Anzahl der Publikationen: 7
2022
Brandhofer, Markus ORCID: https://orcid.org/0000-0002-1629-8353; Hoffmann, Adrian; Blanchet, Xavier ORCID: https://orcid.org/0000-0001-7936-3848; Siminkovitch, Elena; Rohlfing, Anne-Katrin ORCID: https://orcid.org/0000-0001-5469-3648; El Bounkari, Omar ORCID: https://orcid.org/0000-0002-3051-2096; Nestele, Jeremy A.; Bild, Alexander; Kontos, Christos; Hille, Kathleen; Rohde, Vanessa; Fröhlich, Adrian; Golemi, Jona; Gokce, Ozgun; Krammer, Christine; Scheiermann, Patrick ORCID: https://orcid.org/0000-0001-7334-3096; Tsilimparis, Nikolaos; Sachs, Nadja; Kempf, Wolfgang E.; Maegdefessel, Lars; Otabil, Michael K.; Megens, Remco T. A. ORCID: https://orcid.org/0000-0001-9871-6696; Ippel, Hans; Koenen, Rory R. ORCID: https://orcid.org/0000-0002-9955-9730; Luo, Junfu; Engelmann, Bernd; Mayo, Kevin H.; Gawaz, Meinrad; Kapurniotu, Aphrodite; Weber, Christian ORCID: https://orcid.org/0000-0003-4610-8714; Hundelshausen, Philipp von und Bernhagen, Jürgen ORCID: https://orcid.org/0000-0003-2996-2652
(2022):
Heterocomplexes between the atypical chemokine MIF and the CXC-motif chemokine CXCL4L1 regulate inflammation and thrombus formation.
In: Cellular and Molecular Life Sciences, Bd. 79, Nr. 10
[PDF, 3MB]
Tas, Karin; Dalla Volta, Beatrice; Lindner, Christina; El Bounkari, Omar; Hille, Kathleen; Tian, Yuan; Puig-Bosch, Xenia; Ballmann, Markus; Hornung, Simon; Ortner, Martin; Prem, Sophia; Meier, Laura; Rammes, Gerhard; Haslbeck, Martin; Weber, Christian; Megens, Remco T. A.; Bernhagen, Juergen und Kapurniotu, Aphrodite
(2022):
Designed peptides as nanomolar cross-amyloid inhibitors acting via supramolecular nanofiber co-assembly.
In: Nature Communications, Bd. 13, Nr. 1, 5004
[PDF, 9MB]
2020
Krammer, Christine; Kontos, Christos; Dewor, Manfred; Hille, Kathleen; Dalla Volta, Beatrice; El Bounkari, Omar; Tas, Karin; Sinitski, Dzmitry; Brandhofer, Markus; Megens, Remco T. A.; Weber, Christian; Schultz, Joshua R.; Bernhagen, Jurgen und Kapurniotu, Aphrodite
(2020):
A MIF-Derived Cyclopeptide that Inhibits MIF Binding and Atherogenic Signaling via the Chemokine Receptor CXCR2.
In: Chembiochem, Bd. 22, Nr. 6: S. 1012-1019
[PDF, 5MB]
Kontos, Christos; El Bounkari, Omar; Krammer, Christine; Sinitski, Dzmitry; Hille, Kathleen; Zan, Chunfang; Yan, Guangyao; Wang, Sijia; Gao, Ying; Brandhofer, Markus; Megens, Remco T. A.; Hoffmann, Adrian; Pauli, Jessica; Asare, Yaw; Gerra, Simona; Bourilhon, Priscila; Leng, Lin; Eckstein, Hans-Henning; Kempf, Wolfgang E.; Pelisek, Jaroslav; Gokce, Ozgun; Maegdefessel, Lars; Bucala, Richard; Dichgans, Martin ORCID: https://orcid.org/0000-0002-0654-387X; Weber, Christian; Kapurniotu, Aphrodite und Bernhagen, Jürgen
(2020):
Designed CXCR4 mimic acts as a soluble chemokine receptor that blocks atherogenic inflammation by agonist-specific targeting.
In: Nature Communications, Bd. 11, Nr. 1, 5981
[PDF, 1MB]
Niu, Zheng; Prade, Elke; Malideli, Eleni; Hille, Kathleen; Jussupow, Alexander; Mideksa, Yonatan G.; Yan, Li-Mei; Qian, Chen; Fleisch, Markus; Messias, Ana C.; Sarkar, Riddhiman; Sattler, Michael; Lamb, Don C.; Feige, Matthias J.; Camilloni, Carlo; Kapurniotu, Aphrodite und Reif, Bernd
(2020):
Structural Insight into IAPP-Derived Amyloid Inhibitors and Their Mechanism of Action.
In: Angewandte Chemie-International Edition, Bd. 59, Nr. 14: S. 5771-5781
2018
Lacy, Michael; Kontos, Christos; Brandhofer, Markus; Hille, Kathleen; Groening, Sabine; Sinitski, Dzmitry; Bourilhon, Priscila; Rosenberg, Eric; Krammer, Christine; Thavayogarajah, Tharshika; Pantouris, Georgios; Bakou, Maria; Weber, Christian; Lolis, Elias; Bernhagen, Jürgen und Kapurniotu, Aphrodite
(2018):
Identification of an Arg-Leu-Arg tripeptide that contributes to the binding interface between the cytokine MIF and the chemokine receptor CXCR4.
In: Scientific Reports, Bd. 8, 5171
[PDF, 4MB]
Spanopoulou, Anna; Heidrich, Luzia; Chen, Hong-Ru; Frost, Christina; Hrle, Dean; Malideli, Eleni; Hille, Kathleen; Grammatikopoulos, Alexandros; Bernhagen, Jürgen; Zacharias, Martin; Rammes, Gerhard und Kapurniotu, Aphrodite
(2018):
Designed Macrocyclic Peptides as Nanomolar Amyloid Inhibitors Based on Minimal Recognition Elements.
In: Angewandte Chemie-International Edition, Bd. 57, Nr. 44: S. 14503-14508
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