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1. Adaptive Thermogenesis Driving Catch-Up Fat Is Associated With Increased Muscle Type 3 and Decreased Hepatic Type 1 Iodothyronine Deiodinase Activities: A Functional and Proteomic Study

2. Environmental Pollutants Effect on Brown Adipose Tissue

3. Absence of Uncoupling Protein-3 at Thermoneutrality Impacts Lipid Handling and Energy Homeostasis in Mice

4. Correction: Akap1 Deficiency Promotes Mitochondrial Aberrations and Exacerbates Cardiac Injury Following Permanent Coronary Ligation via Enhanced Mitophagy and Apoptosis.

5. Akap1 Deficiency Promotes Mitochondrial Aberrations and Exacerbates Cardiac Injury Following Permanent Coronary Ligation via Enhanced Mitophagy and Apoptosis.

6. Mitochondrial uncoupling proteins and energy metabolism

7. 3,5-Diiodo-L-thyronine activates brown adipose tissue thermogenesis in hypothyroid rats.

8. Environmental Pollutants Effect on Brown Adipose Tissue

10. Role of uncoupling protein-3 in energy metabolism and in the prevention of high fat induced overweight of mice housed at themoneutrality

11. Absence of UCP3 influences mitochondrial functionality in brown adipose tissue

12. Mitochondrial uncoupling proteins and energy metabolism

13. Peptide gH625 enters into neuron and astrocyte cell lines and crosses the blood-brain barrier in rats

14. Regulation of skeletal muscle mitochondrial activity by thyroid hormones: Focus on the 'old' triiodothyronine and the 'emerging' 3,5-diiodothyronine

15. Responses of skeletal muscle lipid metabolism in rat gastrocnemius to hypothyroidism and iodothyronine administration: a putative role for FAT/CD36

16. UCP3 Translocates Lipid Hydroperoxide and Mediates Lipid Hydroperoxide-dependent Mitochondrial Uncoupling

17. Uncoupling protein 3 (UCP3) participates in the translocation of lipid hydroperoxides (LOOH) across the mitochondrial inner membrane and in the LOOH-dependent mitochondrial uncoupling

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