The overall goal of this study is to investigate the safety of T4 immunotherapy when administered to treat loco-regional disease in Squamous Cell Cancer of the Head and Neck (SCCHN) that is not suitable for conventional active therapy. The investigators propose to conduct an open-labelled, non-randomized, dose-escalation phase I trial in which autologous T4+ T-cells are administered to patients with SCCHN. T-cells will be engineered to express a second generation chimeric antigen receptor (CAR) named T1E28z. Engineered T-cells will be injected directly into the tumour site. Patients will not be lymphodepleted. A classical 3+3 design will be employed, with dose escalation from 10\^7 through to 10\^9 transduced T4+ T-cells, dependent upon toxicity monitoring. It is anticipated that up to 30 patients will be enrolled over the course of the study.
Further information is provided in van Schalkwyk MC, Papa SE, Jeannon JP, Guerrero Urbano T, Spicer JF, Maher J. Design of a phase I clinical trial to evaluate intratumoral delivery of ErbB-targeted chimeric antigen receptor T-cells in locally advanced or recurrent head and neck cancer. Hum Gene Ther Clin Dev. 2013 Sep;24(3):134-42. doi: 10.1089/humc.2013.144. PubMed ID: 24099518
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
TREATMENT
Masking
NONE
Enrollment
30
Intra-tumoral administration of a single dose of T4-positive patient-derived T-cells (at five escalating dose levels) contained within 1-4 mL. Cohort 6 patients receive CAR T-cells (dose level 3) after lymphodepletion with fludarabine and cyclophosphamide. Cohort 7-8 patients receive T4 cells after lymphodepletion as above, combined with 4 doses of nivolumab.
Clinical Research Facility, Guy's Hospital
London, London, United Kingdom
RECRUITINGDose limiting toxicities for T4 immunotherapy in SCCHN and determine a safe and feasible recommended dose for phase II testing of intra-tumoral T4 immunotherapy.
Patients will be monitored intensely for the first 24 hours post T4 administration. Patients will the be assessed for signs of toxicity on days 3-4, 5-7, 8, 15, 29 and 43.
Time frame: Up to 6 weeks post T4 administration
To investigate serum cytokine levels after administration of T4 immunotherapy
Time frame: up to 6 weeks post T4 administration
To investigate persistence of T4+ T-cells at the site of administration and in the peripheral circulation
Time frame: up to 6 weeks post T4 administration
To achieve preliminary assessment of anti-tumour activity, using cross-sectional imaging to quantify objective responses
Time frame: up to 6 weeks post T4 administration
To investigate tumour ErbB receptor phenotype, before and after administration of T4 immunotherapy
Time frame: up to 6 weeks post T4 administration
To investigate immunomodulatory effects of metronomic cyclophosphamide on T4 immunotherapy
Pre- and post-treatment absolute number of circulating T-regulatory cells will be compared.
Time frame: up to 6 weeks post T4 administration
To investigate effect of T4 immunotherapy upon immune reactivity against endogenous tumour antigens
ELISPOT will be performed on blood samples taken 3 days prior and 29 days after T4 administration to measure for MAGE-reactive T-cells.
Time frame: up to 6 weeks post T4 administration
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