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Published on: April 4, 2012
Metabolic endotoxaemia in childhood obesity
Madhusudhan C Varma1, Christine M Kusminski1, Sahar Azharian1
1Division of Biomedical sciences,, Warwick Medical School, University of Warwick, UHCW Trust, Clifford Bridge Road, Walsgrave, Coventry CV2 2DX UK.
Insights
Childhood obesity is linked to higher endotoxin levels, a marker of inflammation and vascular injury. This suggests endotoxin may contribute to future type 2 diabetes and cardiovascular disease risk in children.
Area of Science:
- Pediatric Endocrinology
- Metabolic Disease Research
- Inflammation and Immunology
Background:
- Childhood obesity is associated with chronic low-grade inflammation, a precursor to metabolic disease.
- The role of gut-derived lipopolysaccharide (endotoxin) in childhood obesity-related inflammation is unclear.
- This study investigates the link between circulating endotoxin and inflammatory/cardiovascular biomarkers in obese children.
Purpose of the Study:
- To determine the association between circulating endotoxin levels and biomarkers of inflammation and cardiovascular injury in childhood obesity.
- To explore potential mechanisms linking gut microbiota to metabolic dysfunction in pediatric obesity.
Main Methods:
- Blood samples were collected from 60 obese children (mean age 13.9 years, BMI 35.1 kg/m²).
- Multiplex immunoassay was used to measure endotoxin and various inflammatory/vascular injury biomarkers (e.g., TNF-α, IL-6, PAI-1, sICAM-1, MMP-9, MPO, VEGF).
Main Results:
- Endotoxin levels positively correlated with markers of inflammation, vascular injury, and atherogenesis (e.g., TNF-α, PAI-1, sICAM-1, MMP-9, MPO, VEGF).
- Males exhibited significantly higher circulating endotoxin levels than females.
- Significant correlations were observed between endotoxin and key biomarkers (p < 0.05).
Conclusions:
- A significant association exists between circulating endotoxin and metabolic risk biomarkers in children.
- Endotoxin-mediated inflammation in childhood obesity may be a critical factor in the development of type 2 diabetes and cardiovascular disease later in life.
Background:
Childhood obesity is associated with chronic low-grade inflammation considered as a precursor to metabolic disease; however, the underlying mechanisms for this remain unclear. Studies in adults have implicated gut derived gram-negative bacterial fragments known as lipopolysaccharide or endotoxin, activating the inflammatory response, whilst the importance in childhood obesity is unclear. The aim of this research is to understand the relationship between circulating endotoxin in childhood obesity, and its' association with inflammatory and cardiovascular (CV) injury biomarkers.
Methods:
Fasted blood was obtained from children with varying degrees of obesity (age: 13.9 ± 2.3Yr; BMI: 35.1 ± 5.2 Kg/m(2); n = 60). Multiplex CVD biomarker immunoassays were used to determine systemic levels of inflammatory and vascular injury biomarkers, such as tumour necrosis factor-α (TNF-α), interleukin (IL-) 1β, 6, 8 and 10, plasminogen activator inhibitor-1 (PAI-1), soluble intercellular adhesion molecule type-1 (sICAM-1), matrix metalloproteinase-9 (MMP-9), myeloperoxidase (MPO) and vascular endothelial growth factor (VEGF) as well as endotoxin levels.
Results:
Endotoxin levels demonstrated a significant and positive correlation with the markers for inflammation, vascular injury and atherogenesis (TNF-α: r(2) = 0.077, p < 0.05; PAI-1: r(2) = 0.215, p < 0.01; sICAM-1: r(2) = 0.159, p < 0.01; MMP-9: r(2) = 0.159, p < 0.01; MPO: r(2) = 0.07, p < 0.05; VEGF: r(2) = 0.161, p < 0.01). Males demonstrated significantly higher circulating endotoxin than females (Males: 9.63 ± 5.34 EU/ml; p = 0.004; Females: 5.56 ± 4.06 EU/ml; n = 60) in these BMI and age-matched cohorts.
Conclusion:
The present study demonstrates for the first time a significant association between circulating endotoxin and biomarkers of metabolic risk in children as young as 11 years. Thus, endotoxin-mediated sub-clinical inflammation during childhood obesity may be a key contributor to T2DM and CVD development later in life.
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