Peter Ertl - Vizerektor Forschung, Innovation und Internationales

Vizerektor Forschung, Innovation, Internationales
Pressefotos

© TU Wien, Foto: Matthias Heisler

© TU Wien, Foto: Matthias Heisler
Forschungsprofil von Vizerektor Peter Ertl
- Wahlübungen Organische Chemie , öffnet eine externe URL in einem neuen Fenster , 163.022, LU
- Wahlübungen Organische Chemie , öffnet eine externe URL in einem neuen Fenster , 163.023, LU
- Begleitseminar zur DA , öffnet eine externe URL in einem neuen Fenster , 163.038, SE
- Bachelorarbeit , öffnet eine externe URL in einem neuen Fenster , 163.140, LU
- Lab-on-a-Chip Technologien , öffnet eine externe URL in einem neuen Fenster , 163.178, VO
- Bioelektrochemie , öffnet eine externe URL in einem neuen Fenster , 164.023, VO
- Wahlpflicht-Projekt: Biomaterialien und Biomechanik , öffnet eine externe URL in einem neuen Fenster , 317.045, PA
- Wahlpflicht-Projekt: Biomedical Instrumentation & Signals , öffnet eine externe URL in einem neuen Fenster , 363.010, PA
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| A Versatile Gold Leaf Immunosensor with a Novel surface functionalization strategy based on protein L and trastuzumab for HER2 detection auf reposiTUm , öffnet eine externe URL in einem neuen FensterKundačina, I., Schobesberger, S., Kittler, S., Thumfart, H., Spadiut, O., Ertl, P., Knezevic, N., & Radonic, V. (2025). A Versatile Gold Leaf Immunosensor with a Novel surface functionalization strategy based on protein L and trastuzumab for HER2 detection. Scientific Reports, 15, Article 34. https://doi.org/10.1038/s41598-024-83961-9
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| Direct electrochemical reduction of graphene oxide thin film for aptamer-based selective and highly sensitive detection of matrix metalloproteinase 2 auf reposiTUm , öffnet eine externe URL in einem neuen FensterJarić, S., Schobesberger, S., Velicki, L., Milovančev, A., Nikolić, S., Ertl, P., Bobrinetskiy, I., & Knežević, N. (2024). Direct electrochemical reduction of graphene oxide thin film for aptamer-based selective and highly sensitive detection of matrix metalloproteinase 2. Talanta, 274, Article 126079. https://doi.org/10.1016/j.talanta.2024.126079
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| Characterization and optimization of a quantitative colorimetric acetylcholine esterase inhibition assay for biochip integration demonstrated by neurotoxicity evaluation of malathion auf reposiTUm , öffnet eine externe URL in einem neuen FensterVasconez Martinez, M. G., Parato, N., Schobesberger, S., Selinger, F., Reihs, I. E., Spitz, S., Frauenlob, M., Ertl, P., Resch, C., Bauer, G., Povoden, G., & Rothbauer, M. (2024). Characterization and optimization of a quantitative colorimetric acetylcholine esterase inhibition assay for biochip integration demonstrated by neurotoxicity evaluation of malathion. SENSORS AND ACTUATORS B-CHEMICAL, 408, Article 135568. https://doi.org/10.1016/j.snb.2024.135568
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| Development of a Flexible Sensor-Integrated Tissue Patch to Monitor Early Organ Rejection Processes Using Impedance Spectroscopy auf reposiTUm , öffnet eine externe URL in einem neuen FensterErtl, P., Wladimir, T., Sticker, D., Schuller, P., Rothbauer, M., Wieselthaler, G., & Frauenlob, M. (2024). Development of a Flexible Sensor-Integrated Tissue Patch to Monitor Early Organ Rejection Processes Using Impedance Spectroscopy. BIOSENSORS-BASEL, 14(5), Article 253. https://doi.org/10.3390/bios14050253
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| Sensor-integrated brain-on-a-chip platforms: Improving the predictive validity in neurodegenerative research auf reposiTUm , öffnet eine externe URL in einem neuen FensterSpitz, S., Schobesberger, S., Brandauer, K., & Ertl, P. (2024). Sensor-integrated brain-on-a-chip platforms: Improving the predictive validity in neurodegenerative research. BIOENGINEERING & TRANSLATIONAL MEDICINE, 9(3), Article e10604. https://doi.org/10.1002/btm2.10604
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| Archaeal ether lipids improve internalization and transfection with mRNA lipid nanoparticles auf reposiTUm , öffnet eine externe URL in einem neuen FensterSedlmayr, V. L., Schobesberger, S., Spitz, S., Ertl, P., Wurm, D. J., Quehenberger, J., & Spadiut, O. (2024). Archaeal ether lipids improve internalization and transfection with mRNA lipid nanoparticles. European Journal of Pharmaceutics and Biopharmaceutics, 197, Article 114213. https://doi.org/10.1016/j.ejpb.2024.114213
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| 405 - Advancing Synovial Tissue Models with Animal-Free Organs-on-a-Chip – A Matter of Synovial Structure and Function in the Context of Osteoarthritic Remodelling auf reposiTUm , öffnet eine externe URL in einem neuen FensterReihs, I. E., Hayer, S., Toegel, S., Ertl, P., Kiener, H. P., Windhager, R., & Rothbauer, M. (2024). 405 - Advancing Synovial Tissue Models with Animal-Free Organs-on-a-Chip – A Matter of Synovial Structure and Function in the Context of Osteoarthritic Remodelling. Osteoarthritis and Cartilage, 32, 287–288. https://doi.org/10.1016/j.joca.2024.02.418