Identification of hematopoietic stem/progenitor cells: strength and drawbacks of functional assays
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[1] H. Nakauchi,et al. Asymmetric Division and Lineage Commitment at the Level of Hematopoietic Stem Cells , 2004, The Journal of experimental medicine.
[2] S. Leyvraz,et al. Long-term expansion of transplantable human fetal liver hematopoietic stem cells. , 2004, Blood.
[3] T. Kondo,et al. Persistence of a small subpopulation of cancer stem-like cells in the C6 glioma cell line. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[4] K. Coggeshall,et al. Src Homology 2–containing 5-Inositol Phosphatase (SHIP) Suppresses an Early Stage of Lymphoid Cell Development through Elevated Interleukin-6 Production by Myeloid Cells in Bone Marrow , 2004, The Journal of experimental medicine.
[5] S. Riddell,et al. Induction of cytotoxic T-lymphocyte responses to enhanced green and yellow fluorescent proteins after myeloablative conditioning. , 2004, Blood.
[6] B. Wood,et al. Distinct hematopoietic stem/progenitor cell populations are responsible for repopulating NOD/SCID mice compared with nonhuman primates. , 2003, Blood.
[7] Michael F. Clarke,et al. Applying the principles of stem-cell biology to cancer , 2003, Nature Reviews Cancer.
[8] J. Hows,et al. Cobblestone Area‐Forming Cells in Human Cord Blood Are Heterogeneous and Differ from Long‐Term Culture‐Initiating Cells , 2003, Stem cells.
[9] D. Scadden,et al. Osteoblastic cells regulate the haematopoietic stem cell niche , 2003, Nature.
[10] Haiyang Huang,et al. Identification of the haematopoietic stem cell niche and control of the niche size , 2003, Nature.
[11] H. Igarashi,et al. Unique properties of fetal lymphoid progenitors identified according to RAG1 gene expression. , 2003, Immunity.
[12] Mamoru Ito,et al. Complete reconstitution of human lymphocytes from cord blood CD34+ cells using the NOD/SCID/gammacnull mice model. , 2003, Blood.
[13] Y. Lévy,et al. In vitro identification of human pro-B cells that give rise to macrophages, natural killer cells, and T cells. , 2003, Blood.
[14] I. Weissman,et al. A role for Wnt signalling in self-renewal of haematopoietic stem cells , 2003, Nature.
[15] R. Moon,et al. Wnt-5A augments repopulating capacity and primitive hematopoietic development of human blood stem cells in vivo , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[16] Thomas M. Schmitt,et al. Induction of T cell development from hematopoietic progenitor cells by delta-like-1 in vitro. , 2002, Immunity.
[17] John T. Dimos,et al. A Stem Cell Molecular Signature , 2002, Science.
[18] I. Weissman,et al. Little Evidence for Developmental Plasticity of Adult Hematopoietic Stem Cells , 2002, Science.
[19] W. Vainchenker,et al. Ex vivo expansion marginally amplifies repopulating cells from baboon peripheral blood mobilized CD34+ cells , 2002, British journal of haematology.
[20] F. Wolber,et al. Homing efficiency, cell cycle kinetics, and survival of quiescent and cycling human CD34(+) cells transplanted into conditioned NOD/SCID recipients. , 2002, Blood.
[21] M. Pittet,et al. Adapted NOD/SCID model supports development of phenotypically and functionally mature T cells from human umbilical cord blood CD34(+) cells. , 2002, Blood.
[22] E. Shpall,et al. Differential long-term and multilineage engraftment potential from subfractions of human CD34+ cord blood cells transplanted into NOD/SCID mice , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[23] M. Haury,et al. Differential Effects of Notch Ligands Delta-1 and Jagged-1 in Human Lymphoid Differentiation , 2001, The Journal of experimental medicine.
[24] L. Barsky,et al. Identification of a novel, human multilymphoid progenitor in cord blood. , 2001, Blood.
[25] W. Vainchenker,et al. Stromal cells retard the differentiation of CD34(+)CD38(low/neg) human primitive progenitors exposed to cytokines independent of their mitotic history. , 2001, Blood.
[26] C. von Kalle,et al. Previously undetected human hematopoietic cell populations with short-term repopulating activity selectively engraft NOD/SCID-beta2 microglobulin-null mice. , 2001, The Journal of clinical investigation.
