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Preclinical evaluation of an affinity-enhanced MAGE-A4-specific T-cell receptor for adoptive T-cell therapy.
Sanderson, Joseph P; Crowley, Darragh J; Wiedermann, Guy E; Quinn, Laura L; Crossland, Katherine L; Tunbridge, Helen M; Cornforth, Terri V; Barnes, Christopher S; Ahmed, Tina; Howe, Karen; Saini, Manoj; Abbott, Rachel J; Anderson, Victoria E; Tavano, Barbara; Maroto, Miguel; Gerry, Andrew B.
Affiliation
  • Sanderson JP; Preclinical Research, Adaptimmune, Abingdon, UK.
  • Crowley DJ; Preclinical Research, Adaptimmune, Abingdon, UK.
  • Wiedermann GE; Preclinical Research, Adaptimmune, Abingdon, UK.
  • Quinn LL; Preclinical Research, Adaptimmune, Abingdon, UK.
  • Crossland KL; Preclinical Research, Adaptimmune, Abingdon, UK.
  • Tunbridge HM; Preclinical Research, Adaptimmune, Abingdon, UK.
  • Cornforth TV; Preclinical Research, Adaptimmune, Abingdon, UK.
  • Barnes CS; Translational Sciences, Adaptimmune, Abingdon, UK.
  • Ahmed T; Preclinical Research, Adaptimmune, Abingdon, UK.
  • Howe K; Target Validation, Adaptimmune, Abingdon, UK.
  • Saini M; Preclinical Research, Adaptimmune, Abingdon, UK.
  • Abbott RJ; Preclinical Research, Adaptimmune, Abingdon, UK.
  • Anderson VE; Preclinical Research, Adaptimmune, Abingdon, UK.
  • Tavano B; Preclinical Research, Adaptimmune, Abingdon, UK.
  • Maroto M; Target Validation, Adaptimmune, Abingdon, UK.
  • Gerry AB; Preclinical Research, Adaptimmune, Abingdon, UK.
Oncoimmunology ; 9(1): 1682381, 2020.
Article de En | MEDLINE | ID: mdl-32002290
ABSTRACT
A substantial obstacle to the success of adoptive T cell-based cancer immunotherapy is the sub-optimal affinity of T-cell receptors (TCRs) for most tumor antigens. Genetically engineered TCRs that have enhanced affinity for specific tumor peptide-MHC complexes may overcome this barrier. However, this enhancement risks increasing weak TCR cross-reactivity to other antigens expressed by normal tissues, potentially leading to clinical toxicities. To reduce the risk of such adverse clinical outcomes, we have developed an extensive preclinical testing strategy, involving potency testing using 2D and 3D human cell cultures and primary tumor material, and safety testing using human primary cell and cell-line cross-reactivity screening and molecular analysis to predict peptides recognized by the affinity-enhanced TCR. Here, we describe this strategy using a developmental T-cell therapy, ADP-A2M4, which recognizes the HLA-A2-restricted MAGE-A4 peptide GVYDGREHTV. ADP-A2M4 demonstrated potent anti-tumor activity in the absence of major off-target cross-reactivity against a range of human primary cells and cell lines. Identification and characterization of peptides recognized by the affinity-enhanced TCR also revealed no cross-reactivity. These studies demonstrated that this TCR is highly potent and without major safety concerns, and as a result, this TCR is now being investigated in two clinical trials (NCT03132922, NCT04044768).
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Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Sujet principal: Récepteurs aux antigènes des cellules T / Immunothérapie adoptive Type d'étude: Prognostic_studies Limites: Humans Langue: En Journal: Oncoimmunology Année: 2020 Type de document: Article Pays d'affiliation: Royaume-Uni

Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Sujet principal: Récepteurs aux antigènes des cellules T / Immunothérapie adoptive Type d'étude: Prognostic_studies Limites: Humans Langue: En Journal: Oncoimmunology Année: 2020 Type de document: Article Pays d'affiliation: Royaume-Uni