Javascript must be enabled to continue!
Exercise prevents obesity by reducing gut-derived inflammatory signals to brown adipocytes in mice
View through CrossRef
Gut dysbiosis impairs nonshivering thermogenesis (NST) in obesity. The antiobesogenic effects of exercise training might involve the modulation of gut microbiota and its inflammatory signals to the brown adipose tissue (BAT). This study evaluated whether high-intensity interval training (HIIT) and moderate-intensity continuous training (MICT) prevent overweight through reduced gut-derived inflammatory signals to BAT in high-fat-fed mice. Sixty male C57BL/6 mice (3 months old) comprised six experimental groups: control (C) diet group, C diet + HIIT (C-HIIT) group, C diet + MICT (C-MICT) group, high-fat (HF) diet group, HF diet + HIIT (HF-HIIT) group, and HF diet + MICT (HF-MICT) group. The protocols lasted for 10 weeks. HIIT and MICT restored body mass, mitigated glucose intolerance, and prevented hyperinsulinemia in HF-trained groups. A chronic HF diet caused dysbiosis, but HIIT and MICT prevented gut dysbiosis and preserved tight junction (TJ) gene expression. HF-HIIT and HF-MICT groups exhibited a similar pattern of goblet cell distribution, agreeing with the decreased plasma lipopolysaccharide concentrations and interscapular BAT (iBAT)
Lbp
-
Cd14
-
Tlr4
expression. The lowered
Nlrp3
and
Il1β
in the HF-HITT and HF-MICT groups complied with iBAT thermogenic capacity maintenance. This study shows reliable evidence that HIIT and MICT prevented overweight by restoring the diversity of the gut microbiota phyla and TJ gene expression, thereby reducing inflammatory signals to brown adipocytes with preserved thermogenic capacity. Both exercise modalities prevented overweight, but HIIT rescued
Zo-1
and
Jam-a
gene expression, exerting more potent anti-inflammatory effects than MICT (reduced LPS concentrations), providing a sustained increase in thermogenesis with 78% less distance traveled.
Title: Exercise prevents obesity by reducing gut-derived inflammatory signals to brown adipocytes in mice
Description:
Gut dysbiosis impairs nonshivering thermogenesis (NST) in obesity.
The antiobesogenic effects of exercise training might involve the modulation of gut microbiota and its inflammatory signals to the brown adipose tissue (BAT).
This study evaluated whether high-intensity interval training (HIIT) and moderate-intensity continuous training (MICT) prevent overweight through reduced gut-derived inflammatory signals to BAT in high-fat-fed mice.
Sixty male C57BL/6 mice (3 months old) comprised six experimental groups: control (C) diet group, C diet + HIIT (C-HIIT) group, C diet + MICT (C-MICT) group, high-fat (HF) diet group, HF diet + HIIT (HF-HIIT) group, and HF diet + MICT (HF-MICT) group.
The protocols lasted for 10 weeks.
HIIT and MICT restored body mass, mitigated glucose intolerance, and prevented hyperinsulinemia in HF-trained groups.
A chronic HF diet caused dysbiosis, but HIIT and MICT prevented gut dysbiosis and preserved tight junction (TJ) gene expression.
HF-HIIT and HF-MICT groups exhibited a similar pattern of goblet cell distribution, agreeing with the decreased plasma lipopolysaccharide concentrations and interscapular BAT (iBAT)
Lbp
-
Cd14
-
Tlr4
expression.
The lowered
Nlrp3
and
Il1β
in the HF-HITT and HF-MICT groups complied with iBAT thermogenic capacity maintenance.
This study shows reliable evidence that HIIT and MICT prevented overweight by restoring the diversity of the gut microbiota phyla and TJ gene expression, thereby reducing inflammatory signals to brown adipocytes with preserved thermogenic capacity.
Both exercise modalities prevented overweight, but HIIT rescued
Zo-1
and
Jam-a
gene expression, exerting more potent anti-inflammatory effects than MICT (reduced LPS concentrations), providing a sustained increase in thermogenesis with 78% less distance traveled.
Related Results
Effects of Genistein on Differentiation and Viability of Human Visceral Adipocytes
Effects of Genistein on Differentiation and Viability of Human Visceral Adipocytes
Obesity can lead to pathological growth of adipocytes by inducing inflammation and oxidative stress. Genistein could be a potential candidate for the treatment of obesity due to it...
Scavenger receptor class B type I is required for efficient glucose uptake and metabolic homeostasis in adipocytes
Scavenger receptor class B type I is required for efficient glucose uptake and metabolic homeostasis in adipocytes
Abstract
Obesity is a worldwide epidemic and places individuals at a higher risk for developing comorbidities that include cardiovascular disease...
PO-180 Effect of Accumulated Exercise and Continuous Exercise on Energy Metabolism
PO-180 Effect of Accumulated Exercise and Continuous Exercise on Energy Metabolism
Objective Sedentary behavior is the main feature of modern lifestyle, which relate to most chronic diseases. Therefore, it has great significance in both theory and practice of w...
Abstract 353: High Density Lipoprotein Regulates Tumor Necrosis Factor Alpha and Jun Kinase Signaling Pathway in Adipocytes
Abstract 353: High Density Lipoprotein Regulates Tumor Necrosis Factor Alpha and Jun Kinase Signaling Pathway in Adipocytes
Background:
High-density lipoproteins (HDL) is presumed to exhibit cardiovascular protection, since HDL mediate the reverse transport of cholesterol and exhibit strong ...
Obstacles and Impediments of Overweight and Obesity
Obstacles and Impediments of Overweight and Obesity
Obesity is now pandemic, affecting millions of people in worldwide [1]. Obesity is defined as the excessive fat accumulation which may damage the health. Two groups of beneficial b...
PO-282 Effects Of Irises On Exercise To Improve Obesity
PO-282 Effects Of Irises On Exercise To Improve Obesity
Objective Iirisin is a protein encoded by the target gene FNDC5 of peroxisome proliferator-activated receptor gamma coactivator in skeletal muscle. The secretory protein produced b...
Abstract 173: Adipocytes-derived collagen reorganization in microenvironment promotes breast cancer progression
Abstract 173: Adipocytes-derived collagen reorganization in microenvironment promotes breast cancer progression
Abstract
Purposes
Breast cancer cells recruit surrounding stromal cells, such as cancer-associated fibroblasts (CAFs), to reorganize collagen and prom...
Identification and postnatal developmental characteristics of brown adipose tissue in yak calves
Identification and postnatal developmental characteristics of brown adipose tissue in yak calves
Abstract
Background
Brown adipose tissue (BAT) provides newborn mammals with a critical capacity f...

