Elisabeth Rexen Ulven

Elisabeth Rexen Ulven

Associate Professor


  1. Discovery of a Potent Free Fatty Acid 1 Receptor Agonist with Low Lipophilicity, Low Polar Surface Area and Robust in Vivo Efficacy

    Hansen, S. V. F., Ulven, Elisabeth Rexen, Urban, C., Hudson, B. D., Stocker, C. J., Due-Hansen, M. E., Wargent, E. T., Shimpukade, B., Almeida, R., Ejsing, C. S., Cawthorne, M. A., Kassack, M. U., Milligan, G. & Ulven, Trond, 1 Mar 2016, In: Journal of Medicinal Chemistry. 59, 6, p. 2841-2846 6 p.

    Research output: Contribution to journalJournal articleResearchpeer-review

  2. Defining the molecular basis for the first potent and selective orthosteric agonists of the FFA2 free fatty acid receptor

    Hudson, B. D., Due-Hansen, M. E., Ulven, Elisabeth Rexen, Hansen, A., Mackenzie, A. E., Murdoch, H., Pandey, S. K., Ward, R. J., Marquez, R., Tikhonova, I. G., Ulven, Trond & Milligan, G., 14 Jun 2013, In: Journal of Biological Chemistry. 288, p. 17296-17312 17 p.

    Research output: Contribution to journalJournal articleResearchpeer-review

  3. The Pharmacology of TUG-891, a Potent and Selective Agonist of the Free Fatty Acid Receptor 4 (FFA4/GPR120), Demonstrates Both Potential Opportunity and Possible Challenges to Therapeutic Agonism

    Hudson, B. D., Shimpukade, B., Mackenzie, A. E., Butcher, A. J., Pediani, J. D., Ulven, Elisabeth Rexen, Heathcote, H., Tobin, A. B., Ulven, Trond & Milligan, G., 2013, In: Molecular Pharmacology. 84, 5, p. 710-725 16 p.

    Research output: Contribution to journalJournal articleResearchpeer-review

  4. Chemically engineering ligand selectivity at the free fatty acid receptor 2 based on pharmacological variation between species orthologs

    Hudson, B. D., Ulven, Elisabeth Rexen, Tikhonova, I. G., Grundmann, M., Kostenis, E., Adams, D. R., Ulven, Trond & Milligan, G., 2012, In: F A S E B Journal. 26, 12, p. 4951-4965 15 p.

    Research output: Contribution to journalJournal articleResearchpeer-review

  5. Complex pharmacology of novel allosteric free fatty acid 3 receptor ligands

    Hudson, B. D., Ulven, Elisabeth Rexen, Murdoch, H., Jenkins, L., Hansen, A. H., Madsen, O., Ulven, Trond & Milligan, G., Aug 2014, In: Molecular Pharmacology. 86, 2, p. 200-210 11 p.

    Research output: Contribution to journalJournal articleResearchpeer-review

  6. Published

    Structure-Activity Relationship Studies and Optimization of 4-Hydroxypyridones as GPR84 Agonists

    Ieremias, L., Kaspersen, M. H., Manandhar, Asmita, Schultz-Knudsen, Katrine, Vrettou, C. I., Pokhrel, R., Heidtmann, C. V., Jenkins, L., Kanellou, C., Marsango, S., Li, Y., Bräuner, Hans, Ulven, Elisabeth Rexen, Milligan, G. & Ulven, Trond, 2024, In: Journal of Medicinal Chemistry. 67, 5, p. 3542-3570

    Research output: Contribution to journalJournal articleResearchpeer-review

  7. Published

    Ligand entry pathways control the chemical space recognized by GPR183

    Kjær, Viktoria Madeline Skovgaard, Stępniewski, T. M., Medel-Lacruz, B., Reinmuth, L., Ciba, Marija, Ulven, Elisabeth Rexen, Bonomi, M., Selent, J. & Rosenkilde, Mette, 2023, In: Chemical Science. 14, 39, p. 10671-10683

    Research output: Contribution to journalJournal articleResearchpeer-review

  8. Published

    FFA2-, but not FFA3-agonists inhibit GSIS of human pseudoislets: a comparative study with mouse islets and rat INS-1E cells

    Lorza-Gil, E., Kaiser, G., Ulven, Elisabeth Rexen, Koenig, G. M., Gerst, F., Oquendo, M. B., Birkenfeld, A. L., Haering, H., Kostenis, E., Ulven, Trond & Ullrich, S., 2020, In: Scientific Reports. 10, 1, 11 p., 16497.

    Research output: Contribution to journalJournal articleResearchpeer-review

  9. Published

    Glucose-stimulated insulin secretion depends on FFA1 and Gq in neonatal mouse islets

    Lorza-Gil, E., Kaiser, G., Carlein, C., Hoffmann, M. D. A., König, G. M., Haug, S., Prates Roma, L., Ulven, Elisabeth Rexen, Ulven, Trond, Kostenis, E., Birkenfeld, A. L., Häring, H. U., Ullrich, S. & Gerst, F., 2023, In: Diabetologia. 66, p. 1501–1515

    Research output: Contribution to journalJournal articleResearchpeer-review

  10. Published

    Structure-based discovery of novel US28 small molecule ligands with different modes of action

    Lückmann, Michael, Amarandi, R., Papargyri, N., Jakobsen, M. H., Ulven, Elisabeth Rexen, Jensen, Lars Juhl, Pui, A., Schwartz, Thue W., Rosenkilde, Mette & Frimurer, Thomas Michael, 2017, In: Chemical Biology & Drug Design. 89, 3, p. 289–296

    Research output: Contribution to journalJournal articleResearchpeer-review

ID: 201719978