Thomas Rades
Professor
Pharmaceuticals, processes and products
Universitetsparken 2
2100 København Ø
- 2022
- Published
(Co-)amorphization of enantiomers – Investigation of the amorphization process, the physical stability and the dissolution behavior
Holzapfel, K., Liu, J., Rades, Thomas & Leopold, C. S., 2022, In: International Journal of Pharmaceutics. 616, 9 p., 121552.Research output: Contribution to journal › Journal article › Research › peer-review
- Published
A new method to determine drug-polymer solubility through enthalpy of melting and mixing
Meiland, Peter, Larsen, B. S., Knopp, Matthias Manne, Tho, I. & Rades, Thomas, 2022, In: International Journal of Pharmaceutics. 629, 9 p., 122391.Research output: Contribution to journal › Journal article › Research › peer-review
- Published
Additive manufacturing in respiratory sciences – Current applications and future prospects
Bock, S., Rades, Thomas, Rantanen, Jukka & Scherließ, R., 2022, In: Advanced Drug Delivery Reviews. 186, 14 p., 114341.Research output: Contribution to journal › Review › Research › peer-review
- Published
Combining lipid based drug delivery and amorphous solid dispersions for improved oral drug absorption of a poorly water-soluble drug
Nora, G., Venkatasubramanian, R., Strindberg, S., Siqueira-Jørgensen, S. D., Pagano, L., Romanski, F. S., Swarnakar, N. K., Rades, Thomas & Mullertz, Anette , 2022, In: Journal of Controlled Release. 349, p. 206-212Research output: Contribution to journal › Journal article › Research › peer-review
- Published
Development of a Microgram Scale Video-Microscopic Method to Investigate Dissolution Behavior of Poorly Water-Soluble Drugs
Senniksen, M. B., Christfort, J. F., Marabini, R., Spillum, E., Matthews, W., Da Vià, L., Plum, J., Rades, Thomas & Mullertz, Anette , 2022, In: AAPS PharmSciTech. 23, 6, 173.Research output: Contribution to journal › Journal article › Research › peer-review
- Published
Effects of polymer addition on the non-strongly interacting binary co-amorphous system carvedilol-tryptophan
Wang, Y., Grohganz, Holger & Rades, Thomas, 2022, In: International Journal of Pharmaceutics. 617, 9 p., 121625.Research output: Contribution to journal › Journal article › Research › peer-review
- Published
Elucidating Pathway and Anesthetic Mechanism of Action of Clove Oil Nanoformulations in Fish
Kheawfu, K., Pikulkaew, S., Wellendorph, Petrine, Jørgensen, Louise von Gersdorff, Rades, Thomas, Mullertz, Anette & Okonogi, S., 2022, In: Pharmaceutics. 14, 5, 13 p., 919.Research output: Contribution to journal › Journal article › Research › peer-review
- Published
Elucidating the Dehydration Mechanism of Nitrofurantoin Monohydrate II Using Low-Frequency Raman Spectroscopy
Remoto, P. J. G., Bērziņš, Kārlis, Fraser-Miller, S. J., Korter, T. M., Rades, Thomas, Rantanen, Jukka & Gordon, K. C., 2022, In: Crystal Growth and Design. 22, 4, p. 2733-2741Research output: Contribution to journal › Journal article › Research › peer-review
- Published
Impact of Molecular Surface Diffusion on the Physical Stability of Co-Amorphous Systems
Liu, J., Hwu, E., Bannow, J., Grohganz, Holger & Rades, Thomas, 2022, In: Molecular Pharmaceutics. 19, 4, p. 1183-1190Research output: Contribution to journal › Journal article › Research › peer-review
- Published
Impact of oral gavage technique of drug-containing microcontainers on the gastrointestinal transit and absorption in rats
Kristensen, M. N., Rades, Thomas, Boisen, A. & Mullertz, Anette , 2022, In: International Journal of Pharmaceutics. 618, 121630.Research output: Contribution to journal › Journal article › Research › peer-review
ID: 38132533
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519
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Analysis of 3D Prints by X-ray Computed Microtomography and Terahertz Pulsed Imaging
Research output: Contribution to journal › Journal article › Research › peer-review
Published -
365
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The significance of the amorphous potential energy landscape for dictating glassy dynamics and driving solid-state crystallisation
Research output: Contribution to journal › Journal article › Research › peer-review
Published -
322
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Comparison of lipases for in vitro models of gastric digestion: lipolysis using two infant formulas as model substrates
Research output: Contribution to journal › Journal article › Research › peer-review
Published