in Health and Disease
Online Access:http://www.lipidworld.com/content/7/1/26
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spelling doaj-260aa6f0b10e48508ce5ea7d3e342b2e2020-11-24T23:05:19ZengBMCLipids in Health and Disease1476-511X2008-07-01712610.1186/1476-511X-7-26Weight loss and brown adipose tissue reduction in rat model of sleep apneade Oliveira Patricia GVasconcellos Luiz FTMartinez DenisKonrad Signorá P<p>Abstract</p> <p>Background -</p> <p>Obesity is related to obstructive sleep apnea-hypopnea syndrome (OSAHS), but its roles in OSAHS as cause or consequence are not fully clarified. Isocapnic intermittent hypoxia (IIH) is a model of OSAHS. We verified the effect of IIH on body weight and brown adipose tissue (BAT) of Wistar rats.</p> <p>Methods</p> <p>Nine-month-old male breeders Wistar rats of two groups were studied: 8 rats submitted to IIH and 5 control rats submitted to sham IIH. The rats were weighed at the baseline and at the end of three weeks, after being placed in the IIH apparatus seven days per week, eight hours a day, in the lights on period, simulating an apnea index of 30/hour. After experimental period, the animals were weighed and measured as well as the BAT, abdominal, perirenal, and epididymal fat, the heart, and the gastrocnemius muscle.</p> <p>Results</p> <p>Body weight of the hypoxia group decreased 17 ± 7 grams, significantly different from the variation observed in the control group (p = 0,001). The BAT was 15% lighter in the hypoxia group and reached marginally the alpha error probability (p = 0.054).</p> <p>Conclusion</p> <p>Our preliminary results justify a larger study for a longer time in order to confirm the effect of isocapnic intermittent hypoxia on body weight and BAT.</p> http://www.lipidworld.com/content/7/1/26
collection DOAJ
language English
format Article
sources DOAJ
author de Oliveira Patricia G
Vasconcellos Luiz FT
Martinez Denis
Konrad Signorá P
spellingShingle de Oliveira Patricia G
Vasconcellos Luiz FT
Martinez Denis
Konrad Signorá P
Weight loss and brown adipose tissue reduction in rat model of sleep apnea
Lipids in Health and Disease
author_facet de Oliveira Patricia G
Vasconcellos Luiz FT
Martinez Denis
Konrad Signorá P
author_sort de Oliveira Patricia G
title Weight loss and brown adipose tissue reduction in rat model of sleep apnea
title_short Weight loss and brown adipose tissue reduction in rat model of sleep apnea
title_full Weight loss and brown adipose tissue reduction in rat model of sleep apnea
title_fullStr Weight loss and brown adipose tissue reduction in rat model of sleep apnea
title_full_unstemmed Weight loss and brown adipose tissue reduction in rat model of sleep apnea
title_sort weight loss and brown adipose tissue reduction in rat model of sleep apnea
publisher BMC
series Lipids in Health and Disease
issn 1476-511X
publishDate 2008-07-01
description <p>Abstract</p> <p>Background -</p> <p>Obesity is related to obstructive sleep apnea-hypopnea syndrome (OSAHS), but its roles in OSAHS as cause or consequence are not fully clarified. Isocapnic intermittent hypoxia (IIH) is a model of OSAHS. We verified the effect of IIH on body weight and brown adipose tissue (BAT) of Wistar rats.</p> <p>Methods</p> <p>Nine-month-old male breeders Wistar rats of two groups were studied: 8 rats submitted to IIH and 5 control rats submitted to sham IIH. The rats were weighed at the baseline and at the end of three weeks, after being placed in the IIH apparatus seven days per week, eight hours a day, in the lights on period, simulating an apnea index of 30/hour. After experimental period, the animals were weighed and measured as well as the BAT, abdominal, perirenal, and epididymal fat, the heart, and the gastrocnemius muscle.</p> <p>Results</p> <p>Body weight of the hypoxia group decreased 17 ± 7 grams, significantly different from the variation observed in the control group (p = 0,001). The BAT was 15% lighter in the hypoxia group and reached marginally the alpha error probability (p = 0.054).</p> <p>Conclusion</p> <p>Our preliminary results justify a larger study for a longer time in order to confirm the effect of isocapnic intermittent hypoxia on body weight and BAT.</p>
url http://www.lipidworld.com/content/7/1/26
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