[27] C. Verfaillie,et al. A novel in vitro model of early human adult B lymphopoiesis that allows proliferation of pro-B cells and differentiation to mature B lymphocytes , 2000, Leukemia.
[28] H. Ben‐Hur,et al. β2 Microglobulin-deficient (B2mnull) NOD/SCID mice are excellent recipients for studying human stem cell function , 2000 .
[29] H. Snoeck,et al. Generation of T cells from adult human hematopoietic stem cells and progenitors in a fetal thymic organ culture system: stimulation by tumor necrosis factor-alpha. , 2000, Blood.
[30] B. Verhasselt,et al. Human T Lymphopoiesis: In Vitro and In Vivo Study Models , 2000, Annals of the New York Academy of Sciences.
[31] M. Ogawa,et al. Reversible expression of CD34 by murine hematopoietic stem cells. , 1999, Blood.
[32] K. Moore,et al. The myeloid-lymphoid initiating cell (ML-IC) assay assesses the fate of multipotent human progenitors in vitro. , 1999, Blood.
[33] W. Vainchenker,et al. Identification of Lymphomyeloid Primitive Progenitor Cells in Fresh Human Cord Blood and in the Marrow of Nonobese Diabetic–Severe Combined Immunodeficient (NOD-SCID) Mice Transplanted with Human CD34+ Cord Blood Cells , 1999, The Journal of experimental medicine.
[34] W. Vainchenker,et al. Identification of human T‐lymphoid progenitor cells in CD34+CD38low and CD34+CD38+ subsets of human cord blood and bone marrow cells using NOD‐SCID fetal thymus organ cultures , 1999, British journal of haematology.
[35] G. Lacaud,et al. Identification of a fetal hematopoietic precursor with B cell, T cell, and macrophage potential. , 1998, Immunity.
[36] P. Lansdorp,et al. Asymmetric Cell Divisions Sustain Long-Term Hematopoiesis from Single-sorted Human Fetal Liver Cells , 1998, The Journal of experimental medicine.
[37] C. Eaves,et al. Differences between normal and cml stem cells: Potential targets for clinical exploitation , 1998, Stem cells.
[38] J. Dick,et al. High level engraftment of NOD/SCID mice by primitive normal and leukemic hematopoietic cells from patients with chronic myeloid leukemia in chronic phase. , 1998, Blood.
[39] I. Lewis,et al. Establishment of a reproducible model of chronic-phase chronic myeloid leukemia in NOD/SCID mice using blood-derived mononuclear or CD34+ cells. , 1998, Blood.
[40] M. Cooper,et al. Impairment of T and B Cell Development by Treatment with a Type I Interferon , 1998, The Journal of experimental medicine.
[41] I. Weissman,et al. Identification of Clonogenic Common Lymphoid Progenitors in Mouse Bone Marrow , 1997, Cell.
[42] C. Müller,et al. Crystallographic structure of the T domain–DNA complex of the Brachyury transcription factor , 1997, Nature.
[43] S. Jacobsen,et al. Ability of early acting cytokines to directly promote survival and suppress apoptosis of human primitive CD34+CD38- bone marrow cells with multilineage potential at the single-cell level: key role of thrombopoietin. , 1997, Blood.
[44] C. Eaves,et al. Expansion in vitro of transplantable human cord blood stem cells demonstrated using a quantitative assay of their lympho-myeloid repopulating activity in nonobese diabetic-scid/scid mice. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[45] C. Eaves,et al. Sustained proliferation, multi‐lineage differentiation and maintenance of primitive human haemopoietic cells in NOD/SCID mice transplanted with human cord blood , 1997, British journal of haematology.
[46] J. Dick,et al. Engraftment and development of human CD34(+)-enriched cells from umbilical cord blood in NOD/LtSz-scid/scid mice. , 1997, Blood.
[47] J. Dick,et al. Primitive human hematopoietic cells are enriched in cord blood compared with adult bone marrow or mobilized peripheral blood as measured by the quantitative in vivo SCID-repopulating cell assay. , 1997, Blood.
[48] W. Vainchenker,et al. Individual CD34+CD38lowCD19-CD10- progenitor cells from human cord blood generate B lymphocytes and granulocytes. , 1997, Blood.
