Fingerprint Fingerprint is based on mining the text of the person's scientific documents to create an index of weighted terms, which defines the key subjects of each individual researcher.

  • 16 Similar Profiles
Fatty Acids Medicine & Life Sciences
Malonyl Coenzyme A Medicine & Life Sciences
Brain Medicine & Life Sciences
Homeostasis Medicine & Life Sciences
Obesity Medicine & Life Sciences
Oxidation Chemical Compounds
Energy Metabolism Medicine & Life Sciences
Carnitine O-Palmitoyltransferase Medicine & Life Sciences

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Research Output 2001 2017

Developmental regulation and localization of carnitine palmitoyltransferases (CPTs) in rat brain

Jernberg, J. N., Bowman, C. E., Wolfgang, M. J. & Scafidi, S. Aug 1 2017 In : Journal of Neurochemistry. 142, 3, p. 407-419 13 p.

Research output: Research - peer-reviewArticle

Carnitine O-Palmitoyltransferase
Rats
Brain
Oxidation
Fatty Acids

Fatty acid metabolism by the osteoblast

Kushwaha, P., Wolfgang, M. J. & Riddle, R. C. 2017 (Accepted/In press) In : Bone.

Research output: Research - peer-reviewArticle

Osteoblasts
Fatty Acids
Bone Development
Lipid Metabolism
Skeleton

Inflammatory stimuli induce acyl-CoA thioesterase 7 and remodeling of phospholipids containing unsaturated long (≥C20)-acyl chains in macrophages

Wall, V. Z., Barnhart, S., Kramer, F., Kanter, J. E., Vivekanandan-Giri, A., Pennathur, S., Bolego, C., Ellis, J. M., Gijón, M. A., Wolfgang, M. J. & Bornfeldt, K. E. Jun 1 2017 In : Journal of Lipid Research. 58, 6, p. 1174-1185 12 p.

Research output: Research - peer-reviewArticle

Acyl Coenzyme A
Phospholipids
Macrophages
Lipopolysaccharides
Glycerophospholipids

Loss of Hepatic Mitochondrial Long-Chain Fatty Acid Oxidation Confers Resistance to Diet-Induced Obesity and Glucose Intolerance

Lee, J., Choi, J., Selen Alpergin, E. S., Zhao, L., Hartung, T., Scafidi, S., Riddle, R. C. & Wolfgang, M. J. Jul 18 2017 In : Cell Reports. 20, 3, p. 655-667 13 p.

Research output: Research - peer-reviewArticle

Oxidation resistance
Nutrition
Fatty Acids
Fats
Glucose

Loss of macrophage fatty acid oxidation does not potentiate systemic metabolic dysfunction

Gonzalez-Hurtado, E., Lee, J., Choi, J., Selen Alpergin, E. S., Collins, S. L., Horton, M. R. & Wolfgang, M. J. May 1 2017 In : American Journal of Physiology - Endocrinology and Metabolism. 312, 5, p. E381-E393

Research output: Research - peer-reviewArticle

Fatty Acids
Macrophages
High Fat Diet
Interleukin-4
Obesity