Risks and Mechanisms of Oncological Disease Following Stem Cell Transplantation

被引:17
作者
Anisimov, Sergey V. [1 ,2 ]
Morizane, Asuka [3 ]
Correia, Ana S. [4 ]
机构
[1] VA Almazov Fed Ctr Heart Blood & Endocrinol, Res Dept Cell & Gene Therapy, St Petersburg 197341, Russia
[2] Russian Acad Sci, Inst Cytol, Dept Intracellular Signaling & Transport, St Petersburg 194064, Russia
[3] Kyoto Univ, Inst Frontier Med Sci, Dept Biol Repair Field Clin Applicat, Sakyo Ku, Kyoto 6068507, Japan
[4] Univ Laval, CHUL, Ctr Rech, Fac Med, Quebec City, PQ G1V 4G2, Canada
基金
瑞典研究理事会;
关键词
Stem cells; Donor cell leukemia; Teratoma; Non-teratoma tumors; Graft overgrowth; BONE-MARROW-TRANSPLANTATION; ACUTE MYELOID-LEUKEMIA; HUMAN ALPHA-LACTALBUMIN; CORD BLOOD TRANSPLANTATION; APOPTOSIS-LIKE MECHANISM; NEURAL PROGENITOR CELLS; NON-HODGKINS-LYMPHOMA; KILLS TUMOR-CELLS; DONOR CELLS; DOPAMINERGIC-NEURONS;
D O I
10.1007/s12015-010-9134-5
中图分类号
Q813 [细胞工程];
学科分类号
摘要
Unique biological properties of stem cells make them a precious source of cell material for treatment of a number of pathological conditions. Among issues inhibiting transition of stem cell technologies to the clinics, the risk of oncological complications of stem cell-based therapies is the most critical. A massive amount of clinical and experimental data demonstrates that both hematological (including acute and chronic myeloid leukemia) and non-hematological (including teratoma and non-teratoma tumors) malignancies could arise from donor stem cells of different types. A wide spectrum of mechanisms could underlie the development of oncological disease in recipients, including: i) blast transformation of proliferating donor stem cells under persistent action of certain factors in the recipient, thus causing de novo malignancies; ii) contamination of donor cell material with malignant cells; iii) transmission of particular viral subtypes with donor stem cells, combined with immunosuppression therapy effects; iv) uncontrollable proliferation of residual undifferentiated stem cells of various plasticity; and v) karyotypic instability in stem cells following prolonged culturing/expansion in vitro. Potential preventive strategies are diverse and include i) high-throughput cell sorting-based strategies; ii) introduction of suicide genes into the donor stem cell genome; iii) application of apoptosis-inducing epigenetic factors; and some other options.
引用
收藏
页码:411 / 424
页数:14
相关论文
共 161 条
[1]   Donor-Derived Brain Tumor Following Neural Stem Cell Transplantation in an Ataxia Telangiectasia Patient [J].
Amariglio, Ninette ;
Hirshberg, Abraham ;
Scheithauer, Bernd W. ;
Cohen, Yoram ;
Loewenthal, Ron ;
Trakhtenbrot, Luba ;
Paz, Nurit ;
Koren-Michowitz, Maya ;
Waldman, Dalia ;
Leider-Trejo, Leonor ;
Toren, Amos ;
Constantini, Shlomi ;
Rechavi, Gideon .
PLOS MEDICINE, 2009, 6 (02) :221-231
[2]   Donor cell-derived acute myeloid leukemia after unrelated umbilical cord blood transplantation [J].
Ando, T ;
Yujiri, T ;
Mitani, N ;
Takeuchi, H ;
Nomiyama, J ;
Suguchi, M ;
Matsubara, A ;
Tanizawa, Y .
LEUKEMIA, 2006, 20 (04) :744-745
[3]  
Anisimov S V, 2009, Adv Gerontol, V22, P150
[4]   NeuroStem Chip: a novel highly specialized tool to study neural differentiation pathways in human stem cells [J].
Anisimov, Sergey V. ;
Christophersen, Nicolaj S. ;
Correia, Ana S. ;
Li, Jia-Yi ;
Brundin, Patrik .
BMC GENOMICS, 2007, 8 (1)
[5]   Transmission of glioblastoma multiforme following bilateral lung transplantation from an affected donor: Case study and review of the literature [J].
Armanios, MY ;
Grossman, SA ;
Yang, SC ;
White, B ;
Perry, A ;
Burger, PC ;
Orens, JB .
NEURO-ONCOLOGY, 2004, 6 (03) :259-263
[6]   Donor-derived human bone marrow cells contribute to solid organ cancers developing after bone marrow transplantation [J].
Avital, Itzhak ;
Moreira, Andre L. ;
Klimstra, David S. ;
Leversha, Margaret ;
Papadopoulos, Esperanza B. ;
Brennan, Murray ;
Downey, Robert J. .
STEM CELLS, 2007, 25 (11) :2903-2909
[7]  
Azuma H, 2000, BLOOD, V96, P2632
[8]   Behavioral changes in unilaterally 6-hydroxy-dopamine lesioned rats after transplantation of differentiated mouse embryonic stem cells without morphological integration [J].
Baier, PC ;
Schindehütte, J ;
Thinyane, K ;
Flügge, G ;
Fuchs, E ;
Mansouri, A ;
Paulus, W ;
Gruss, P ;
Trenkwalder, C .
STEM CELLS, 2004, 22 (03) :396-404
[9]   Adaptation to culture of human embryonic stem cells and oncogenesis in vivo [J].
Baker, Duncan E. C. ;
Harrison, Neil J. ;
Maltby, Edna ;
Smith, Kath ;
Moore, Harry D. ;
Shaw, Pamela J. ;
Heath, Paul R. ;
Holden, Hazel ;
Andrews, Peter W. .
NATURE BIOTECHNOLOGY, 2007, 25 (02) :207-215
[10]   Transmission of chronic myeloid leukemia through peripheral-blood stem-cell transplantation [J].
Baron, F ;
Dresse, M ;
Beguin, Y .
NEW ENGLAND JOURNAL OF MEDICINE, 2003, 349 (09) :913-914