[49] J. Dick,et al. Purification of primitive human hematopoietic cells capable of repopulating immune-deficient mice. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[50] J M Piret,et al. Cytokine manipulation of primitive human hematopoietic cell self-renewal. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[51] W. Vainchenker,et al. Phenotype and function of human hematopoietic cells engrafting immune-deficient CB17-severe combined immunodeficiency mice and nonobese diabetic-severe combined immunodeficiency mice after transplantation of human cord blood mononuclear cells. , 1996, Blood.
[52] G. Crooks,et al. Extended long-term culture reveals a highly quiescent and primitive human hematopoietic progenitor population. , 1996, Blood.
[53] C. Eaves,et al. Identification of properties that can distinguish primitive populations of stromal-cell-responsive lympho-myeloid cells from cells that are stromal-cell-responsive but lymphoid-restricted and cells that have lympho-myeloid potential but are also capable of competitively repopulating myeloablated rec , 1996, Blood.
[54] Hiromitsu Nakauchi,et al. Long-Term Lymphohematopoietic Reconstitution by a Single CD34-Low/Negative Hematopoietic Stem Cell , 1996, Science.
[55] P. Sonneveld,et al. Individual stem cell quality in leukapheresis products is related to the number of mobilized stem cells. , 1996, Blood.
[56] R. Zapf,et al. Characterization of a hierarchy in human acute myeloid leukemia progenitor cells. , 1996, Blood.
[57] J M Piret,et al. Differential cytokine effects on primitive (CD34+CD38-) human hematopoietic cells: novel responses to Flt3-ligand and thrombopoietin , 1996, The Journal of experimental medicine.
[58] K. Mansfield,et al. In vitro T lymphopoiesis of human and rhesus CD34+ progenitor cells. , 1996, Blood.
[59] A. Galy,et al. Human T, B, natural killer, and dendritic cells arise from a common bone marrow progenitor cell subset. , 1995, Immunity.
[60] C. Eaves,et al. Characterization and purification of a primitive hematopoietic cell type in adult mouse marrow capable of lymphomyeloid differentiation in long-term marrow "switch" cultures. , 1995, Blood.
[61] A. Cumano,et al. Emergence of multipotent hemopoietic cells in the yolk sac and paraaortic splanchnopleura in mouse embryos, beginning at 8.5 days postcoitus. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[62] M. Trevisan,et al. Phenotypic analysis of murine long-term hemopoietic reconstituting cells quantitated competitively in vivo and comparison with more advanced colony-forming progeny , 1995, The Journal of experimental medicine.
[63] W. Vainchenker,et al. Hydrocortisone differentially affects the ability of murine stromal cells and human marrow-derived adherent cells to promote the differentiation of CD34++/CD38- long-term culture-initiating cells. , 1994, Blood.
[64] T. Luft,et al. Direct comparison by limiting dilution analysis of long-term culture-initiating cells in human bone marrow, umbilical cord blood, and blood stem cells. , 1994, Blood.
[65] F. Alt,et al. Probing immune functions in RAG-deficient mice. , 1994, Current opinion in immunology.
[66] A. Flake,et al. Long-term repopulating ability of xenogeneic transplanted human fetal liver hematopoietic stem cells in sheep. , 1994, The Journal of clinical investigation.
[67] M. Caligiuri,et al. A cell initiating human acute myeloid leukaemia after transplantation into SCID mice , 1994, Nature.
[68] P. Lansdorp,et al. Lineage commitment in human hemopoiesis involves asymmetric cell division of multipotent progenitors and does not appear to be influenced by cytokines , 1993, Journal of cellular physiology.
[69] P. Lansdorp,et al. Ontogeny-related changes in proliferative potential of human hematopoietic cells , 1993, The Journal of experimental medicine.
[70] W. Vainchenker,et al. A murine stromal cell line allows the proliferation of very primitive human CD34++/CD38- progenitor cells in long-term cultures and semisolid assays , 1993 .
[71] S. Cory,et al. Phenotypic and functional characterization of competitive long-term repopulating hematopoietic stem cells enriched from 5-fluorouracil-treated murine marrow. , 1993, Blood.
[72] I. Weissman,et al. Isolation of a candidate human hematopoietic stem-cell population. , 1992, Proceedings of the National Academy of Sciences of the United States of America.
[73] J. Dick,et al. Cytokine stimulation of multilineage hematopoiesis from immature human cells engrafted in SCID mice. , 1992, Science.
