Lifestyle-related problems are becoming a major health threat in East Asian countries. Therefore, finding an efficacious nutraceutical for this population is important. One candidate is fucoxanthin (Fx), a carotenoid abundantly found in edible brown seaweed that has been associated with a number of valuable health-promoting benefits. Unfortunately, clinical studies of Fx are limited. In the present study, we aimed to evaluate the effects of Fx on obesity-related parameters in Japanese subjects harbouring an SNP associated with lifestyle-related problems. In all, sixty normal-weight and obese Japanese adults with BMI over 22 kg/m2 were single-blinded and randomly assigned to three Fx-dose cohorts and administered Fx-enriched akamoku oil containing Fx at 0, 1 or 2 mg/d for 8 weeks (n 20 per group). Parameters relating to obesity and serum Fx metabolites were measured before and after intervention, but no significant differences were observed between and within the groups. Despite no changes in visceral fat areas and resting energy expenditures after intervention, we observed a significant decline in HbA1c levels in the 2 mg/d Fx group compared with that in the 0 mg/d group (P < 0·05), which was correlated with an increase in serum fucoxanthinol (Fx metabolite) levels. In addition, HbA1c levels declined more significantly in subjects with G/G alleles of the uncoupling protein 1 (UCP1) gene than in those with the A/A and A/G alleles (P < 0·05). We conclude that although Fx supplementation does not affect visceral fat areas, it may reduce HbA1c levels in those harbouring the thrifty allele of UCP1-3826A/G.
n-3 Polyunsaturated fatty acids (PUFAs) such as eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA), and taurine are functional compounds abundantly present in seafoods. In this study, we examined the combined effects of EPA- and DHA-rich fish oil and taurine on white adipose tissue (WAT) weight and blood glucose levels in diabetic/obese KK-A(y) mice. After a 4-wk administration of experimental diets (soybean oil or fish oil, supplemented with 0%, 2%, or 4% taurine), the increase in WAT weight of the mice fed the "fish oil + 4% taurine" diet was significantly suppressed compared to the "soybean oil + 4% taurine" and "fish oil only" diets. Serum triglycerides, free fatty acids, and total cholesterol levels decreased by fish oil administration. In addition, fish oil and taurine increased the activity of acyl-CoA oxidase, which is the rate-limiting enzyme of peroxisomal β-oxidation, increased in the liver of KK-A(y) mice. The activity of fatty acid synthase decreased by fish oil diets. Furthermore, blood glucose and insulin levels were significantly lower in the mice fed fish oil than in the soybean oil-fed mice. In fish oil + 4% taurine group, hyperglycemia and hyperinsulinemia were effectively improved in KK-A(y) mice compared to the fish oil only groups. In particular, the combination of fish oil and taurine enhanced the glucose transporter 4 (GLUT4) distribution in the plasma membrane of muscle tissue. These results suggest that EPA- and DHA-rich fish oil, especially in combination with taurine, exhibits preventive effects on WAT weight gain and hyperglycemia in diabetic/obese KK-A(y) mice.
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