Analysis of Normal Hematopoietic Stem and Progenitor Cell Contents in Childhood Acute Leukemia Bone Marrow

Archives of Medical Research - Tập 47 - Trang 629-643 - 2016
Juan Carlos Balandrán1,2, Eduardo Vadillo1,2, David Dozal3, Alfonso Reyes-López4, Antonio Sandoval-Cabrera3, Merle Denisse Laffont-Ortiz3, Jessica L. Prieto-Chávez5, Armando Vilchis-Ordoñez4, Henry Quintela-Nuñez del Prado6, Héctor Mayani1, Juan Carlos Núñez-Enríquez7, Juan Manuel Mejía-Aranguré7, Briceida López-Martínez4, Elva Jiménez-Hernández8, Rosana Pelayo1
1Oncology Research Unit, Oncology Hospital, Instituto Mexicano del Seguro Social, Mexico City, Mexico
2Departamento de Biomedicina Molecular, CINVESTAV, México City, México
3Hospital para el Niño, Instituto Materno Infantil del Estado de México, México
4Hospital Infantil de México Federico Gómez, Mexico City, Mexico
5Unidad de Investigación Médica en, Hospital de Especialidades, Instituto Mexicano del Seguro Social, Mexico City, Mexico
6Unidad Médica de Alta Especialidad, “Dr. Victorio de la Fuente Narvaez”, Instituto Mexicano del Seguro Social, Mexico City, Mexico
7Unidad de Epidemiología de Investigación Clínica Hospital de Pediatría, Instituto Mexicano del Seguro Social, México City, México
8Hospital Pediátrico Moctezuma, México City, México

