Biomarker correlates with response to NY-ESO-1 TCR T cells in patients with synovial sarcoma Journal Article


Authors: Gyurdieva, A.; Zajic, S.; Chang, Y. F.; Houseman, E. A.; Zhong, S.; Kim, J.; Nathenson, M.; Faitg, T.; Woessner, M.; Turner, D. C.; Hasan, A. N.; Glod, J.; Kaplan, R. N.; D’Angelo, S. P.; Araujo, D. M.; Chow, W. A.; Druta, M.; Demetri, G. D.; Van Tine, B. A.; Grupp, S. A.; Fine, G. D.; Eleftheriadou, I.
Article Title: Biomarker correlates with response to NY-ESO-1 TCR T cells in patients with synovial sarcoma
Abstract: Autologous T cells transduced to express a high affinity T-cell receptor specific to NY-ESO-1 (letetresgene autoleucel, lete-cel) show promise in the treatment of metastatic synovial sarcoma, with 50% overall response rate. The efficacy of lete-cel treatment in 45 synovial sarcoma patients (NCT01343043) has been previously reported, however, biomarkers predictive of response and resistance remain to be better defined. This post-hoc analysis identifies associations of response to lete-cel with lymphodepleting chemotherapy regimen (LDR), product attributes, cell expansion, cytokines, and tumor gene expression. Responders have higher IL-15 levels pre-infusion (p = 0.011) and receive a higher number of transduced effector memory (CD45RA- CCR7-) CD8 + cells per kg (p = 0.039). Post-infusion, responders have increased IFNγ, IL-6, and peak cell expansion (p < 0.01, p < 0.01, and p = 0.016, respectively). Analysis of tumor samples post-treatment illustrates lete-cel infiltration and a decrease in expression of macrophage genes, suggesting remodeling of the tumor microenvironment. Here we report potential predictive and pharmacodynamic markers of lete-cel response that may inform LDR, cell dose, and strategies to enhance anticancer efficacy. © 2022, This is a U.S. Government work and not under copyright protection in the US; foreign copyright protection may apply.
Keywords: genetics; chemotherapy; cd8+ t lymphocyte; cd8-positive t-lymphocytes; biomarkers; biological marker; metabolism; gene expression; protein; membrane proteins; pathology; tumor antigen; antigens, neoplasm; receptors, antigen, t-cell; biomarker; membrane protein; synovial sarcoma; sarcoma, synovial; tumor; lymphocyte antigen receptor; tumor microenvironment; infiltration; cell component; cancer; humans; human
Journal Title: Nature Communications
Volume: 13
ISSN: 2041-1723
Publisher: Nature Publishing Group  
Date Published: 2022-09-08
Start Page: 5296
Language: English
DOI: 10.1038/s41467-022-32491-x
PUBMED: 36075914
PROVIDER: scopus
PMCID: PMC9458750
DOI/URL:
Notes: Article -- Export Date: 3 October 2022 -- Source: Scopus
Altmetric
Citation Impact
BMJ Impact Analytics
MSK Authors
  1. Sandra Pierina D'Angelo
    254 D'Angelo