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Journal Abstract Search


298 related items for PubMed ID: 8899194

  • 1. The dielectrophoresis enrichment of CD34+ cells from peripheral blood stem cell harvests.
    Stephens M, Talary MS, Pethig R, Burnett AK, Mills KI.
    Bone Marrow Transplant; 1996 Oct; 18(4):777-82. PubMed ID: 8899194
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  • 3. A nylon wool filter coated with human immunoglobulin for rapid depletion of monocytes and myeloid cells from peripheral blood stem cell transplants.
    Kwekkeboom J, Buurman DE, Ploemacher RE, Baars JW, Loos HA, Slaper-Cortenbach IC.
    Exp Hematol; 1998 May; 26(5):400-8. PubMed ID: 9590656
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  • 4. Dendritic cell-based vaccines in the setting of peripheral blood stem cell transplantation: CD34+ cell-depleted mobilized peripheral blood can serve as a source of potent dendritic cells.
    Choi D, Perrin M, Hoffmann S, Chang AE, Ratanatharathorn V, Uberti J, McDonagh KT, Mulé JJ.
    Clin Cancer Res; 1998 Nov; 4(11):2709-16. PubMed ID: 9829733
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  • 5. Enumeration of CD34+ hematopoietic progenitor cells for clinical transplantation: comparison of three different methods.
    Venditti A, Battaglia A, Del Poeta G, Buccisano F, Maurillo L, Tamburini A, Del Moro B, Epiceno AM, Martiradonna M, Caravita T, Santinelli S, Adorno G, Picardi A, Zinno F, Lanti A, Bruno A, Suppo G, Franchi A, Franconi G, Amadori S.
    Bone Marrow Transplant; 1999 Nov; 24(9):1019-27. PubMed ID: 10556963
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  • 6. Plasma levels of SDF-1 and expression of SDF-1 receptor on CD34+ cells in mobilized peripheral blood of non-Hodgkin's lymphoma patients.
    Gazitt Y, Liu Q.
    Stem Cells; 2001 Nov; 19(1):37-45. PubMed ID: 11209089
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  • 7. Comparative analysis of peripheral stem cells collected and transplanted in combination with granulocyte-macrophage and granulocyte colony-stimulating factors.
    Handgretinger R, Klingebiel T, Herter M, Lang P, Gisselhart A, Dopfer R, Scheel-Walter H, Ehrlich H, Niethammer D.
    Prog Clin Biol Res; 1994 Nov; 389():479-86. PubMed ID: 7535457
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  • 10. Comparison of purity and enrichment of CD34+ cells from bone marrow, umbilical cord and peripheral blood (primed for apheresis) using five separation systems.
    de Wynter EA, Coutinho LH, Pei X, Marsh JC, Hows J, Luft T, Testa NG.
    Stem Cells; 1995 Sep; 13(5):524-32. PubMed ID: 8528102
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  • 13. Comparison of peripheral blood progenitor cell mobilization in patients with multiple myeloma: high-dose cyclophosphamide plus GM-CSF vs G-CSF alone.
    Alegre A, Tomás JF, Martínez-Chamorro C, Gil-Fernández JJ, Fernández-Villalta MJ, Arranz R, Díaz MA, Granda A, Bernardo MR, Escudero A, López-Lorenzo JL, Fernández-Rañada JM.
    Bone Marrow Transplant; 1997 Aug; 20(3):211-7. PubMed ID: 9257889
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  • 14. Isolation of purified autologous peripheral blood CD34+ cells with low T cell content using CliniMACS device--a local experience.
    Leong CF, Habsah A, Teh HS, Goh KY, Fadilah SA, Cheong SK.
    Malays J Pathol; 2008 Jun; 30(1):31-6. PubMed ID: 19108409
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  • 15. Differences in CD34+ cell subpopulations between human bone marrow and "mobilized" peripheral blood as determined with counterflow centrifugal elutriation.
    Chang Q, Harvey K, Akard L, Thompson J, Dugan MJ, English D, Jansen J.
    Exp Hematol; 1997 May; 25(5):423-31. PubMed ID: 9168064
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  • 17. Counterflow centrifugation allows addition of appropriate numbers of T cells to allogeneic marrow and blood stem cell grafts to prevent severe GVHD without substantial loss of mature and immature progenitor cells.
    Preijers FW, van Hennik PB, Schattenberg A, Ruijs P, Ploemacher RE, de Witte T.
    Bone Marrow Transplant; 1999 May; 23(10):1061-70. PubMed ID: 10373074
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  • 19. Peripheral blood stem cell mobilization after stem cell factor or G-CSF treatment: rapid enrichment for stem and progenitor cells using the CEPRATE immunoaffinity separation system.
    Heimfeld S, Fogarty B, McGuire K, Williams S, Berenson RJ.
    Transplant Proc; 1992 Dec; 24(6):2818. PubMed ID: 1281575
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