CD34+ positive haemopoietic cells: biology and clinical applications.
暂无分享,去创建一个
[1] O. Majdic,et al. Signaling and induction of enhanced cytoadhesiveness via the hematopoietic progenitor cell surface molecule CD34 , 1994 .
[2] M. Yamaguchi,et al. In vitro expansion of human peripheral blood CD34+ cells. , 1993, Blood.
[3] H. Nakauchi,et al. Human primitive hematopoietic progenitor cells are more enriched in KITlow cells than in KIThigh cells. , 1993, Blood.
[4] P. Sonneveld,et al. Predominance of functional multidrug resistance (MDR-1) phenotype in CD34+ acute myeloid leukemia cells. , 1993, Blood.
[5] N. Schmitz,et al. Effective mobilisation of peripheral blood progenitor cells with 'Dexa-BEAM' and G-CSF: timing of harvesting and composition of the leukapheresis product. , 1993, British Journal of Cancer.
[6] P. Lansdorp,et al. Characterization of functionally distinct subpopulations of CD34+ cord blood cells in serum-free long-term cultures supplemented with hematopoietic cytokines. , 1993, Blood.
[7] S. Hemmerich,et al. Binding of L-selectin to the vascular sialomucin CD34. , 1993, Science.
[8] A. Stewart,et al. CD34 antigen: Molecular features and potential clinical applications , 1993, Stem cells.
[9] S. Weiss,et al. CD‐34 Is Expressed by a Distinctive Cell Population in Peripheral Nerve, Nerve Sheath Tumors, and Related Lesions , 1993, The American journal of surgical pathology.
[10] S. Heimfeld,et al. Positive selection of CD34+ hematopoietic progenitor cells for transplantation , 1993, Stem Cells.
[11] S. Orkin,et al. Long-term in vivo expression of a murine adenosine deaminase gene in rhesus monkey hematopoietic cells of multiple lineages after retroviral mediated gene transfer into CD34+ bone marrow cells. , 1993, Blood.
[12] P. Lansdorp,et al. Maintenance of hematopoiesis in serum-free bone marrow cultures involves sequential recruitment of quiescent progenitors. , 1993, Experimental hematology.
[13] W. Anderson,et al. Treatment of Severe Combined Immunodeficiency Disease (SCID) due to Adenosine Deaminase Deficiency with CD34+ Selected Autologous Peripheral Blood Cells Transduced with a Human ADA Gene (Amendment). National Institutes of Health , 1993 .
[14] D. Printz,et al. Use of flow cytometric CD34 analysis to quantify hematopoietic progenitor cells. , 1993, Leukemia & lymphoma.
[15] F. Behm,et al. Clinical significance of CD34 expression in childhood acute lymphoblastic leukemia. , 1993, Blood.
[16] Bernhard O. Palsson,et al. Large-scale Expansion of Human Stem and Progenitor Cells From Bone Marrow Mononuclear Cells in Continuous Perfusion Cultures , 1993 .
[17] L. Lum,et al. Expansion of neutrophil precursors and progenitors in suspension cultures of CD34+ cells enriched from human bone marrow. , 1993, Experimental hematology.
[18] T. Mcclanahan,et al. Hematopoietic growth factor receptor genes as markers of lineage commitment during in vitro development of hematopoietic cells [see comments] , 1993 .
[19] S. Heimfeld,et al. Ex vivo expansion of enriched peripheral blood CD34+ progenitor cells by stem cell factor, interleukin-1 beta (IL-1 beta), IL-6, IL-3, interferon-gamma, and erythropoietin , 1993 .
[20] C. Dunbar,et al. Retroviral-mediated gene transfer into CD34-enriched human peripheral blood stem cells. , 1993, Experimental hematology.
[21] R. Collins,et al. Brief report: donor-derived long-term multilineage hematopoiesis in a liver-transplant recipient. , 1993, The New England journal of medicine.
[22] Richard J. Jones. Autologous bone marrow transplantation , 1993, Current opinion in oncology.
[23] H. Nakauchi,et al. Two alternative forms of cDNA encoding CD34. , 1993, Experimental hematology.
[24] S. Siena,et al. Estimation of peripheral blood CD34+ cells for autologous transplantation in cancer patients. , 1993, Experimental hematology.
[25] W. Anderson,et al. Gene-marking to trace origin of relapse after autologous bone-marrow transplantation , 1993, The Lancet.
[26] W. Vainchenker,et al. Expression of CD34 and platelet glycoproteins during human megakaryocytic differentiation. , 1992, Blood.
[27] J. Testa,et al. The significance of CD34 and TdT determinations in patients with untreated de novo acute myeloid leukemia. , 1992, Leukemia.
