Christian Strini Carl
Postdoc
The August Krogh Section for Molecular Physiology
Nørre Allé 51
2200 København N
Molecular Metabolism in Cancer and Ageing
Blegdamsvej 3
2200 København N.
ORCID: 0000-0002-9551-5837
11 - 13 out of 13Page size: 10
- 2022
- Published
Phosphoproteomics of three exercise modalities identifies canonical signaling and C18ORF25 as an AMPK substrate regulating skeletal muscle function
Blazev, R., Carl, C. S., Ng, Y-K., Molendijk, J., Voldstedlund, C. T., Zhao, Y., Xiao, D., Kueh, A. J., Miotto, P. M., Haynes, V. R., Hardee, J. P., Chung, J. D., McNamara, J. W., Qian, H., Gregorevic, P., Oakhill, J. S., Herold, M. J., Jensen, T. E., Lisowski, L., Lynch, G. S. & 6 others, , 2022, In: Cell Metabolism. 34, 10, p. 1561-1577.e9 27 p.Research output: Contribution to journal › Journal article › Research › peer-review
- 2023
- Published
Molecular mechanisms in exercise and recovery: In vivo network characterization of the multi -modal exercise phosphoproteome and the mechanisms regulating post-exercise insulin sensitivity in human skeletal muscle
Carl, Christian Strini, 2023, Department of Nutrition, Exercise and Sports, Faculty of Science, University of Copenhagen. 141 p.Research output: Book/Report › Ph.D. thesis › Research
- 2024
- E-pub ahead of print
Pharmacological activation of PDC flux reverses lipid-induced inhibition of insulin action in muscle during recovery from exercise
Carl, Christian Strini, Jensen, M. M., Sjøberg, K. A., Constantin-Teodosiu, D., Hill, I. R., Kjøbsted, Rasmus, Greenhaff, P. L., Wojtaszewski, Jørgen F P, Richter, Erik A., Fritzen, Andreas Mæchel & Kiens, Bente, 2024, (E-pub ahead of print) In: Diabetes.Research output: Contribution to journal › Journal article › Research › peer-review
ID: 144985259
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251
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Exercise increases circulating GDF15 in humans
Research output: Contribution to journal › Letter › Research › peer-review
Published -
103
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Thyroid hormone receptor α in skeletal muscle is essential for T3-mediated increase in energy expenditure
Research output: Contribution to journal › Journal article › Research › peer-review
Published -
79
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ApoA-1 improves glucose tolerance by increasing glucose uptake into heart and skeletal muscle independently of AMPKα2
Research output: Contribution to journal › Journal article › Research › peer-review
Published