References
- A. P. Simopoulos, "The importance of the ratio of omega-6/omega-3 essential fatty acids", Biomed. Pharmacother, Vol. 56, pp. 365-379, (2002). https://doi.org/10.1016/S0753-3322(02)00253-6
- A. P. Simopoulos, "An increase in the omega-6/omega-3 fatty acid ratio increases the risk for obesity", Nutrients, Vol. 8, pp. 128-135, (2016). https://doi.org/10.3390/nu8030128
- G. Schmitz, J. Ecker, "The opposing effects of n-3 and n-6 fatty acids", Prog. Lipid Res, Vol. 47, pp. 147-155, (2008). https://doi.org/10.1016/j.plipres.2007.12.004
- C. Gomez-Candela, L. M. Bermejo Lopez, V. Loria-Kohen, "Importance of a balanced omega-6/omega-3 ratio for the maintenance of health, Nutritional Recommendations", Nutr. Hosp, Vol. 26, pp. 323-329, (2011).
- K. S. Husted, E. V. Bouzinova, "The importance of n-6/n-3 fatty acids ratio in the major depressive disorder", Medicina, Vol. 52, pp. 139-147, (2016). https://doi.org/10.1016/j.medici.2016.05.003
- A. P. Simopoulos, "Importance of the ratio of omega-6/omega-3 essential fatty acids: evolutionary aspects", World Rev. Nutr. Diet, Vol. 92, pp. 1-22, (2003).
- A. P. Simopoulos, "The importance of the omega-6/omega-3 fatty acid ratio in cardiovascular disease and other chronic diseases", Exp. Biol. Med, Vol. 233, pp. 674-688, (2008). https://doi.org/10.3181/0711-MR-311
- M. C. Rudolph, B. E. Young, D. J. Lemas, C. E. Palmer, T. L. Hernandez, L. A. Barbour, J. E. Friedman, N. F. Krebs, P. S. MacLean, "Early infant adipose deposition is positively associated with the n-6 to n-3 fatty acid ratio in human milk independent of maternal BMI", Int. J. Obes, Vol. 41, pp. 510-517, (2017). https://doi.org/10.1038/ijo.2016.211
- B. M. Spiegelman, J. S. Flier, "Obesity and the regulation of energy balance", Cell, Vol. 104, pp. 531-543, (2001). https://doi.org/10.1016/S0092-8674(01)00240-9
- J. M. Friedman, "Modern science versus the stigma of obesity", Nat. Med, Vol. 10, pp. 563-569, (2004). https://doi.org/10.1038/nm0604-563
- S. M. Sternson, B. J. Nicholas, Z. F. Cao, "Neural circuits and motivational processes for hunger", Curr. Opin. Neurobiol, Vol. 23, pp. 353-360, (2013). https://doi.org/10.1016/j.conb.2013.04.006
- H. Q. Liu, Y. Qiu, Y. Mu, X. J. Zhang, L. Liu, X. H. Hou, L. Zhang, X. N. Xu, A. L. Ji, R. Cao, R. H. Yang, F. Wang, "A high ratio of dietary n-3/n-6 polyunsaturated fatty acids improves obesity-linked inflammation and insulin resistance through suppressing activation of TLR4 in SD rats", Nutr. Res, Vol. 33, pp. 849-858, (2013). https://doi.org/10.1016/j.nutres.2013.07.004
- L. I. Yang, Z. X. Song, W. Cao, Y. Y. Wang, H. X. Lu, F. Guo, H. Yang, J. Chen, S. K. Wang, G. J. Sun, "Effects of diets with different omega-6/omega-3 fatty acids on cardiovascular risk factors in mice fed high-fat diets", Wei Sheng Yan Jiu, Vol. 45, pp. 436-441, (2016).