[28] D. Williams,et al. Retroviral vector-mediated gene transfer into primitive human hematopoietic progenitor cells: effects of mast cell growth factor (MGF) combined with other cytokines. , 1992, Experimental hematology.
[29] G. Bonadonna,et al. Human peripheral blood hematopoietic progenitors are optimal targets of retroviral-mediated gene transfer. , 1992, Blood.
[30] L. To,et al. Ex vivo expansion and maturation of peripheral blood CD34+ cells into the myeloid lineage. , 1992, Blood.
[31] M. Fackler,et al. Up-regulation of surface CD34 is associated with protein kinase C-mediated hyperphosphorylation of CD34. , 1992, The Journal of biological chemistry.
[32] L. To,et al. Characterization of chemotherapy mobilized peripheral blood progenitor cells for use in autologous stem cell transplantation. , 1992, Bone marrow transplantation.
[33] V. Broudy,et al. Further phenotypic characterization and isolation of human hematopoietic progenitor cells using a monoclonal antibody to the c-kit receptor. , 1992, Blood.
[34] A. Keating,et al. Differential sensitivity of CD34 epitopes to cleavage by Pasteurella haemolytica glycoprotease: implications for purification of CD34-positive progenitor cells. , 1992, Experimental hematology.
[35] J. Adamson,et al. Long-term generation of colony-forming cells in liquid culture of CD34+ cord blood cells in the presence of recombinant human stem cell factor. , 1992, Blood.
[36] J. Lebkowski,et al. RAPID ISOLATION OF HUMAN CD34 HEMATOPOIETIC STEM CELLS—PURGING OF HUMAN TUMOR CELLS , 1992, Transplantation.
[37] B. Davis,et al. Isolation and molecular characterization of the human CD34 gene. , 1992, Blood.
[38] A. Cumano,et al. Bipotential precursors of B cells and macrophages in murine fetal liver , 1992, Nature.
[39] M. L. Beau,et al. Structure of the gene encoding CD34, a human hematopoietic stem cell antigen. , 1992, Genomics.
[40] 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.
[41] J. Wagner,et al. Transplantation of umbilical cord blood after myeloablative therapy: analysis of engraftment. , 1992, Blood.
[42] D. Sutherland,et al. Cleavage of the cell-surface O-sialoglycoproteins CD34, CD43, CD44, and CD45 by a novel glycoprotease from Pasteurella haemolytica. , 1992, Journal of immunology.
[43] L. Picker,et al. Flow cytometric assessment of human T-cell differentiation in thymus and bone marrow. , 1992, Blood.
[44] R. Hoffman,et al. Role of c-kit ligand in the expansion of human hematopoietic progenitor cells. , 1992, Blood.
[45] D. Tenen,et al. Molecular cloning of a cDNA encoding CD34, a sialomucin of human hematopoietic stem cells. , 1992, Journal of immunology.
[46] E. Thorsby,et al. Myeloid differentiation of purified CD34+ cells after stimulation with recombinant human granulocyte-monocyte colony-stimulating factor (CSF), granulocyte-CSF, monocyte-CSF, and interleukin-3. , 1991, Blood.
[47] I. Bernstein,et al. Blast colony-forming cells and precursors of colony-forming cells detectable in long-term marrow culture express the same phenotype (CD33- CD34+). , 1991, Experimental hematology.
[48] L. To,et al. Identification and comparison of CD34-positive cells and their subpopulations from normal peripheral blood and bone marrow using multicolor flow cytometry. , 1991, Blood.
[49] I. Bernstein,et al. Recombinant human stem cell factor enhances the formation of colonies by CD34+ and CD34+lin- cells, and the generation of colony-forming cell progeny from CD34+lin- cells cultured with interleukin-3, granulocyte colony-stimulating factor, or granulocyte-macrophage colony-stimulating factor. , 1991, Blood.
[50] M. Kastan,et al. Normal human bone marrow precursors that express terminal deoxynucleotidyl transferase include T-cell precursors and possible lymphoid stem cells. , 1991, Blood.
[51] I. Bernstein,et al. Engraftment after infusion of CD34+ marrow cells in patients with breast cancer or neuroblastoma. , 1991, Blood.
[52] D. Huhn,et al. Multiparameter flow‐cytometrical quantitation of circulating CD34+‐cells: correlation to the quantitation of circulating haemopoietic progenitor cells by in vitro colony‐assay , 1991, British journal of haematology.
[53] P. Lansdorp,et al. Sequential generations of hematopoietic colonies derived from single nonlineage-committed CD34+CD38- progenitor cells. , 1991, Blood.