[74] P. Lansdorp,et al. Sequential generations of hematopoietic colonies derived from single nonlineage-committed CD34+CD38- progenitor cells. , 1991, Blood.
[75] C. Eaves,et al. Quantitative assay for totipotent reconstituting hematopoietic stem cells by a competitive repopulation strategy. , 1990, Proceedings of the National Academy of Sciences of the United States of America.
[76] J. Wagner,et al. Separation of pluripotent haematopoietic stem cells from spleen colony-forming cells , 1990, Nature.
[77] I. Lemischka,et al. Cellular and developmental properties of fetal hematopoietic stem cells , 1990, Cell.
[78] G. Keller,et al. Life span of multipotential hematopoietic stem cells in vivo , 1990, The Journal of experimental medicine.
[79] C. Eaves,et al. Functional characterization of individual human hematopoietic stem cells cultured at limiting dilution on supportive marrow stromal layers. , 1990, Proceedings of the National Academy of Sciences of the United States of America.
[80] Der,et al. An in vitro limiting-dilution assay of long-term repopulating hematopoietic stem cells in the mouse. , 1989, Blood.
[81] J. Dick,et al. Engraftment of immune-deficient mice with human hematopoietic stem cells. , 1988, Science.
[82] M. Ogawa,et al. Blast cell colony assay for umbilical cord blood and adult bone marrow progenitors. , 1987, Blood.
[83] D. Deakin,et al. RECONSTITUTION OF HAEMOPOIETIC SYSTEM WITH AUTOLOGOUS MARROW TAKEN DURING RELAPSE OF ACUTE MYELOBLASTIC LEUKAEMIA AND GROWN IN LONG-TERM CULTURE , 1986, The Lancet.
[84] O. Witte,et al. Murine B cell lymphopoiesis in long term culture. , 1984, Journal of immunological methods.
[85] L. Coulombel,et al. Enzymatic treatment of long-term human marrow cultures reveals the preferential location of primitive hemopoietic progenitors in the adherent layer. , 1983, Blood.
[86] L. Coulombel,et al. Long-term marrow culture reveals chromosomally normal hematopoietic progenitor cells in patients with Philadelphia chromosome-positive chronic myelogenous leukemia. , 1983, The New England journal of medicine.
[87] M. Magli,et al. Transient nature of early haematopoietic spleen colonies , 1982, Nature.
[88] E. Zanjani,et al. Studies of human pluripotential hemopoietic stem cells (CFU-GEMM) in vitro. , 1981, Blood.
[89] G. Hodgson,et al. Properties of haematopoietic stem cells surviving 5-fluorouracil treatment: evidence for a pre-CFU-S cell? , 1979, Nature.
[90] C. Eaves,et al. Erythropoietin (Ep) dose-response curves for three classes of erythroid progenitors in normal human marrow and in patients with polycythemia vera , 1978 .
[91] Rg Miller,et al. The identification in adult bone marrow of pluripotent and restricted stem cells of the myeloid and lymphoid systems , 1977, The Journal of experimental medicine.
[92] L. Lajtha,et al. Conditions controlling the proliferation of haemopoietic stem cells in vitro , 1977, Journal of cellular physiology.
[93] H. Macdonald,et al. Heterogeneity of in vitro colony‐ and cluster‐forming cells in the mouse marrow: Segregation by velocity sedimentation , 1975, Journal of cellular physiology.
[94] H. Okano,et al. Unexpectedly efficient homing capacity of purified murine hematopoietic stem cells. , 2004, Immunity.
[95] P. Plett,et al. Homing, cell cycle kinetics and fate of transplanted hematopoietic stem cells , 2001, Leukemia.
[96] K. Moore,et al. The type of stromal feeder used in limiting dilution assays influences frequency and maintenance assessment of human long-term culture initiating cells , 1999, Leukemia.
[97] G. Anderson,et al. Cellular interactions in thymocyte development. , 1996, Annual review of immunology.
[98] B. Lord,et al. Proliferation of spleen colony forming units (cfu‐s8, cfu‐s13) and cells with marrow repopulating ability , 1993, Stem cells.
[99] J. Till,et al. Colony formation by normal and leukemic human marrow cells in culture: effect of conditioned medium from human leukocytes. , 1971, Blood.