High-dimensional single-cell profling of extracellular vesicle recipients by tellurium-based labeling of the extracellular vesicle proteome (TeLEV) reveals EV-driven remodeling of the immune microenvironment in chronic lymphocytic leukemia
Other conference contribution, 2025
Author
D. Bachurski
University of Cologne
R. Gholamipoorfard
University of Cologne
Y. J. Bu
University of Toronto
P. Holker
University of Cologne
L. Wessendorf
University of Cologne
H. Jestrabek
University of Cologne
D. Stahl
University of Cologne
P. Godel
University of Cologne
F. Gaedke
University of Cologne
Elias Ranjbari
Chalmers, Physics, CMAL
S. Seyhan
Dokuz Eylul University
U. Resch
University of Vienna
L. M. Schmidt
University of Cologne
University of Copenhagen
T. Tertel
University of Duisburg-Essen
F. Rose
University of Cologne
C. Pinheiro
Ghent university
M. L. Corona
Paris Cité University
A. F. Vom Stein
University of Cologne
P. H. Nguyen
University of Cologne
K. Reiners
University of Bonn
A. Hendrix
Ghent university
G. Van Niel
Paris Cité University
M. Kruger
University of Cologne
K. Bozek
University of Cologne
L. Meder
University of Erlangen-Nuremberg (FAU)
Per Malmberg
Chalmers, Chemistry and Chemical Engineering, Chemistry and Biochemistry
P. Cramer
University of Cologne
B. Eichhorst
University of Cologne
R. Ullrich
University of Cologne
A. Schauss
University of Cologne
C. Pallasch
University of Cologne
P. J. Brockelmann
University of Cologne
Max Planck Society
R. D. Jachimowicz
Max Planck Society
University of Cologne
C. Preusser
Philipps University Marburg
E. Pogge Von Strandmann
Philipps University Marburg
B. Giebel
University of Duisburg-Essen
M. Nitz
University of Toronto
M. Hallek
University of Cologne
N. Abedpour
University of Cologne
Oncology Research and Treatment
2296-5270 (ISSN) 2296-5262 (eISSN)
Vol. 48 SUPPL 2Subject Categories (SSIF 2025)
Chemical Engineering