4.6 Article

Diets enriched with coconut, fish, or olive oil modify peripheral metabolic effects of ozone in rats

期刊

TOXICOLOGY AND APPLIED PHARMACOLOGY
卷 410, 期 -, 页码 -

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.taap.2020.115337

关键词

Ozone; Fish-oil-enriched diet; Olive oil-enriched diet; Coconut-oil-enriched diet; Metabolic homeostasis

资金

  1. US EPA funds
  2. Fulbright (CONICYT) [CR83515201]
  3. EPA-UNC Cooperative Trainee Agreement [CR83515201]

向作者/读者索取更多资源

This study found that diets enriched with coconut oil, fish oil, or olive oil can modify ozone-induced metabolic changes in a diet-specific manner. Different types of dietary oils have different impacts on metabolic responses, potentially leading to alterations in peripheral energy homeostasis.
Dietary factors may modulate metabolic effects of air pollutant exposures. We hypothesized that diets enriched with coconut oil (CO), fish oil (FO), or olive oil (OO) would alter ozone-induced metabolic responses. Male Wistar-Kyoto rats (1-month-old) were fed normal diet (ND), or CO-, FO-, or OO-enriched diets. After eight weeks, animals were exposed to air or 0.8 ppm ozone, 4 h/day for 2 days. Relative to ND, CO- and OO-enriched diet increased body fat, serum triglycerides, cholesterols, and leptin, while all supplements increased liver lipid staining (00 > FO > CO). FO increased n-3, OO increased n-6/n-9, and all supplements increased saturated fattyacids. Ozone increased total cholesterol, low-density lipoprotein, branched-chain amino acids (BCAA), induced hyperglycemia, glucose intolerance, and changed gene expression involved in energy metabolism in adipose and muscle tissue in rats fed ND. Ozone-induced glucose intolerance was exacerbated by OO-enriched diet. Ozone increased leptin in CO- and FO-enriched groups; however, BCAA increases were blunted by FO and OO. Ozone-induced inhibition of liver cholesterol biosynthesis genes in ND-fed rats was not evident in enriched dietary groups; however, genes involved in energy metabolism and glucose transport were increased in rats fed FO and OO-enriched diet. FO- and OO-enriched diets blunted ozone-induced inhibition of genes involved in adipose tissue glucose uptake and cholesterol synthesis, but exacerbated genes involved in adipose lipolysis. Ozone-induced decreases in muscle energy metabolism genes were similar in all dietary groups. In conclusion, CO-, FO-, and OO-enriched diets modified ozone-induced metabolic changes in a diet-specific manner, which could contribute to altered peripheral energy homeostasis.

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