Effective gene therapy with nonintegrating lentiviral vectors

被引:0
作者
Rafael J Yáñez-Muñoz
Kamaljit S Balaggan
Angus MacNeil
Steven J Howe
Manfred Schmidt
Alexander J Smith
Prateek Buch
Robert E MacLaren
Patrick N Anderson
Susie E Barker
Yanai Duran
Cynthia Bartholomae
Christof von Kalle
John R Heckenlively
Christine Kinnon
Robin R Ali
Adrian J Thrasher
机构
[1] Molecular Immunology Unit,Division of Molecular Therapy
[2] Institute of Child Health,Department of Internal Medicine I
[3] University College London,Department of Anatomy and Developmental Biology
[4] Centre for Medical Oncology,Department of Immunology
[5] Institute of Cancer and the CR-UK Clinical Centre,Nuclear Biology Group, Department of Medical and Molecular Genetics
[6] Barts and The London,undefined
[7] Queen Mary's School of Medicine and Dentistry,undefined
[8] John Vane Science Centre,undefined
[9] Institute of Ophthalmology,undefined
[10] University College London,undefined
[11] University Hospital,undefined
[12] Hugstetter Strasse 55,undefined
[13] 79106 Freiburg and Institute of Molecular Medicine and Cell Research,undefined
[14] Albert-Ludwigs-University,undefined
[15] Stefan-Meier-Strasse 17,undefined
[16] National Center for Tumor Diseases (NCT),undefined
[17] Im Neuenheimer Feld 350,undefined
[18] University College London,undefined
[19] Cincinnati Children's Research Foundation,undefined
[20] Molecular and Gene Therapy Program,undefined
[21] Kellogg Eye Center,undefined
[22] Great Ormond Street Hospital for Children NHS Trust,undefined
[23] King's College London School of Medicine,undefined
[24] Guy's Tower,undefined
[25] Guy's Hospital,undefined
来源
Nature Medicine | 2006年 / 12卷
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摘要
Retroviral and lentiviral vector integration into host-cell chromosomes carries with it a finite chance of causing insertional mutagenesis1. This risk has been highlighted by the induction of malignancy in mouse models, and development of lymphoproliferative disease in three individuals with severe combined immunodeficiency–X1 (refs. 2,3). Therefore, a key challenge for clinical therapies based on retroviral vectors is to achieve stable transgene expression while minimizing insertional mutagenesis. Recent in vitro studies have shown that integration-deficient lentiviral vectors can mediate stable transduction4,5,6. With similar vectors, we now show efficient and sustained transgene expression in vivo in rodent ocular and brain tissues. We also show substantial rescue of clinically relevant rodent models of retinal degeneration. Therefore, the high efficiency of gene transfer and expression mediated by lentiviruses can be harnessed in vivo without a requirement for vector integration. For therapeutic application to postmitotic tissues, this system substantially reduces the risk of insertional mutagenesis.
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页码:348 / 353
页数:5
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