IL-13 Gene Overexpression Blocks High-Fat Diet-Induced Obesity and Insulin Resistance
Research conducted by the University of Georgia has discovered that overexpression of the IL-13 gene can effectively prevent high-fat diet-induced obesity and insulin resistance in mice. The study aimed to assess the activity of anti-inflammatory cytokine IL-13 in blocking the negative effects of a high-fat diet on body weight, glucose homeostasis, and liver steatosis. The results suggest that suppressing diet-induced inflammation by IL-13 is a viable strategy in preventing diet-induced obesity and its associated health complications.
Key Takeaways:
- The study found that overexpression of the IL-13 gene prevented high-fat diet-induced weight gain without affecting food consumption in mice.
- Mice that underwent IL-13 gene transfer showed regular body weight and normal serum concentrations of glucose and insulin, and less lipid accumulation in the liver.
- The study blocked macrophage infiltration in adipose tissue and suppressed high-fat diet-induced expression of inflammatory genes, such as F4/80, Cd68, and Mcp1, while elevating the expression of Ucp1 (uncoupling protein 1 gene) responsible for energy expenditure.
- IL-13 blood protein levels were continuously monitored for 8 weeks, with the concentration decreasing over time.
- The study concluded that IL-13 overexpression blocked diet-induced obesity, insulin resistance, and fatty liver in mice.
- The research has implications for understanding the role of IL-13 in preventing diet-induced inflammation and associated health complications.
Statistics:
- The study monitored IL-13 blood protein levels in mice for 8 weeks.
- IL-13 blood protein levels declined with time, with a concentration of 20 ng ml(-1) 1 week after gene delivery.
- Mice that underwent IL-13 gene transfer showed a significant decrease in lipid accumulation in the liver (x).
- Serum concentrations of glucose and insulin were within normal ranges in mice treated with IL-13 gene transfer.
- The study found a significant reduction in macrophage infiltration in adipose tissue and expression of inflammatory genes in mice treated with IL-13 gene transfer.
Sources:
- Blocking high-fat diet-induced obesity, insulin resistance and fatty liver by overexpression of Il-13 gene in mice. International Journal of Obesity, 2015;39(8):1292-1299.
- Nature Publishing Group, Macmillan Building, 4 Crinan St, London N1 9XW, England (www.nature.com/; International Journal of Obesity - www.nature.com/ijo/)
- P. Darkhal, University of Georgia, Coll Pharm, Dept. of Pharmaceut & Biomed Sci, Athens, GA 30602, United States.