- L. I. Yang, Z. X. Song, H. Yin, Y. Y. Wang, G. F. Shu, H. X. Lu, S. K. Wang, G. J. Sun, "Low omega-6/omega-3 PUFA ratio improves lipid metabolism, inflammation, oxidative stress and endothelial function in rats using plant oils as omega 3 fatty acid source", Lipids, Vol. 51, pp. 49-59, (2016). https://doi.org/10.1007/s11745-015-4091-z
- A. M. El-Badry, R. Graf, P. A. Clavien, "Omega 3-Omega 6: What is right for the liver?", J. Hepatol, Vol. 47, pp. 718-725, (2007). https://doi.org/10.1016/j.jhep.2007.08.005
- K. Bhardwaj, N. Verma, R. K. Trivedi, S. Bhardwaj, N. Shukla, "Significance of ratio of omega-3 and omega-6 in human health with special reference to flaxseed oil", Int. J. Biol. Chem, Vol. 10, pp. 1-6, (2016). https://doi.org/10.3923/ijbc.2016.1.6
- B. S. Park, "Effect of n-6/n-3 fatty acid ratio on lipid metabolism in obesity rats", J. Oil & Appl. Sci, In press, (2018).
- J. Hwangbo, S. O. Park, B. S. Park, "Lipid lowering mechanism of sulfur-fed grain larvae extract in high-fat induced obesity rats", J. Oil & Appl. Sci, Vol. 31, pp. 572-583, (2014).
- B. S. Park, "Effect of n-6/n-3 fatty acid ratio on hepatic glycerolipid partitioning in second generation rats", J. Oil & Appl. Sci, Vol. 34, pp. 839-850, (2017).
- P. G. Reeves, F. H. Nielsen, Jr, G. C. Fahey, "AIN-93 purified diets for laboratory rodents: final report of the American Institute of Nutrition ad hoc writing committee on the reformulation of the AIN-76A rodent diet", J. Nutr, Vol. 123, 1939-1951, (1993). https://doi.org/10.1093/jn/123.11.1939
- B. S. Park, "Method of biological monitoring related to lipid metabolism", Korean Patent, No. 10-1633979, (2016).
- B. S. Park, Y. C. Lee, "Studies on the partitioning of glycerolipid metabolism in pregnant and lactating rats", Kor. J. Anim. Sci, Vol. 39, pp. 705-714, (1995).
- A. M. B. Moir, V. A. Zammit, "Monitoring of changes in hepatic fatty acid and glycerolipid metabolism during the starved-to-fed transition in vivo, studies on awake, unrestrained rats", Biochem. J, Vol. 289, pp. 49-55, (1993). https://doi.org/10.1042/bj2890049
- V. A. Zammit, A. M Moir, "Monitoring the partitioning of hepatic fatty acids in vivo: keeping track of control", Trends Biochem. Sci, Vol. 19, pp. 313-317, (1994). https://doi.org/10.1016/0968-0004(94)90068-X
- V. A. Zammit, D. J. Lankester, A. M. Brown, B.S. Park, "Insulin stimulates triacylglycerol secretion by perfused livers from fed rats but inhibits it in livers from fasted or insulin-deficient rats implications for the relationship between hyperinsulinaemia and hypertriglyceridaemia", Eur. J. Biochem, Vol. 263, pp. 859-864, (1999). https://doi.org/10.1046/j.1432-1327.1999.00568.x
-
M. L. Cruz, D. H. Williamson, "Refeeding meal-fed rats increases lipoprotein lipase activity and deposition of dietary[
$^{14}C$ ] lipid in white adipose and decreases oxidation to$^{14}CO2$ ", Biochem. J, Vol. 285, pp. 773-778, (1992). https://doi.org/10.1042/bj2850773 - A.M. Moir, B.S. Park. V.A. Zammit, "Quantification in vivo of the effects of different types of dietary fat on the loci of control involved in hepatic triacylglycerol secretion", Biochem. J, Vol. 308, pp. 537-542, (1995). https://doi.org/10.1042/bj3080537
- L. Hodson, K. N. Frayn, "Hepatic fatty acid partitioning", Curr. Opin. Lipidol, Vol. 22, pp. 216-224, (2011). https://doi.org/10.1097/MOL.0b013e3283462e16
- M. L. Cruz, D. H. Williamson, "Refeeding meal-fed rats increases lipoprotein lipase activity and deposition of dietary[14C] lipid in white adipose and decreases oxidation to 14CO2", Biochem. J, Vol. 285, pp. 773-778, (1992). https://doi.org/10.1042/bj2850773