[54] C. Eaves,et al. Separation of functionally distinct subpopulations of primitive human hematopoietic cells using rhodamine-123. , 1991, Experimental hematology.
[55] M. Greaves,et al. The gene encoding the stem cell antigen, CD34, is conserved in mouse and expressed in haemopoietic progenitor cell lines, brain, and embryonic fibroblasts. , 1991, International immunology.
[56] J. Armitage,et al. The evolving role of autologous peripheral stem cell transplantation following high-dose therapy for malignancies. , 1991, Blood.
[57] P. Lansdorp,et al. Flow cytometry for clinical estimation of circulating hematopoietic progenitors for autologous transplantation in cancer patients. , 1991, Blood.
[58] S. Piantadosi,et al. Prognostic importance of immunophenotyping in adults with acute myelocytic leukaemia: the significance of the stem‐cell glycoprotein CD34 (My 10) , 1990, British journal of haematology.
[59] F. Lee,et al. The genes for leukemia inhibitory factor and interleukin-6 are expressed in mouse blastocysts prior to the onset of hemopoiesis , 1990, Molecular and cellular biology.
[60] Timothy A. Springer,et al. Adhesion receptors of the immune system , 1990, Nature.
[61] N Jentoft,et al. Why are proteins O-glycosylated? , 1990, Trends in biochemical sciences.
[62] A. Look,et al. Prognostic significance of CD34 expression in childhood B-precursor acute lymphocytic leukemia: a Pediatric Oncology Group study. , 1990, Journal of clinical oncology : official journal of the American Society of Clinical Oncology.
[63] M. Fackler,et al. Activated protein kinase C directly phosphorylates the CD34 antigen on hematopoietic cells. , 1990, The Journal of biological chemistry.
[64] I. Bernstein,et al. Human hematopoietic precursors in long-term culture: single CD34+ cells that lack detectable T cell, B cell, and myeloid cell antigens produce multiple colony-forming cells when cultured with marrow stromal cells , 1990, The Journal of experimental medicine.
[65] C. Eaves,et al. Selective expression of CD45 isoforms on functional subpopulations of CD34+ hemopoietic cells from human bone marrow , 1990, The Journal of experimental medicine.
[66] M. Greaves,et al. Expression of the CD34 gene in vascular endothelial cells. , 1990, Blood.
[67] H. Nakauchi,et al. Colony formation of clone-sorted human hematopoietic progenitors. , 1990, Blood.
[68] 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.
[69] M. Greaves,et al. The hemopoietic stem cell antigen, CD34, is encoded by a gene located on chromosome 1. , 1989, Leukemia.
[70] G. Bonadonna,et al. Circulation of CD34+ hematopoietic stem cells in the peripheral blood of high-dose cyclophosphamide-treated patients: enhancement by intravenous recombinant human granulocyte-macrophage colony-stimulating factor. , 1989, Blood.
[71] P. Lansdorp,et al. Characterization and partial purification of human marrow cells capable of initiating long-term hematopoiesis in vitro. , 1989, Blood.
[72] B. Haynes,et al. Immature human thymocytes can be driven to differentiate into nonlymphoid lineages by cytokines from thymic epithelial cells. , 1989, Proceedings of the National Academy of Sciences of the United States of America.
[73] R. Hoffman,et al. Characterization of the human burst-forming unit-megakaryocyte. , 1989, Blood.
[74] I. Bernstein,et al. Precursors of colony-forming cells in humans can be distinguished from colony-forming cells by expression of the CD33 and CD34 antigens and light scatter properties , 1989, The Journal of experimental medicine.
[75] B. Asenbauer,et al. Sequential expression of CD34 and CD33 antigens on myeloid colony‐forming cells , 1989, European journal of haematology.
[76] M. Greaves,et al. Structural and partial amino acid sequence analysis of the human hemopoietic progenitor cell antigen CD34. , 1988, Leukemia.
[77] R. Hoffman,et al. Characterization of a human hematopoietic progenitor cell capable of forming blast cell containing colonies in vitro. , 1988, The Journal of clinical investigation.
[78] M. Ogawa,et al. Synergism between interleukin-6 and interleukin-3 in supporting proliferation of human hematopoietic stem cells: comparison with interleukin-1 alpha. , 1988, Blood.
[79] I. Bernstein,et al. Antigen CD34+ marrow cells engraft lethally irradiated baboons. , 1988, The Journal of clinical investigation.
[80] J. Gasson,et al. Recombinant gibbon interleukin 3 supports formation of human multilineage colonies and blast cell colonies in culture: comparison with recombinant human granulocyte-macrophage colony-stimulating factor. , 1987, Blood.
