T lymphocytes with a normal ADA gene accumulate after transplantation of transduced autologous umbilical cord blood CD34+ cells in ADA-deficient SCID neonates

被引:0
|
作者
Donald B. Kohn
Michal S. Hershfield
Denise Carbonaro
Ann Shigeoka
Judith Brooks
E. Monika Smogorzewska
Lora W. Barsky
Raymond Chan
Felix Burotto
Geralyn Annett
Jan A. Nolta
Gay Crooks
Neena Kapoor
Melissa Eldetr
Diane Wara
Thomas Bowen
Edward Madsen
Floyd F. Synder
John Bastian
Linda Muul
R. Michael Blaese
Kenneth Weinberg
Robertson Parkman
机构
[1] Children's Hospital,Division of Research Immunology/Bone Marrow Transplantation
[2] Los Angeles,Department of Medicine
[3] Duke University Medical Center,Department of Pediatrics
[4] University of Utah Health Sciences,Department of Pediatrics
[5] University of California at San Francisco,Clinical Gene Therapy Branch, National Center for Human Genome Research
[6] Alberta Children's Hospital,undefined
[7] Children's Hospital and Health Center,undefined
[8] National Institutes of Health,undefined
来源
Nature Medicine | 1998年 / 4卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Adenosine deaminase-deficient severe combined immunodeficiency was the first disease investigated for gene therapy because of a postulated production or survival advantage for genecorrected T lymphocytes, which may overcome inefficient gene transfer. Four years after three newborns with this disease were given infusions of transduced autologous umbilical cord blood CD34+ cells, the frequency of gene-containing T lymphocytes has risen to 1–10%, whereas the frequencies of other hematopoietic and lymphoid cells containing the gene remain at 0.01–0.1%. Cessation of polyethylene glycol-conjugated adenosine deaminase enzyme replacement in one subject led to a decline in immune function, despite the persistence of gene-containing T lymphocytes. Thus, despite the long-term engraftment of transduced stem cells and selective accumulation of gene-containing T lymphocytes, improved gene transfer and expression will be needed to attain a therapeutic effect.
引用
收藏
页码:775 / 780
页数:5
相关论文
共 50 条
  • [1] T lymphocytes with a normal ADA gene accumulate after transplantation of transduced autologous umbilical cord blood CD34+ cells in ADA-deficient SCID neonates
    Kohn, DB
    Hershfield, MS
    Carbonaro, D
    Shigeoka, A
    Brooks, J
    Smogorzewska, EM
    Barsky, LW
    Chan, R
    Burotto, F
    Annett, G
    Nolta, JA
    Crooks, G
    Kapoor, N
    Elder, M
    Wara, D
    Bowen, T
    Madsen, E
    Snyder, FF
    Bastian, J
    Muul, L
    Blaese, RM
    Weinberg, K
    Parkman, R
    NATURE MEDICINE, 1998, 4 (07) : 775 - 780
  • [2] GENE-THERAPY FOR NEONATES WITH ADA-DEFICIENT SCID BY RETROVIRAL-MEDIATED TRANSFER OF THE HUMAN ADA CDNA INTO UMBILICAL-CORD CD34+ CELLS
    KOHN, DB
    WEINBERG, KI
    PARKMAN, R
    LENARSKY, C
    CROOKS, GM
    SHAW, K
    HANLEY, ME
    LAWRENCE, K
    ANNETT, G
    BROOKS, JS
    WARA, D
    ELDER, M
    BOWEN, T
    HERSHFIELD, MS
    BERENSON, RI
    MOEN, RC
    MULLEN, CA
    BLAESE, RM
