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PMID: 16390276 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Validation Study

Parallel detection of transduced T lymphocytes after immunogene therapy of renal cell cancer by flow cytometry and real-time polymerase chain reaction: implications for loss of transgene expression.

Human gene therapy ·Vol. 16 ·No. 12 ·2005-12-00 ·Pages 1452-62

Lamers CH, Gratama JW, Pouw NM, Langeveld SC, Krimpen BA, Kraan J, Stoter G, Debets R

Abstract

We have started a phase I/II immunogene therapy study of metastatic renal cell cancer (RCC), using autologous T lymphocytes transduced ex vivo with a gene encoding a single-chain receptor based on the monoclonal antibody (mAb) G250 [scFv(G250)]. G250 recognizes carbonic anhydrase IX, which is overexpressed by RCC cells. We have developed and validated flow cytometric and real-time polymerase chain reaction (PCR) assays to quantitatively detect transduced T cells in patient blood. The flow assay was based on staining with the anti-G250 idiotype mAb NuH82 and showed a sensitivity of 0.06% scFv(G250)(1) cells within CD3(1) T cells. The real-time PCR method showed a sensitivity of 14 copies of scFv(G250) DNA per 100 ng of total DNA, which enabled detection of 0.008% scFv(G250)(1) T cells within leukocytes. Both assays were further validated for their specificity and reproducibility. When applied to blood samples from three RCC patients treated with intravenous infusions of scFv(G250)(1) T cells, the kinetics of scFv(G250)(1) T cell counts as detected by flow cytometry were similar to those detected by real-time PCR, although PCR allowed detection of transduced T cells over a longer period of time (i.e., for patient 3, 7 versus 32 days, respectively). Interestingly, follow-up studies of patient 3 demonstrated that the number of circulating scFv(G250)(1) T cells remained fairly constant during the first 7 days posttreatment, whereas the number of gene copies increased during the same period of time. These results suggest loss of scFv(G250) membrane expression on adoptive transfer, which would have important implications for the antitumor efficacy of this form of immunogene therapy.

MeSH Terms
Antibodies, Monoclonal/genetics Biomarkers, Tumor Carcinoma, Renal Cell/genetics,immunology,therapy Flow Cytometry/methods Gene Expression Gene Transfer Techniques Humans Immunotherapy Kidney Neoplasms/genetics,immunology,therapy Leukocytes, Mononuclear/metabolism Polymerase Chain Reaction/methods Reproducibility of Results Retroviridae/genetics T-Lymphocytes/immunology,metabolism Transduction, Genetic Transgenes/genetics
Chemicals
Antibodies, Monoclonal Biomarkers, Tumor G250 monoclonal antibody
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Lamers C H J
Laboratory of Clinical and Tumor Immunology, Department of Medical Oncology, Erasmus MC-Daniel den Hoed Cancer Center, 3008 AE Rotterdam, The Netherlands. c.lamers@erasmusmc.nl
Gratama J W
Pouw N M C
Langeveld S C L
Krimpen B A Van
Kraan J
Stoter G
Debets R
Article Info
Journal
Human gene therapy
Abbr.
Hum Gene Ther
ISSN
1043-0342
Published
2005-12-00
Pages
1452-62
Language
English
Region
United States
NLM ID
9008950
Subset
IM
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