TEG001 Insert Integrity from Vector Producer Cells until Medicinal Product
Despite extensive usage of gene therapy medicinal products (GTMPs) in clinical studies and recent approval of chimeric antigen receptor (CAR) T cell therapy, little information has been made available on the precise molecular characterization and possible variations in terms of insert integrity and...
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Veröffentlicht in: | Molecular therapy 2020-02, Vol.28 (2), p.561-571 |
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Sprache: | eng |
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Zusammenfassung: | Despite extensive usage of gene therapy medicinal products (GTMPs) in clinical studies and recent approval of chimeric antigen receptor (CAR) T cell therapy, little information has been made available on the precise molecular characterization and possible variations in terms of insert integrity and vector copy numbers of different GTMPs during the complete production chain. Within this context, we characterize αβT cells engineered to express a defined γδT cell engineered to express a defined γδT receptor (TEG) currently used in a first-in-human clinical study (NTR6541). Utilizing targeted locus amplification in combination with next generation sequencing for the vector producer clone and TEG001 products, we report on five single-nucleotide variants and nine intact vector copies integrated in the producer clone. The vector copy number in TEG001 cells was on average a factor 0.72 (SD 0.11) below that of the producer cell clone. All nucleotide variants were transferred to TEG001 without having an effect on cellular proliferation during extensive in vitro culture. Based on an environmental risk assessment of the five nucleotide variants present in the non-coding viral region of the TEG001 insert, there was no altered environmental impact of TEG001 cells. We conclude that TEG001 cells do not have an increased risk for malignant transformation in vivo.
Straetemans and colleagues characterized αβT cells engineered to express a defined γδT cell receptor (TEG001) used in a first-in-human clinical study, with TLA in combination with NGS and qPCR. They provide a rapid strategy to evaluate the presence, integrity, and persistence of genetic information along the production chain of any GTMP. |
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ISSN: | 1525-0016 1525-0024 |
DOI: | 10.1016/j.ymthe.2019.11.030 |