Works matching IS 19466234 AND DT 2022 AND VI 14 AND IP 631


Results: 6
    1

    Escape from recognition of SARS-CoV-2 variant spike epitopes but overall preservation of T cell immunity.

    Published in:
    Science Translational Medicine, 2022, v. 14, n. 631, p. 1, doi. 10.1126/scitranslmed.abj6824
    By:
    • Riou, Catherine;
    • Keeton, Roanne;
    • Moyo-Gwete, Thandeka;
    • Hermanus, Tandile;
    • Kgagudi, Prudence;
    • Baguma, Richard;
    • Valley-Omar, Ziyaad;
    • Smith, Mikhail;
    • Tegally, Houriiyah;
    • Doolabh, Deelan;
    • Iranzadeh, Arash;
    • Tyers, Lynn;
    • Mutavhatsindi, Hygon;
    • Tincho, Marius B.;
    • Benede, Ntombi;
    • Marais, Gert;
    • Chinhoyi, Lionel R.;
    • Mennen, Mathilda;
    • Skelem, Sango;
    • du Bruyn, Elsa
    Publication type:
    Article
    2

    Ebola virus persistence and disease recrudescence in the brains of antibody-treated nonhuman primate survivors.

    Published in:
    Science Translational Medicine, 2022, v. 14, n. 631, p. 1, doi. 10.1126/scitranslmed.abi5229
    By:
    • Liu, Jun;
    • Trefry, John C.;
    • Babka, April M.;
    • Schellhase, Christopher W.;
    • Coffin, Kayla M.;
    • Williams, Janice A.;
    • Raymond, Jo Lynne W.;
    • Facemire, Paul R.;
    • Chance, Taylor B.;
    • Davis, Neil M.;
    • Scruggs, Jennifer L.;
    • Rossi, Franco D.;
    • Haddow, Andrew D.;
    • Zelko, Justine M.;
    • Bixler, Sandra L.;
    • Crozier, Ian;
    • Iversen, Patrick L.;
    • Pitt, Margaret L.;
    • Kuhn, Jens H.;
    • Palacios, Gustavo
    Publication type:
    Article
    3
    4
    5

    Targeting an alternate Wilms' tumor antigen 1 peptide bypasses immunoproteasome dependency.

    Published in:
    Science Translational Medicine, 2022, v. 14, n. 631, p. 1, doi. 10.1126/scitranslmed.abg8070
    By:
    • Lahman, Miranda C.;
    • Schmitt, Thomas M.;
    • Paulson, Kelly G.;
    • Vigneron, Nathalie;
    • Buenrostro, Denise;
    • Wagener, Felecia D.;
    • Voillet, Valentin;
    • Martin, Lauren;
    • Gottardo, Raphael;
    • Bielas, Jason;
    • McElrath, Julie M.;
    • Stirewalt, Derek L.;
    • Pogosova-Agadjanyan, Era L.;
    • Yeung, Cecilia C.;
    • Pierce, Robert H.;
    • Egan, Daniel N.;
    • Bar, Merav;
    • Hendrie, Paul C.;
    • Kinsella, Sinéad;
    • Vakil, Aesha
    Publication type:
    Article
    6

    CRISPR-based gene disruption and integration of high-avidity, WT1-specific T cell receptors improve antitumor T cell function.

    Published in:
    Science Translational Medicine, 2022, v. 14, n. 631, p. 1, doi. 10.1126/scitranslmed.abg8027
    By:
    • Ruggiero, Eliana;
    • Carnevale, Erica;
    • Prodeus, Aaron;
    • Magnani, Zulma Irene;
    • Camisa, Barbara;
    • Merelli, Ivan;
    • Politano, Claudia;
    • Stasi, Lorena;
    • Potenza, Alessia;
    • Cianciotti, Beatrice Claudia;
    • Manfredi, Francesco;
    • Di Bono, Mattia;
    • Vago, Luca;
    • Tassara, Michela;
    • Mastaglio, Sara;
    • Ponzoni, Maurilio;
    • Sanvito, Francesca;
    • Liu, Dai;
    • Balwani, Ishina;
    • Galli, Rossella
    Publication type:
    Article