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PMID: 20926399 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Multiple injections of electroporated autologous T cells expressing a chimeric antigen receptor mediate regression of human disseminated tumor.

Cancer research ·Vol. 70 ·No. 22 ·2010-11-15 ·Pages 9053-61

Zhao Y, Moon E, Carpenito C, Paulos CM, Liu X, Brennan AL, Chew A, Carroll RG, Scholler J, Levine BL, Albelda SM, June CH

Abstract

Redirecting T lymphocyte antigen specificity by gene transfer can provide large numbers of tumor-reactive T lymphocytes for adoptive immunotherapy. However, safety concerns associated with viral vector production have limited clinical application of T cells expressing chimeric antigen receptors (CAR). T lymphocytes can be gene modified by RNA electroporation without integration-associated safety concerns. To establish a safe platform for adoptive immunotherapy, we first optimized the vector backbone for RNA in vitro transcription to achieve high-level transgene expression. CAR expression and function of RNA-electroporated T cells could be detected up to a week after electroporation. Multiple injections of RNA CAR-electroporated T cells mediated regression of large vascularized flank mesothelioma tumors in NOD/scid/γc(-/-) mice. Dramatic tumor reduction also occurred when the preexisting intraperitoneal human-derived tumors, which had been growing in vivo for >50 days, were treated by multiple injections of autologous human T cells electroporated with anti-mesothelin CAR mRNA. This is the first report using matched patient tumor and lymphocytes showing that autologous T cells from cancer patients can be engineered to provide an effective therapy for a disseminated tumor in a robust preclinical model. Multiple injections of RNA-engineered T cells are a novel approach for adoptive cell transfer, providing flexible platform for the treatment of cancer that may complement the use of retroviral and lentiviral engineered T cells. This approach may increase the therapeutic index of T cells engineered to express powerful activation domains without the associated safety concerns of integrating viral vectors.

MeSH Terms
Animals Antigens, CD19/genetics,metabolism Cells, Cultured Cytotoxicity, Immunologic/immunology Electroporation Flow Cytometry GPI-Linked Proteins/genetics,metabolism Humans Immunotherapy, Adoptive/methods Injections K562 Cells Membrane Glycoproteins/genetics,metabolism Mesothelin Mesothelioma/immunology,pathology,therapy Mice Mice, Inbred NOD Mice, SCID RNA, Messenger/genetics,metabolism Recombinant Fusion Proteins/genetics,metabolism T-Lymphocytes/metabolism,transplantation Tumor Burden/immunology Tumor Cells, Cultured Xenograft Model Antitumor Assays
Chemicals
Antigens, CD19 GPI-Linked Proteins Membrane Glycoproteins Msln protein, mouse RNA, Messenger Recombinant Fusion Proteins Mesothelin
Authors & Affiliations
12 authors, click to expand affiliations / ORCID
Zhao Yangbing
Abramson Family Cancer Research Institute and Department of Pathology and Laboratory Medicine and Thoracic Oncology Research Laboratory and Division of Pulmonary, Allergy, and Critical Care Medicine, University of Pennsylvania School of Medicine, Philadelphia, Pennsylvania 19104-6160, USA. [email protected]
Moon Edmund
Carpenito Carmine
Paulos Chrystal M
Liu Xiaojun
Brennan Andrea L
Chew Anne
Carroll Richard G
Scholler John
Levine Bruce L
Albelda Steven M
June Carl H
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Article Info
Journal
Cancer research
Abbr.
Cancer Res
ISSN
1538-7445
Published
2010-11-15
Epub
2010-00-05
Pages
9053-61
Language
English
Region
United States
NLM ID
2984705R
PMCID
PMC2982929
Subset
IM
Grants
NCI NIH HHS · R01CA120409 · United States
NCI NIH HHS · P01 CA066726 · United States
NCI NIH HHS · P01 CA066726-10A2 · United States
NCI NIH HHS · P01-CA-066726 · United States
NCI NIH HHS · R01 CA120409 · United States
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