Jorge L Ruas, Pharm.D., Ph.D.
Affiliations: | 2023- | Pharmacology | The University of Michigan Medical School |
Area:
Physiology, Skeletal Muscle, Metabolism, inter-organ crosstalk.Website:
www.ruaslab.scienceGoogle:
"Jorge Ruas"Parents
Sign in to add mentorTeresa Pereira | grad student | 1999-2005 | Karolinska |
Lorenz Poellinger | grad student | 1999-2005 | Karolinska |
Lorenz Poellinger | post-doc | 2005-2006 | Karolinska |
Bruce Spiegelman | post-doc | 2006-2011 | Harvard Medical School |
Children
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Publications
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Wadsworth BJ, Leiwe M, Minogue EA, et al. (2024) A 2-hydroxybutyrate-mediated feedback loop regulates muscular fatigue. Elife. 12 |
Correia JC, Jannig PR, Gosztyla ML, et al. (2024) Zfp697 is an RNA-binding protein that regulates skeletal muscle inflammation and remodeling. Proceedings of the National Academy of Sciences of the United States of America. 121: e2319724121 |
Dedic B, Westerberg L, Mosqueda Solís A, et al. (2024) Senescence detection using reflected light. Aging Cell. e14295 |
Ducommun S, Jannig PR, Cervenka I, et al. (2024) Mustn1 is a smooth muscle cell-secreted microprotein that modulates skeletal muscle extracellular matrix composition. Molecular Metabolism. 101912 |
Caria I, Nunes MJ, Ciraci V, et al. (2023) NPC1-like phenotype, with intracellular cholesterol accumulation and altered mTORC1 signaling in models of Parkinson's disease. Biochimica Et Biophysica Acta. Molecular Basis of Disease. 1870: 166980 |
Spratt J, Dias JM, Kolonelou C, et al. (2023) Multivalent insulin receptor activation using insulin-DNA origami nanostructures. Nature Nanotechnology |
Correia JC, Jannig PR, Gosztyla ML, et al. (2023) Zfp697 is an RNA-binding protein that regulates skeletal muscle inflammation and regeneration. Biorxiv : the Preprint Server For Biology |
Luo Q, Pui HP, Chen J, et al. (2023) Epiblast-like stem cells established by Wnt/β-catenin signaling manifest distinct features of formative pluripotency and germline competence. Cell Reports. 42: 112021 |
Rodrigues JS, Faria-Pereira A, Camões SP, et al. (2023) Improving human mesenchymal stem cell-derived hepatic cell energy metabolism by manipulating glucose homeostasis and glucocorticoid signaling. Frontiers in Endocrinology. 13: 1043543 |
Tuomainen T, Naumenko N, Mutikainen M, et al. (2022) PGC-1α4 Interacts with REST to Upregulate Neuronal Genes and Augment Energy Consumption in Developing Cardiomyocytes. Cells. 11 |