Hepatic gene expression related to lower plasma cholesterol in hamsters fed high-fat diets supplemented with blueberry peels and peel extract

Hyunsook Kim, Glenn E Bartley, Agnes M Rimando, Wallace Yokoyama
J Agric Food Chem . 2010 Apr 14;58(7):3984-91.

This study analyzed plasma lipid profiles, genes related to cholesterol and bile acid metabolism, and inflammation in liver as well as adipose tissue from Syrian Golden hamsters fed high-fat diets supplemented with blueberry (BB) pomace byproducts including 8% dried whole blueberry peels (BBPWHL), 2% dried extract of peels (BBPX; 95% ethanol extract), and 6% residue from extracted peel (BBPEXT) compared to a diet containing 5% (w/w) microcrystalline cellulose (control). All BB diets significantly lowered plasma very low density lipoprotein cholesterol and total cholesterol concentrations. Interestingly, BB diets increased fecal lipid excretion. Hepatic CYP7A1 expression was up-regulated by all BB diets, and the expression of CYP51 was up-regulated by BBPX and BBPEXT diets, suggesting that both bile acid and cholesterol synthesis were increased. No significant changes in adipocyte gene expression related to inflammatory markers were observed with any BB diet. These data suggest that hepatic modulation of bile acid and cholesterol synthesis primarily contributes to the cholesterol-lowering effect of BB pomace byproducts.

Latest Cardiovascular & Lipids


Blueberries and their bioactives in the modulation of oxidative stress, inflammation and cardio/vascular function markers: a systematic review of human intervention studies

Martini D, Marino M, Venturi S, Tucci M, Klimis-Zacas, Riso P, Porrini M, Del Bo C.
Read More

Protective Effects of Blueberries on Vascular Function: A Narrative Review of Preclinical and Clinical Evidence

Woolf EK, Lee SY, Ghanem N, Vazquez AR, Johnson SA
Nutr Res. 2023 Dec:120:20-57. doi: 10.1016/j.nutres.2023.09.007.
Read More

Daily Blueberry Consumption for 12 Weeks Improves Endothelial Function in Postmenopausal Women with Above-Normal Blood Pressure through Reductions in Oxidative Stress: A Randomized Controlled Trial

E. K. Woolf, J. D. Terwoord, N. S. Litwin, A. R. Vazquez, S. Y. Lee, N. Ghanem, K. A. Michell, B. T. Smith, L. E. Grabos, N. B. Ketelhut, N. P. Bachman, M. E. Smith, M. Le Sayec, S. Rao, C. Gentile, T. L. Weir, A. Rodriguez-Mateos, D.R. Seals, F. A. Dinenno and S. A. Johnson
Food Funct., 2023, DOI: 10.1039/D3FO00157A
Read More