Key result
Two-week treatment with the b3-adrenergic receptor agonist BRL37344 significantly increased brown adipose tissue glucose metabolism in obese mice compared to controls (BAT/L 6.64 vs 4.20, P=0.010).
Why the study?
Does activating brown adipose tissue with BRL37344 or levothyroxine improve glucose metabolism and reduce body weight in obese and diabetic mouse models?
Does activating brown adipose tissue with BRL37344 or levothyroxine improve glucose metabolism and reduce body weight in obese and diabetic mouse models?
Absolute Event Rate: 6.64% vs 4.2%
p-value: p=0.010
Activating brown adipose tissue with a beta3-adrenergic receptor agonist improves glucose metabolism and induces weight loss in obese and diabetic mouse models, suggesting a potential therapeutic strategy for metabolic diseases.
Hypothesis-generating for beta3-agonists in obesity; requires human trials before any clinical consideration.
PURPOSE: This study aims at using 18F-FDG microPET to monitor the brown adipose tissue (BAT) glucose metabolism in obese and diabetic mouse models under different interventions, and study the therapeutic potential of BAT activation for weight loss and lowering of blood glucose in these models. METHODS: Obese mice were established by a high-fat diet for eight weeks, and diabetes mellitus(DM) models were induced with Streptozocin in obese mice. 18F-FDG microPET was used to monitor BAT function during obese and DM modeling, and also after BRL37344 (a β3-adrenergic receptor agonist) or levothyroxine treatment. The BAT function was correlated with the body weight and blood glucose levels. RESULTS: Compared with the controls, the obese mice and DM mice showed successively lower 18F-FDG uptake in the interscapular BAT (P = 0.036 and < 0.001, respectively). After two-week BRL37344 treatment, the BAT uptake was significantly elevated in both obese mice (P = 0.010) and DM mice (P = 0.004), accompanied with significantly decreased blood glucose levels (P = 0.023 and 0.036, respectively). The BAT uptake was negatively correlated with the blood glucose levels in both obese mice (r = -0.71, P = 0.003) and DM mice (r = -0.74, P = 0.010). BRL37344 treatment also caused significant weight loss in the obese mice (P = 0.001). Levothyroxine treatment increased the BAT uptake in the control mice (P = 0.025) and obese mice (P = 0.013), but not in the DM mice (P = 0.45). CONCLUSION: The inhibited BAT function in obese and DM mice can be re-activated by β3-adrenergic receptor agonist or thyroid hormone, and effective BAT activation may lead to weight loss and blood glucose lowering. Activating BAT can provide a new treatment strategy for obesity and DM.
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Wu et al. (2014) studied Obesity and Diabetes Mellitus (n=77). BRL37344 vs. Saline was evaluated on 18F-FDG uptake ratio of brown adipose tissue to liver (BAT/L) in obese mice (p=0.010). Two-week treatment with the b3-adrenergic receptor agonist BRL37344 significantly increased brown adipose tissue glucose metabolism in obese mice compared to controls (BAT/L 6.64 vs 4.20, P=0.010).
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