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Anti-obesity and antidiabetic effects of deep sea water on ob/ob mice
Hee Sun Hwang1, Hyun Ah Kim, Sung Hak Lee
1Department of Biotechnology, Daegu University, Kyungsan, Kyungbuk, South Korea.
Abstract:
Recently, deep sea water (DSW) has started to receive much attention for therapeutic intervention in some lifestyle diseases. In this study, the anti-obesity and antidiabetic effects of DSW in ob/ob mice were investigated. The animals were randomly divided into two groups with six animals: control group received tap water; the experimental group was treated with DSW of hardness 1000 for 84 days. The body weight gain after 84 days in DSW-fed group was decreased by 7% compared to the control group. The plasma glucose levels in the DSW-fed mice were substantially reduced by 35.4%, as compared to control mice. The results of oral glucose tolerance test revealed that DSW-fed groups significantly increased the glucose disposal after 84 days. DSW increased plasma protein levels of adiponectin and decreased plasma protein levels of resistin, RBP4, and fatty acid binding protein. Moreover, GLUT4 and AMP-activated protein kinase levels in skeletal muscle tissue were increased while peroxisome proliferator-activated receptor gamma and adiponectin were decreased in adipose tissue of DSW-fed mice. These results suggest that the antidiabetic and anti-obesity activities of DSW were mediated by modulating the expression of diabetes- and obesity-specific molecules. Taken together, these results provide a possibility that continuous intake of DSW can ameliorate obesity and diabetes.
Insights
Deep sea water (DSW) consumption significantly reduced body weight gain and plasma glucose levels in mice, offering potential benefits for obesity and diabetes management.
Area of Science:
- Biochemistry
- Physiology
- Nutrition Science
Background:
- Lifestyle diseases like obesity and diabetes are growing health concerns.
- Deep sea water (DSW) is emerging as a potential therapeutic agent.
- Understanding DSW's effects on metabolic health is crucial.
Purpose of the Study:
- To investigate the anti-obesity and anti-diabetic effects of DSW.
- To examine DSW's impact on metabolic markers in a mouse model.
Main Methods:
- Ob/ob mice were divided into control (tap water) and experimental (DSW) groups.
- Treatment duration was 84 days.
- Evaluated body weight, plasma glucose, glucose tolerance, and specific protein/gene expressions.
Main Results:
- DSW intake reduced body weight gain by 7% and plasma glucose by 35.4%.
- DSW improved glucose disposal and modulated adiponectin, resistin, RBP4, and fatty acid-binding protein levels.
- DSW altered GLUT4, AMP-activated protein kinase, peroxisome proliferator-activated receptor gamma, and adiponectin expressions in skeletal muscle and adipose tissue.
Conclusions:
- DSW exhibits significant anti-obesity and anti-diabetic properties.
- These effects are mediated by modulating key diabetes- and obesity-related molecules.
- Continuous DSW intake may help ameliorate obesity and diabetes.
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