4.5 Article

Disease reciprocity between gingivitis and obesity

期刊

JOURNAL OF PERIODONTOLOGY
卷 91, 期 -, 页码 S26-S34

出版社

WILEY
DOI: 10.1002/JPER.20-0046

关键词

collagen; gingivitis; hydroxyproline; metabolomics; obesity

资金

  1. Colgate-Palmolive Company
  2. American Academy of Periodontology
  3. Dasman Institute of Kuwait [RA/065/2011, RA/005/2011]
  4. Dasman Diabetes Institute in Kuwait [RA/065/2011, RA/005/2011]

向作者/读者索取更多资源

Background Many diseases seem to affect each other. This is particularly true of periodontal diseases that relate to many systemic diseases. For this reason, this study investigated the relationship between obesity and gingivitis in children by focusing on plasma and salivary metabolomic biochemicals. Methods Whole saliva and plasma samples were taken from each of sixty-eight 11-year-old children afflicted by different degrees of both gingivitis and obesity. Gingivitis was evaluated as the percent of sites considered erythematous. Obesity was determined by waist circumference. Untargeted metabolomic analysis defined 29 biochemicals significantly correlated between saliva and plasma, which included the collagen breakdown amino acid hydroxyproline (Hyp). Two-sidedt-tests and regression analysis were performed to compare these data from children with obesity alone, gingivitis alone, both, and neither. Results Obese children exhibited signs of increased collagen turnover by being taller (14.4 cm) and having more permanent teeth (5.7). Analysis indicated a significant impact of obesity on gingivitis. Children with both diseases had 41.02% of gingival sites red whereas children with only obesity had 5.2% and children with only gingivitis had 19.16%. Hyp was increased in saliva by the combined presence of both diseases. The effects of gingivitis on obesity were in the same direction but generally not statistically significant. Conclusion Obesity clearly augments gingivitis. Data suggest that interaction between gingivitis and obesity may exhibit disease reciprocity in which activated neutrophils are mutually shared to create collagen destruction and Hyp release into both saliva and plasma.

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