[81] M R Loken,et al. Flow cytometric analysis of human bone marrow. II. Normal B lymphocyte development. , 1987, Blood.
[82] R. Hoffman,et al. Characterization of adult human marrow hematopoietic progenitors highly enriched by two-color cell sorting with My10 and major histocompatibility class II monoclonal antibodies. , 1987, Journal of immunology.
[83] R. Levinsky,et al. Distribution and epitope analysis of the cell membrane glycoprotein (HPCA-1) associated with human hemopoietic progenitor cells. , 1987, Leukemia.
[84] C. Civin,et al. Antigenic analysis of hematopoiesis. V. Characterization of My-10 antigen expression by normal lymphohematopoietic progenitor cells. , 1986, Experimental hematology.
[85] H. Cohen,et al. Subpopulations of common acute lymphoblastic leukemia antigen-positive lymphoid cells in normal bone marrow identified by hematopoietic differentiation antigens. , 1986, Blood.
[86] I. Bernstein,et al. Monoclonal antibody 12-8 recognizes a 115-kd molecule present on both unipotent and multipotent hematopoietic colony-forming cells and their precursors , 1986 .
[87] G. Keller,et al. Expression of a foreign gene in myeloid and lymphoid cells derived from multipotent haematopoietic precursors , 1985, Nature.
[88] I. Bertoncello,et al. Multiparameter analysis of transplantable hemopoietic stem cells: I. The separation and enrichment of stem cells homing to marrow and spleen on the basis of rhodamine-123 fluorescence. , 1985, Experimental hematology.
[89] C. Civin,et al. Localization of hematopoietic progenitor cells in tissue with the anti-My-10 monoclonal antibody. , 1985, The American journal of pathology.
[90] M. Fackler,et al. Antigenic analysis of hematopoiesis. III. A hematopoietic progenitor cell surface antigen defined by a monoclonal antibody raised against KG-1a cells. , 1984, Journal of immunology.
[91] V. Najfeld,et al. Involvement of the B-lymphoid system in chronic myelogenous leukaemia , 1980, Nature.
[92] 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.
[93] R. Weiner,et al. Increase in Circulating Stem Cells Following Chemotherapy in Man , 1976 .
[94] T. Holyoake,et al. Efficient isolation of human CD34 positive hemopoietic progenitor cells by immune panning , 1994, Stem cells.
[95] L. Terstappen,et al. Formation of haematopoietic microenvironment and haematopoietic stem cells from single human bone marrow stem cells , 1992, Nature.
[96] M. Fackler,et al. Activated protein kinase C directly phosphorylates the CD34 antigen in acute lymphoblastic leukemia cells. , 1992, Leukemia & lymphoma.
[97] S. Heimfeld,et al. Transplantation of stem cells enriched by immunoadsorption. , 1992, Progress in clinical and biological research.
[98] R. Bast,et al. Detection of minimal residual breast cancer in bone marrow. , 1992, Progress in clinical and biological research.
[99] G. Tricot,et al. The AIS CELLector: a new technology for stem cell purification. , 1992, Progress in clinical and biological research.
[100] A. A. Ross,et al. The risk of tumor cell contamination in peripheral blood stem cell collections. , 1992, Journal of hematotherapy.
[101] M. Fackler,et al. Positive stem cell selection--basic science. , 1990, Progress in clinical and biological research.
[102] R. Eddy,et al. Chromosome 1 localization of the gene for CD34, a surface antigen of human stem cells. , 1990, Cytogenetics and cell genetics.
[103] Andreas Radbruch,et al. High gradient magnetic cell separation with MACS. , 1990, Cytometry.
[104] H. Mayani,et al. Effects of recombinant human granulocyte-macrophage colony-stimulating factor (rhGM-CSF) on single CD34-positive hemopoietic progenitors from human bone marrow. , 1989, International journal of cell cloning.
[105] G. Stamatoyannopoulos,et al. Characterization of a novel form of transferrin receptor preferentially expressed on normal erythroid progenitors and precursors. , 1989, Blood.
[106] M. Greaves,et al. Co-ordinate expression of BI.3C5 and HLA-DR antigens on haemopoietic progenitors from chronic myeloid leukaemia. , 1986, Leukemia research.
[107] M. Greaves,et al. Identification of a membrane glycoprotein associated with haemopoietic progenitor cells. , 1985, Leukemia research.
[108] D. Campana,et al. A novel monoclonal antibody BI-3C5 recognises myeloblasts and non-B non-T lymphoblasts in acute leukaemias and CGL blast crises, and reacts with immature cells in normal bone marrow. , 1985, Leukemia research.
[109] P. Vincent. Blood, Pure and Eloquent , 1980 .