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Titel: Pathology-oriented multiplexing enables integrative disease mapping
Autor(en): Kuehl, MalteIn der Gemeinsamen Normdatei der DNB nachschlagen
Okabayashi, Yusuke
Wong, Milagros N.
Gernhold, Lukas
Gut, Gabriele
Kaiser, Nico
Schwerk, Maria
Gräfe, Stefanie K.
Ma, Frank Y.
Tanevski, Jovan
Schäfer, Philipp S. L.
Mezher, Sam
Sarabia del Castillo, Jacobo
Goldbeck-Strieder, Thiago
Zolotareva, Olga
Hartung, Michael
Delgado Chaves, Fernando M.
Klinkert, Lukas
Gnirck, Ann-Christin
Spehr, Marc
Fleck, David
Joodaki, Mehdi
Parra, Victor
Shaigan, Mina
Diebold, Martin
Prinz, Marco
Kranz, Jennifer
Kux, Johan M.
Braun, Fabian
Kretz, Oliver
Wu, Hui
Grahammer, Florian
Heins, Sven
Zimmermann, Marina
Haas, Fabian
Kylies, Dominik
Wanner, Nicola
Czogalla, Jan
Dumoulin, Bernhard
Zolotarev, Nikolay
Lindenmeyer, Maja
Karlson, Pall
Nyengaard, Jens R.
Sebode, Marcial
Weidemann, Sören
Wiech, Thorsten
Groene, Hermann-Josef
Tomas, Nicola M.
Meyer-Schwesinger, Catherine
Kuppe, Christoph
Kramann, Rafael
Karras, Alexandre
Bruneval, Patrick
Tharaux, Pierre-Louis
Pastene, Diego O.In der Gemeinsamen Normdatei der DNB nachschlagen
Yard, Benito A.In der Gemeinsamen Normdatei der DNB nachschlagen
Schaub, Jennifer A.
McCown, Phillip J.
Pyle, Laura
Choi, Ye Ji
Yokoo, Takashi
Baumbach, Jan
Sáez, Pablo J.
Costa, Ivan
Turner, Jan-Eric
Hodgin, Jeffrey B.
Saez-Rodriguez, Julio
Huber, Tobias B.
Bjornstad, Petter
Kretzler, Matthias
Lenoir, Olivia
Nikolic-Paterson, David J.
Pelkmans, Lucas
Bonn, Stefan
Puelles, Victor G.
Erscheinungsdatum: 2025
Art: Artikel
Sprache: Englisch
Zusammenfassung: The expression and location of proteins in tissues represent key determinants of health and disease. Although recent advances in multiplexed imaging have expanded the number of spatially accessible proteins1-3, the integration of biological layers (that is, cell structure, subcellular domains and signalling activity) remains challenging. This is due to limitations in the compositions of antibody panels and image resolution, which together restrict the scope of image analysis. Here we present pathology-oriented multiplexing (PathoPlex), a scalable, quality-controlled and interpretable framework. It combines highly multiplexed imaging at subcellular resolution with a software package to extract and interpret protein co-expression patterns (clusters) across biological layers. PathoPlex was optimized to map more than 140 commercial antibodies at 80 nm per pixel across 95 iterative imaging cycles and provides pragmatic solutions to enable the simultaneous processing of at least 40 archival biopsy specimens. In a proof-of-concept experiment, we identified epithelial JUN activity as a key switch in immune-mediated kidney disease, thereby demonstrating that clusters can capture relevant pathological features. PathoPlex was then used to analyse human diabetic kidney disease. The framework linked patient-level clusters to organ disfunction and identified disease traits with therapeutic potential (that is, calcium-mediated tubular stress). Finally, PathoPlex was used to reveal renal stress-related clusters in individuals with type 2 diabetes without histological kidney disease. Moreover, tissue-based readouts were generated to assess responses to inhibitors of the glucose cotransporter SGLT2. In summary, PathoPlex paves the way towards democratizing multiplexed imaging and establishing integrative image analysis tools in complex tissues to support the development of next-generation pathology atlases.
Anmerkungen: Online veröffentlicht: 18. Juli 2025
Gesehen am 11.09.2025
URI: https://opendata.uni-halle.de//handle/1981185920/122843
http://dx.doi.org/10.25673/120887
Open-Access: Open-Access-Publikation
Nutzungslizenz: (CC BY 4.0) Creative Commons Namensnennung 4.0 International(CC BY 4.0) Creative Commons Namensnennung 4.0 International
Journal Titel: Nature
Verlag: Nature Publ. Group
Verlagsort: London [u.a.]
Band: 644
Heft: 8076
Originalveröffentlichung: 10.1038/s41586-025-09225-2
Seitenanfang: 516
Seitenende: 526
Enthalten in den Sammlungen:Open Access Publikationen der MLU

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