    JOURNAL OF CELLULAR BIOCHEMISTRY, 1994, : 238 - 238
  • [3] GENE-THERAPY FOR NEONATES WITH ADA-DEFICIENT SCID BY RETROVIRAL-MEDIATED TRANSFER OF THE HUMAN ADA CDNA INTO UMBILICAL-CORD CD34+ CELLS
    KOHN, DB
    WEINBERG, KI
    PARKMAN, R
    LENARSKY, C
    CROOKS, GM
    SHAW, K
    HANLEY, ME
    LAWRENCE, K
    ANNETT, G
    BROOKS, JS
    WARA, D
    ELDER, M
    BOWEN, T
    HERSHFIELD, MS
    BERENSON, RI
    MOEN, RC
    MULLEN, CA
    BLAESE, RM
    BLOOD, 1993, 82 (10) : A315 - A315
  • [4] Clonality analysis after retroviral-mediated gene transfer to CD34+ cells from the cord blood of ADA-deficient SCID neonates
    Schmidt, M
    Carbonaro, DA
    Speckmann, C
    Wissler, M
    Bohnsack, J
    Elder, M
    Aronow, BJ
    Nolta, JA
    Kohn, DB
    von Kalle, C
    NATURE MEDICINE, 2003, 9 (04) : 463 - 468
  • [5] Clonality analysis after retroviral-mediated gene transfer to CD34+ cells from the cord blood of ADA-deficient SCID neonates
    Manfred Schmidt
    Denise A. Carbonaro
    Carsten Speckmann
    Manuela Wissler
    John Bohnsack
    Melissa Elder
    Bruce J. Aronow
    Jan A. Nolta
    Donald B. Kohn
    Christof von Kalle
    Nature Medicine, 2003, 9 : 463 - 468
  • [6] PEG-ADA reduction in recipients of ADA gene-transduced autologous umbilical cord blood CD34+ cells.
    Kohn, DB
    Weinberg, KI
    Shigeoka, A
    Carbonaro, D
    Brooks, J
    Smogorzewska, EM
    Barsky, LW
    Annett, G
    Nolta, JA
    Kapoor, N
    Crooks, GM
    Elder, M
    Wara, D
    Bowen, T
    Muul, L
    Hershfield, M
    Blaese, RM
    Parkman, R
    BLOOD, 1997, 90 (10) : 1798 - 1798
  • [7] Selective accumulation of ADA gene-transduced T lymphocytes upon PEG-ADA dosage reduction after gene therapy with transduced CD34+ umbilical cord blood cells
    Kohn, DB
    Weinberg, KI
    Lenarsky, C
    Crooks, GM
    Heiss, LN
    Nolta, JA
    Smogorzewska, EM
    Bastian, J
    Wara, D
    Elder, M
    Bowen, T
    Hershfield, M
    Blaese, RM
    Parkman, R
    BLOOD, 1995, 86 (10) : 1168 - 1168
  • [8] GENE-THERAPY FOR NEONATES WITH ADENOSINE-DEAMINASE (ADA) DEFICIENT SCID BY RETROVIRAL-MEDIATED TRANSFER OF THE HUMAN ADA CDNA INTO UMBILICAL-CORD CD34+ CELLS
    KOHN, DB
    WEINBERG, KI
    LENARSKY, C
    CROOKS, GM
    HANLEY, ME
    LAWRENCE, K
    ANNETT, G
    BROOKS, JS
    WARA, D
    ELDER, M
    WILLIAMSHERMAN, D
    BOWEN, T
    HERSHFIELD, MS
    BERENSON, RI
    MOEN, RC
    MULLEN, CA
    BLAESE, RM
    PARKMAN, R
    PEDIATRIC RESEARCH, 1994, 35 (04) : A152 - A152
  • [9] TRANSFER OF THE ADA GENE INTO BONE-MARROW CELLS AND PERIPHERAL-BLOOD LYMPHOCYTES FOR THE TREATMENT OF PATIENTS AFFECTED BY ADA-DEFICIENT SCID
    BORDIGNON, C
    HUMAN GENE THERAPY, 1993, 4 (04) : 513 - 520
  • [10] GENE-THERAPY FOR NEONATES WITH ADA DEFICIENCY BY TRANSFER OF THE HUMAN ADA CDNA INTO UMBILICAL-CORD CD34+ CELLS 2-YEAR FOLLOW-UP
    KOHN, DB
    WEINBERG, KI
    LENARSKY, C
    CROOKS, G
    HEISS, LN
    NOLTA, JA
    WARA, D
    ELDER, M
    WILLIAMSHERMAN, D
    BOWEN, T
    MOEN, RC
    BLAESE, RM
    PEDIATRIC RESEARCH, 1995, 37 (04) : A9 - A9