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  NASH limits anti-tumour surveillance in immunotherapy-treated HCC

Pfister, D., Nunez, N. G., Pinyol, R., Govaere, O., Pinter, M., Szydlowska, M., et al. (2021). NASH limits anti-tumour surveillance in immunotherapy-treated HCC. Nature, 592, 450-456. doi:10.1038/s41586-021-03362-0.

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Open access funding provided by Deutsches Krebsforschungszentrum (DKFZ) (1052).

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Urheber

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 Urheber:
Pfister, Dominik1, Autor
Nunez, Nicolas Gonzalo1, Autor
Pinyol, Roser1, Autor
Govaere, Olivier1, Autor
Pinter, Matthias1, Autor
Szydlowska, Marta1, Autor
Gupta, Revant1, Autor
Qiu, Mengjie1, Autor
Deczkowska, Aleksandra1, Autor
Weiner, Assaf1, Autor
Mueller, Florian1, Autor
Sinha, Ankit2, Autor           
Friebel, Ekaterina1, Autor
Engleitner, Thomas1, Autor
Lenggenhager, Daniela1, Autor
Moncsek, Anja1, Autor
Heide, Danijela1, Autor
Stirm, Kristin1, Autor
Kosla, Jan1, Autor
Kotsiliti, Eleni1, Autor
Leone, Valentina1, AutorDudek, Michael1, AutorYousuf, Suhail1, AutorInverso, Donato1, AutorSingh, Indrabahadur1, AutorTeijeiro, Ana1, AutorCastet, Florian1, AutorMontironi, Carla1, AutorHaber, Philipp K.1, AutorTiniakos, Dina1, AutorBedossa, Pierre1, AutorCockell, Simon1, AutorYounes, Ramy1, AutorVacca, Michele1, AutorMarra, Fabio1, AutorSchattenberg, Jorn M.1, AutorAllison, Michael1, AutorBugianesi, Elisabetta1, AutorRatziu, Vlad1, AutorPressiani, Tiziana1, AutorD'Alessio, Antonio1, AutorPersoneni, Nicola1, AutorRimassa, Lorenza1, AutorDaly, Ann K.1, AutorScheiner, Bernhard1, AutorPomej, Katharina1, AutorKirstein, Martha M.1, AutorVogel, Arndt1, AutorPeck-Radosavljevic, Markus1, AutorHucke, Florian1, AutorFinkelmeier, Fabian1, AutorWaidmann, Oliver1, AutorTrojan, Jorg1, AutorSchulze, Kornelius1, AutorWege, Henning1, AutorKoch, Sandra1, AutorWeinmann, Arndt1, AutorBueter, Marco1, AutorRossler, Fabian1, AutorSiebenhuner, Alexander1, AutorDe Dosso, Sara1, AutorMallm, Jan-Philipp1, AutorUmansky, Viktor1, AutorJugold, Manfred1, AutorLuedde, Tom1, AutorSchietinger, Andrea1, AutorSchirmacher, Peter1, AutorEmu, Brinda1, AutorAugustin, Hellmut G.1, AutorBilleter, Adrian1, AutorMueller-Stich, Beat1, AutorKikuchi, Hiroto1, AutorDuda, Dan G.1, AutorKutting, Fabian1, AutorWaldschmidt, Dirk-Thomas1, AutorEbert, Matthias Philip1, AutorRahbari, Nuh1, AutorMei, Henrik E.1, AutorSchulz, Axel Ronald1, AutorRingelhan, Marc1, AutorMalek, Nisar1, AutorSpahn, Stephan1, AutorBitzer, Michael1, AutorRuiz de Galarreta, Marina1, AutorLujambio, Amaia1, AutorDufour, Jean-Francois1, AutorMarron, Thomas U.1, AutorKaseb, Ahmed1, AutorKudo, Masatoshi1, AutorHuang, Yi-Hsiang1, AutorDjouder, Nabil1, AutorWolter, Katharina1, AutorZender, Lars1, AutorMarche, Parice N.1, AutorDecaens, Thomas1, AutorPinato, David J.1, AutorRad, Roland1, AutorMertens, Joachim C.1, AutorWeber, Achim1, AutorUnger, Kristian1, AutorMeissner, Felix2, Autor           Roth, Susanne1, AutorJilkova, Zuzana Macek1, AutorClaassen, Manfred1, AutorAnstee, Quentin M.1, AutorAmit, Ido1, AutorKnolle, Percy1, AutorBecher, Burkhard1, AutorLlovet, Josep M.1, AutorHeikenwalder, Mathias1, Autor mehr..
Affiliations:
1external, ou_persistent22              
2Meissner, Felix / Experimental Systems Immunology, Max Planck Institute of Biochemistry, Max Planck Society, ou_2149678              

Inhalt

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Schlagwörter: Science & Technology - Other Topics;
 Zusammenfassung: Hepatocellular carcinoma (HCC) can have viral or non-viral causes(1-5). Non-alcoholic steatohepatitis (NASH) is an important driver of HCC. Immunotherapy has been approved for treating HCC, but biomarker-based stratification of patients for optimal response to therapy is an unmet need(6,7). Here we report the progressive accumulation of exhausted, unconventionally activated CD8(+)PD1(+) T cells in NASH-affected livers. In preclinical models of NASH-induced HCC, therapeutic immunotherapy targeted at programmed death-1 (PD1) expanded activated CD8(+)PD1(+) T cells within tumours but did not lead to tumour regression, which indicates that tumour immune surveillance was impaired. When given prophylactically, anti-PD1 treatment led to an increase in the incidence of NASH-HCC and in the number and size of tumour nodules, which correlated with increased hepatic CD8(+)PD1(+)CXCR6(+), TOX+, and TNF+ T cells. The increase in HCC triggered by anti-PD1 treatment was prevented by depletion of CD8(+) T cells or TNF neutralization, suggesting that CD8(+) T cells help to induce NASH-HCC, rather than invigorating or executing immune surveillance. We found similar phenotypic and functional profiles in hepatic CD8(+)PD1(+) T cells from humans with NAFLD or NASH. A meta-analysis of three randomized phase III clinical trials that tested inhibitors of PDL1 (programmed death-ligand 1) or PD1 in more than 1,600 patients with advanced HCC revealed that immune therapy did not improve survival in patients with non-viral HCC. In two additional cohorts, patients with NASH-driven HCC who received anti-PD1 or anti-PDL1 treatment showed reduced overall survival compared to patients with other aetiologies. Collectively, these data show that non-viral HCC, and particularly NASH-HCC, might be less responsive to immunotherapy, probably owing to NASH-related aberrant T cell activation causing tissue damage that leads to impaired immune surveillance. Our data provide a rationale for stratification of patients with HCC according to underlying aetiology in studies of immunotherapy as a primary or adjuvant treatment.

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Sprache(n): eng - English
 Datum: 2021
 Publikationsstatus: Erschienen
 Seiten: 38
 Ort, Verlag, Ausgabe: -
 Inhaltsverzeichnis: -
 Art der Begutachtung: -
 Identifikatoren: ISI: 000632421900004
DOI: 10.1038/s41586-021-03362-0
 Art des Abschluß: -

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Titel: Nature
  Kurztitel : Nature
Genre der Quelle: Zeitschrift
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Ort, Verlag, Ausgabe: London : Nature Publishing Group
Seiten: - Band / Heft: 592 Artikelnummer: - Start- / Endseite: 450 - 456 Identifikator: ISSN: 0028-0836
CoNE: https://pure.mpg.de/cone/journals/resource/954925427238