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Your search keyword '"Olga Horakova"' showing total 17 results

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17 results on '"Olga Horakova"'

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1. Plasma Acylcarnitines and Amino Acid Levels As an Early Complex Biomarker of Propensity to High-Fat Diet-Induced Obesity in Mice.

2. Preservation of metabolic flexibility in skeletal muscle by a combined use of n-3 PUFA and rosiglitazone in dietary obese mice.

3. Omega-3 phospholipids and obesity-associated NAFLD: Potential mechanisms and therapeutic perspectives

4. Additive Effects of Omega-3 Fatty Acids and Thiazolidinediones in Mice Fed a High-Fat Diet: Triacylglycerol/fatty Acid Cycling in Adipose Tissue

5. Chronic n-3 fatty acid intake enhances insulin response to oral glucose and elevates GLP-1 in high-fat diet-fed obese mice

6. Omega-3 phospholipids from krill oil enhance intestinal fatty acid oxidation more effectively than omega-3 triacylglycerols in high-fat diet-fed obese mice

7. Early differences in metabolic flexibility between obesity-resistant and obesity-prone mice

8. Increased plasma levels of palmitoleic acid may contribute to beneficial effects of Krill oil on glucose homeostasis in dietary obese mice

9. Metformin acutely lowers blood glucose levels by inhibition of intestinal glucose transport

10. Early metabolic differences between obesity-resistant and obesity-prone mice: role of adipokines

11. Reduced Number of Adipose Lineage and Endothelial Cells in Epididymal fat in Response to Omega-3 PUFA in Mice Fed High-Fat Diet

12. Combined intervention with pioglitazone and n-3 fatty acids in metformin-treated type 2 diabetic patients: improvement of lipid metabolism

13. Polyunsaturated fatty acids of marine origin induce adiponectin in mice fed a high-fat diet

14. Involvement of AMP-activated protein kinase in fat depot-specific metabolic changes during starvation

15. Adipose tissue-related proteins locally associated with resolution of inflammation in obese mice

16. Preservation of Metabolic Flexibility in Skeletal Muscle by a Combined Use of n-3 PUFA and Rosiglitazone in Dietary Obese Mice

17. Polyunsaturated fatty acids of marine origin upregulate mitochondrial biogenesis and induce-beta oxidation in white fat

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