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1. Increased ketone body oxidation provides additional energy for the failing heart without improving cardiac efficiency

2. Myocardial Lipin 1 knockout in mice approximates cardiac effects of human LPIN1 mutations

3. Desmin interacts with STIM1 and coordinates Ca2+ signaling in skeletal muscle

4. Ketogenic Diet Prevents Heart Failure from Defective Mitochondrial Pyruvate Metabolism

5. Propionate-induced changes in cardiac metabolism, notably CoA trapping, are not altered by<scp>l</scp>-carnitine

6. Disruption of Acetyl-Lysine Turnover in Muscle Mitochondria Promotes Insulin Resistance and Redox Stress without Overt Respiratory Dysfunction

7. Comprehensive metabolic modeling of multiple13C-isotopomer data sets to study metabolism in perfused working hearts

8. Macrophage Metabolism of Apoptotic Cell-Derived Arginine Promotes Continual Efferocytosis and Resolution of Injury

9. Electrical stimulation increases hypertrophy and metabolic flux in tissue-engineered human skeletal muscle

10. Respiratory Phenomics across Multiple Models of Protein Hyperacylation in Cardiac Mitochondria Reveals a Marginal Impact on Bioenergetics

11. Physiological mechanisms of sustained fumagillin-induced weight loss

12. Increased palmitate intake: higher acylcarnitine concentrations without impaired progression of β-oxidation

13. Metabolomic analysis reveals altered skeletal muscle amino acid and fatty acid handling in obese humans

14. Metabolomic analysis of insulin resistance across different mouse strains and diets

15. Bicarbonate alters cellular responses in respiration assays

16. Muscle-Liver Trafficking of BCAA-Derived Nitrogen Underlies Obesity-Related Glycine Depletion

17. Muscle-Specific Overexpression of PGC-1α Does Not Augment Metabolic Improvements in Response to Exercise and Caloric Restriction

18. Targeted Metabolomics Connects Thioredoxin-interacting Protein (TXNIP) to Mitochondrial Fuel Selection and Regulation of Specific Oxidoreductase Enzymes in Skeletal Muscle

19. Increasing fatty acid oxidation in the failing heart does not improve cardiac function

20. Systematic Dissection of the Metabolic-Apoptotic Interface in AML Reveals Heme Biosynthesis to Be a Regulator of Drug Sensitivity

21. Substituting dietary monounsaturated fat for saturated fat is associated with increased daily physical activity and resting energy expenditure and with changes in mood

22. A Lipidomics Analysis of the Relationship Between Dietary Fatty Acid Composition and Insulin Sensitivity in Young Adults

23. Plasma acylcarnitines during insulin stimulation in humans are reflective of age-related metabolic dysfunction

24. Lipid-Induced Mitochondrial Stress and Insulin Action in Muscle

25. Metabolic Remodeling of Human Skeletal Myocytes by Cocultured Adipocytes Depends on the Lipolytic State of the System

26. Inhibition of De Novo Ceramide Synthesis Reverses Diet-Induced Insulin Resistance and Enhances Whole-Body Oxygen Consumption

27. Alterations in Skeletal Muscle Fatty Acid Handling Predisposes Middle-Aged Mice to Diet-Induced Insulin Resistance

28. Mitochondrial Overload and Incomplete Fatty Acid Oxidation Contribute to Skeletal Muscle Insulin Resistance

29. Skeletal muscle adaptation to fatty acid depends on coordinated actions of the PPARs and PGC1α: implications for metabolic disease

30. Carnitine revisited: potential use as adjunctive treatment in diabetes

31. Carnitine Acetyltransferase Mitigates Metabolic Inertia and Muscle Fatigue During Exercise

32. The Failing Heart Relies on Ketone Bodies as a Fuel

33. Elevated stearoyl-CoA desaturase-1 expression in skeletal muscle contributes to abnormal fatty acid partitioning in obese humans

34. Peroxisome Proliferator-activated Receptor-γ Co-activator 1α-mediated Metabolic Remodeling of Skeletal Myocytes Mimics Exercise Training and Reverses Lipid-induced Mitochondrial Inefficiency

35. Distinct roles of specific fatty acids in cellular processes: implications for interpreting and reporting experiments

36. Compartmentalized Acyl-CoA Metabolism in Skeletal Muscle Regulates Systemic Glucose Homeostasis

37. Fatty Acid Homeostasis and Induction of Lipid Regulatory Genes in Skeletal Muscles of Peroxisome Proliferator-activated Receptor (PPAR) α Knock-out Mice

38. The good in fat

39. Metabolite signatures of exercise training in human skeletal muscle relate to mitochondrial remodelling and cardiometabolic fitness

40. Metabolism and Vascular Fatty Acid Transport

41. Acyl-CoAs are functionally channeled in liver: potential role of acyl-CoA synthetase

42. Physiological and Nutritional Regulation of Enzymes of Triacylglycerol Synthesis

43. Energy Metabolism in Uncoupling Protein 3 Gene Knockout Mice

44. AMP-activated kinase reciprocally regulates triacylglycerol synthesis and fatty acid oxidation in liver and muscle: evidence that sn-glycerol-3-phosphate acyltransferase is a novel target

45. Dietary intake of palmitate and oleate has broad impact on systemic and tissue lipid profiles in humans

46. Skeletal muscle lipid metabolism: A frontier for new insights into fuel homeostasis

47. A role for peroxisome proliferator-activated receptor γ coactivator-1 in the control of mitochondrial dynamics during postnatal cardiac growth

48. Glycerol-3-phosphate Acyltransferase (GPAT)-1, but Not GPAT4, Incorporates Newly Synthesized Fatty Acids into Triacylglycerol and Diminishes Fatty Acid Oxidation*

49. SIRT4 coordinates the balance between lipid synthesis and catabolism by repressing malonyl CoA decarboxylase

50. Identification of a novel malonyl-CoA IC(50) for CPT-I: implications for predicting in vivo fatty acid oxidation rates

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