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αβ-T Cells Engineered to Express γδ-T Cell Receptors Can Kill Neuroblastoma Organoids Independent of MHC-I Expression
- Source :
- Journal of Personalized Medicine, 11(9):923. MDPI Multidisciplinary Digital Publishing Institute, Journal of Personalized Medicine, Volume 11, Issue 9, Journal of Personalized Medicine, 11(9), 1. Multidisciplinary Digital Publishing Institute (MDPI), Journal of Personalized Medicine, Vol 11, Iss 923, p 923 (2021)
- Publication Year :
- 2021
-
Abstract
- Currently ~50% of patients with a diagnosis of high-risk neuroblastoma will not survive due to relapsing or refractory disease. Recent innovations in immunotherapy for solid tumors are highly promising, but the low MHC-I expression of neuroblastoma represents a major challenge for T cell-mediated immunotherapy. Here, we propose a novel T cell-based immunotherapy approach for neuroblastoma, based on the use of TEG002, αβ-T cells engineered to express a defined γδ-T cell receptor, which can recognize and kill target cells independent of MHC-I. In a co-culture killing assay, we showed that 3 out of 6 neuroblastoma organoids could activate TEG002 as measured by IFNγ production. Transcriptional profiling showed this effect correlates with an increased activity of processes involved in interferon signaling and extracellular matrix organization. Analysis of the dynamics of organoid killing by TEG002 over time confirmed that organoids which induced TEG002 activation were efficiently killed independent of their MHC-I expression. Of note, efficacy of TEG002 treatment was superior to donor-matched untransduced αβ-T cells or endogenous γδ-T cells. Our data suggest that TEG002 may be a promising novel treatment option for a subset of neuroblastoma patients.
- Subjects :
- T cell
medicine.medical_treatment
Medicine (miscellaneous)
Major histocompatibility complex
Article
γδ-T cells
neuroblastoma
Neuroblastoma
Interferon
MHC class I
medicine
Organoid
MHC-I
TEG002
biology
Immunotherapy
medicine.disease
medicine.anatomical_structure
Cancer research
biology.protein
Medicine
immunotherapy
medicine.drug
Extracellular matrix organization
Subjects
Details
- Language :
- English
- ISSN :
- 20754426
- Database :
- OpenAIRE
- Journal :
- Journal of Personalized Medicine, 11(9):923. MDPI Multidisciplinary Digital Publishing Institute, Journal of Personalized Medicine, Volume 11, Issue 9, Journal of Personalized Medicine, 11(9), 1. Multidisciplinary Digital Publishing Institute (MDPI), Journal of Personalized Medicine, Vol 11, Iss 923, p 923 (2021)
- Accession number :
- edsair.doi.dedup.....a5758e9e2b160808f1a7ecbbc74004a7