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PreviewIssue dateOnline publication dateTitleAuthor(s)
network_pharmacology_of_tript-20220729131545075.pdf.jpg20213-Aug-2022Network pharmacology of triptolide in cancer cells : implications for transcription factor bindingSeo, Ean-Jeong; Dawood, Mona; Hult, Annika K.; Olsson, Martin L.; Efferth, Thomas
metabolic_and_inflammatory_re-20221117095533328.pdf.jpg202117-Nov-2022Metabolic and inflammatory reprogramming of macrophages by ONC201 translates in a pro-inflammatory environment even in presence of glioblastoma cellsGeiß, Carsten; Witzler, Claudius; Poschet, Gernot; Ruf, Wolfram; Régnier-Vigouroux, Anne
the_cgasstingifn1_response_in-20231012103021973.pdf.jpg202321-Nov-2023The cGAS/STING/IFN-1 response in squamous head and neck cancer cells after genotoxic challenges and abrogation of the ATR-Chk1 and Fanconi anemia axisZahnreich, Sebastian; El Guerzyfy, Soumia; Kaufmann, Justus; Schmidberger, Heinz
2sulfonylpyrimidines_as_privi-20230302115838017.pdf.jpg20212-Mar-20232-sulfonylpyrimidines as privileged warheads for the development of S. aureus sortase A inhibitorsBarthels, Fabian; Meyr, Jessica; Hammerschmidt, Stefan J.; Marciniak, Tessa; Räder, Hans-Joachim; Ziebuhr, Wilma; Engels, Bernd; Schirmeister, Tanja
the_big_picture_of_neurodegen-20221103070007516.pdf.jpg20227-Nov-2022The big picture of neurodegeneration : a meta study to extract the essential evidence on neurodegenerative diseases in a network-based approachRuffini, Nicolas; Klingenberg, Susanne; Heese, Raoul; Schweiger, Susann; Gerber, Susanne
physical_activity_specificall-20221025145207242.pdf.jpg20227-Nov-2022Physical activity specifically evokes release of cell-free DNA from granulocytes thereby affecting liquid biopsyNeuberger, Elmo W. I.; Sontag, Stephanie; Brahmer, Alexandra; Philippi, Keito F. A.; Radsak, Markus P.; Wagner, Wolfgang; Simon, Perikles
hereditary_spherocytosis__can-20231206105835093.pdf.jpg202315-Dec-2023Hereditary spherocytosis : can next-generation sequencing of the five most frequently affected genes replace time-consuming functional investigations?Häuser, Friederike; Rossmann, Heidi; Adenaeuer, Anke; Shrestha, Annette; Marandiuc, Dana; Paret, Claudia; Faber, Jörg; Lackner, Karl J.; Lämmle, Bernhard; Beck, Olaf
targeting_sphingolipid_metabo-20231124084243801.pdf.jpg202324-Nov-2023Targeting sphingolipid metabolism with the sphingosine kinase inhibitor SKI-II overcomes hypoxia-induced chemotherapy resistance in glioblastoma cells: effects on cell death, self-renewal, and invasionSousa, Nadia; Geiß, Carsten; Bindila, Laura; Lieberwirth, Ingo; Kim, Ella; Régnier-Vigouroux, Anne