Christian Reinhard Otto Bartling
Assistant Professor
Biopharmaceuticals
Jagtvej 162
2100 København Ø
ORCID: 0000-0002-0602-4738
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- Published
Comprehensive Peptide Cyclization Examination Yields Optimized APP Scaffolds with Improved Affinity toward Mint2
Bartling, Christian Reinhard Otto, Alexopoulou, Flora, Kuschert, S., Chin, Y. K. Y., Jia, X., Sereikaité, Vita, Özcelik, D., Jensen, T. M., Jain, P., Nygaard, M. M., Harpsøe, Kasper, Gloriam, David E., Mobli, M. & Strømgaard, Kristian, 2023, In: Journal of Medicinal Chemistry. 66, 4, p. 3045-3057Research output: Contribution to journal › Journal article › Research › peer-review
- Published
Targeting the APP-Mint2 Protein-Protein Interaction with a Peptide-Based Inhibitor Reduces Amyloid-β Formation
Bartling, Christian Reinhard Otto, Jensen, T. M. T., Henry, S. M., Colliander, A. L., Sereikaité, Vita, Wenzler, M., Jain, P., Maric, H. M., Harpsøe, Kasper, Pedersen, S. W., Clemmensen, L. S., Haugaard-Kedström, L. M., Gloriam, David E., Ho, A. & Strømgaard, Kristian, 2021, In: Journal of the American Chemical Society. 143, 2, p. 891-901Research output: Contribution to journal › Journal article › Research › peer-review
ID: 132530668
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285
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A high-affinity, bivalent PDZ domain inhibitor complexes PICK1 to alleviate neuropathic pain
Research output: Contribution to journal › Journal article › Research › peer-review
Published -
28
downloads
Investigation of Carboxylic Acid Isosteres and Prodrugs for Inhibition of the Human SIRT5 Lysine Deacylase Enzyme**
Research output: Contribution to journal › Journal article › Research › peer-review
Published -
25
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Aryl Fluorosulfate Based Inhibitors That Covalently Target the SIRT5 Lysine Deacylase**
Research output: Contribution to journal › Journal article › Research › peer-review
Published