Effect of metformin on adipose tissue resistin expression in db/db mice

H Fujita, H Fujishima, T Morii, J Koshimura… - Biochemical and …, 2002 - Elsevier
H Fujita, H Fujishima, T Morii, J Koshimura, T Narita, M Kakei, S Ito
Biochemical and biophysical research communications, 2002Elsevier
Resistin, a novel adipose-derived protein, has been proposed to cause insulin-resistant
states in obesity. To evaluate whether an insulin-sensitizing drug, metformin, regulates
adipose tissue resistin expression, murine models of obesity and diabetes, db/db mice, were
treated with metformin (metformin group), insulin (insulin group), and vehicle (control group)
for 4 weeks, followed by analyzing resistin protein expression in their adipose tissues.
Unexpectedly, resistin protein expression was increased by 66% in the metformin group …
Resistin, a novel adipose-derived protein, has been proposed to cause insulin-resistant states in obesity. To evaluate whether an insulin-sensitizing drug, metformin, regulates adipose tissue resistin expression, murine models of obesity and diabetes, db/db mice, were treated with metformin (metformin group), insulin (insulin group), and vehicle (control group) for 4 weeks, followed by analyzing resistin protein expression in their adipose tissues. Unexpectedly, resistin protein expression was increased by 66% in the metformin group relative to the control group, while it did not differ between the insulin and control groups. Hyperinsulinemia was improved in the metformin group, while the insulin group exhibited severe hyperinsulinemia, similar to the control group. Furthermore, in comparison between obese mice (db/db mice) and age-matched lean controls, resistin protein expression was reduced by 58% in the obese mice with severe hyperinsulinemia. These data collectively suggest that resistin expression may be suppressed by hyperinsulinemia and that metformin may upregulate resistin expression via the improvement of hyperinsulinemia in obesity.
Elsevier