Tài liệu tham khảo

Enciso, 2015, Normal vs. malignant hematopoiesis: the complexity of acute leukemia through systems biology, Front Genet, 6, 290, 10.3389/fgene.2015.00290 Bhojwani, 2015, Biology of childhood acute lymphoblastic leukemia, Pediatr Clin North Am, 62, 47, 10.1016/j.pcl.2014.09.004 Pérez-Saldivar, 2011, Childhood acute leukemias are frequent in Mexico City: descriptive epidemiology, BMC Cancer, 11, 355, 10.1186/1471-2407-11-355 Medina-Sanson, 2016, Introduction: Childhood leukemia, 1 Diamanti, 2012, Comparison of childhood leukemia initiating cell populations in NOD/SCID and NSG mice, Leukemia, 26, 376, 10.1038/leu.2011.212 Manabe, 1992, Bone marrow-derived stromal cells prevent apoptotic cell death in B-lineage acute lymphoblastic leukemia, Blood, 79, 2370, 10.1182/blood.V79.9.2370.2370 Ailles, 1997, Detection and characterization of primitive malignant and normal progenitors in patients with acute myelogenous leukemia using long-term coculture with supportive feeder layers and cytokines, Blood, 90, 2555, 10.1182/blood.V90.7.2555 Pal, 2016, Long-term in vitro maintenance of clonal abundance and leukaemia-initiating potential in acute lymphoblastic leukaemia, Leukemia, 30, 1691, 10.1038/leu.2016.79 Juarez, 2007, Interaction of interleukin-7 and interleukin-3 with the CXCL12-induced proliferation of B-cell progenitor acute lymphoblastic leukemia, Haematologica, 92, 450, 10.3324/haematol.10621 Cheng, 2016, “Waterloo”: when normal blood cells meet leukemia, Curr Opin Hematol, 23, 304, 10.1097/MOH.0000000000000253 Vilchis-Ordoñez, 2015, Bone marrow cells in acute lymphoblastic leukemia create a proinflammatory microenvironment influencing normal hematopoietic differentiation fates, Biomed Res Int, 2015, 386165, 10.1155/2015/386165 Welner, 2015, Treatment of chronic myelogenous leukemia by blocking cytokine alterations found in normal stem and progenitor cells, Cancer Cell, 27, 671, 10.1016/j.ccell.2015.04.004 Colmone, 2008, Leukemic cells create bone marrow niches that disrupt the behavior of normal hematopoietic progenitor cells, Science, 322, 1861, 10.1126/science.1164390 Zhang, 2012, Altered microenvironmental regulation of leukemic and normal stem cells in chronic myelogenous leukemia, Cancer Cell, 21, 577, 10.1016/j.ccr.2012.02.018 Purizaca, 2013, Lymphoid progenitor cells from childhood acute lymphoblastic leukemia are functionally deficient and express high levels of the transcriptional repressor Gfi-1, Clin Dev Immunol, 2013, 349067, 10.1155/2013/349067 Lim, 2016, Altered mesenchymal niche cells impede generation of normal hematopoietic progenitor cells in leukemic bone marrow, Leukemia, 30, 154, 10.1038/leu.2015.210 Pui, 2015, Clinical utility of sequential minimal residual disease measurements in the context of risk-based therapy in childhood acute lymphoblastic leukaemia: a prospective study, Lancet Oncol, 16, 465, 10.1016/S1470-2045(15)70082-3 Boyd, 2014, Niche displacement of human leukemic stem cells uniquely allows their competitive replacement with healthy HSPCs, J Exp Med, 211, 1925, 10.1084/jem.20140131 Glait-Santar, 2015, Functional niche competition between normal hematopoietic stem and progenitor cells and myeloid leukemia cells, Stem Cells, 33, 3635, 10.1002/stem.2208 Galon, 2012, Cancer classification using the Immunoscore: a worldwide task force, J Transl Med, 10, 205, 10.1186/1479-5876-10-205 Fridman, 2012, The immune contexture in human tumours: impact on clinical outcome, Nat Rev Cancer, 12, 298, 10.1038/nrc3245 Riether, 2015, Regulation of hematopoietic and leukemic stem cells by the immune system, Cell Death Differ, 22, 187, 10.1038/cdd.2014.89 Rothe, 1996, Consensus protocol for the flow cytometric immunophenotyping of hematopoietic malignancies. Working Group on Flow Cytometry and Image Analysis, Leukemia, 10, 877 Kalina, 2012, EuroFlow standardization of flow cytometer instrument settings and immunophenotyping protocols, Leukemia, 26, 1986, 10.1038/leu.2012.122 Enciso, 2016, Modeling the pro-inflammatory tumor microenvironment in acute lymphoblastic leukemia predicts a breakdown of hematopoietic-mesenchymal communication networks, Front Physiol, 7, 349, 10.3389/fphys.2016.00349 van den Berk, 2014, Disturbed CXCR4/CXCL12 axis in paediatric precursor B-cell acute lymphoblastic leukaemia, Br J Haematol, 166, 240, 10.1111/bjh.12883 Vilchis-Ordoñez, 2016, Early hematopoietic differentiation in acute lymphoblastic leukemia: The interplay between leukemia-initiating cells and abnormal bone marrow microenvironment, 291 Purizaca, 2012, Early lymphoid development and microenvironmental cues in B-cell acute lymphoblastic leukemia, Arch Med Res, 43, 89, 10.1016/j.arcmed.2012.03.005 Doulatov, 2010, Revised map of the human progenitor hierarchy shows the origin of macrophages and dendritic cells in early lymphoid development, Nat Immunol, 11, 585, 10.1038/ni.1889 Chao, 2011, Therapeutic antibody targeting of CD47 eliminates human acute lymphoblastic leukemia, Cancer Res, 71, 1374, 10.1158/0008-5472.CAN-10-2238 Cruz-Munoz, 2010, Do NK cells always need a license to kill?, Nat Immunol, 11, 279, 10.1038/ni0410-279 Fei, 2015, Cytotoxicity of CD56-positive lymphocytes against autologous B-cell precursor acute lymphoblastic leukemia cells, Leukemia, 29, 788, 10.1038/leu.2014.246 Rehe, 2013, Acute B lymphoblastic leukaemia-propagating cells are present at high frequency in diverse lymphoblast populations, EMBO Mol Med, 5, 38, 10.1002/emmm.201201703 Monteiro, 2005, Normal hematopoiesis is maintained by activated bone marrow CD4+ T cells, Blood, 105, 1484, 10.1182/blood-2004-07-2856 Schürch, 2013, Dendritic cell-based immunotherapy for myeloid leukemias, Front Immunol, 4, 496, 10.3389/fimmu.2013.00496