Literature DB >> 15847797

Efficient elutriation of monocytes within a closed system (Elutra) for clinical-scale generation of dendritic cells.

Thomas G Berger1, Erwin Strasser, Richard Smith, Curt Carste, Beatrice Schuler-Thurner, Eckhart Kaempgen, Gerold Schuler.   

Abstract

Dendritic cells (DC) are promising tools for the immunotherapy of cancer. The induction of tumor-specific T cells and clinical regressions have already been observed in early phase I/II vaccination trials. As DC vaccination is now facing trials with larger patient collectives it becomes increasingly important to obtain large numbers of cells suitable for therapeutic applications under labor- and cost-effective conditions. We describe here a procedure that uses a novel cell separator (Elutra, Gambro BCT) to enrich monocytes from an entire apheresis product within one hour. Cells are separated on the basis of size and to a lesser extent density, by elutriation in a 40-ml conical chamber. The total monocyte recovery following elutriation (n = 6) was 98.53% (+/-8.07%), the recovery in the monocyte-rich fraction 75.45% (+/-11.31%), and the mean purity 82.95% (+/-6.01%). These monocytes can be cultured either in conventional culture dishes or in closed cell culture bags and differentiated, by using GM-CSF+IL-4 followed by a maturation cocktail composed of IL-1beta+IL-6+TNF-alpha+PGE2, into fully mature DC. The Elutra separator allows for fast and easy enrichment of monocytes within a closed system. Subsequently, elutriated monocytes can be successfully cultured into phenotypically and functionally mature DC for immunotherapeutic approaches. The method neither requires a density gradient step to enrich PBMC from leucapheresis products nor does it apply (xenogeneic) antibodies to target monocytes. Isolation of monocytes with Elutra may greatly facilitate future DC-based vaccination approaches.

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Year:  2005        PMID: 15847797     DOI: 10.1016/j.jim.2005.01.005

Source DB:  PubMed          Journal:  J Immunol Methods        ISSN: 0022-1759            Impact factor:   2.303


  31 in total

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Journal:  Stem Cells Transl Med       Date:  2015-08-13       Impact factor: 6.940

2.  Evaluation of gene expression profiles of immature dendritic cells prepared from peripheral blood mononuclear cells.

Authors:  Jeong Won Shin; Ping Jin; Yong Fan; Stefanie Slezak; Virginia David-Ocampo; Hanh M Khuu; Elizabeth J Read; Ena Wang; Francesco M Marincola; David F Stroncek
Journal:  Transfusion       Date:  2008-02-12       Impact factor: 3.157

Review 3.  Recent Advances in Good Manufacturing Practice-Grade Generation of Dendritic Cells.

Authors:  Sarah Cunningham; Holger Hackstein
Journal:  Transfus Med Hemother       Date:  2020-10-28       Impact factor: 3.747

4.  Generation of Immature, Mature and Tolerogenic Dendritic Cells with Differing Metabolic Phenotypes.

Authors:  Wen Jing Sim; Frano Malinarich; Anna-Marie Fairhurst; John Edward Connolly
Journal:  J Vis Exp       Date:  2016-06-22       Impact factor: 1.355

5.  Generation of functionally mature dendritic cells from elutriated monocytes using polyinosinic : polycytidylic acid and soluble CD40 ligand for clinical application.

Authors:  S Kim; H O Kim; H J Kim; K Lee; H-S Kim
Journal:  Clin Exp Immunol       Date:  2008-09-08       Impact factor: 4.330

6.  Tn-MUC1 DC Vaccination of Rhesus Macaques and a Phase I/II Trial in Patients with Nonmetastatic Castrate-Resistant Prostate Cancer.

Authors:  Elizabeth Scheid; Pierre Major; Alain Bergeron; Olivera J Finn; Russell D Salter; Robin Eady; Bader Yassine-Diab; David Favre; Yoav Peretz; Claire Landry; Sebastien Hotte; Som D Mukherjee; Gregory A Dekaban; Corby Fink; Paula J Foster; Jeffery Gaudet; Jean Gariepy; Rafick-Pierre Sekaly; Louis Lacombe; Yves Fradet; Ronan Foley
Journal:  Cancer Immunol Res       Date:  2016-09-07       Impact factor: 11.151

Review 7.  CAR-T Cell Therapies From the Transfusion Medicine Perspective.

Authors:  Andrew Fesnak; ChieYu Lin; Don L Siegel; Marcela V Maus
Journal:  Transfus Med Rev       Date:  2016-03-28

8.  Evaluation of 3 clinical dendritic cell maturation protocols containing lipopolysaccharide and interferon-gamma.

Authors:  Tae Hee Han; Ping Jin; Jiaqiang Ren; Stefanie Slezak; Francesco M Marincola; David F Stroncek
Journal:  J Immunother       Date:  2009-05       Impact factor: 4.456

9.  Effect of ex vivo culture duration on phenotype and cytokine production by mature dendritic cells derived from peripheral blood monocytes.

Authors:  Abdul Tawab; Yong Fan; Elizabeth J Read; Roger J Kurlander
Journal:  Transfusion       Date:  2009-03       Impact factor: 3.157

10.  Molecular signatures of maturing dendritic cells: implications for testing the quality of dendritic cell therapies.

Authors:  Ping Jin; Tae Hee Han; Jiaqiang Ren; Stefanie Saunders; Ena Wang; Francesco M Marincola; David F Stroncek
Journal:  J Transl Med       Date:  2010-01-15       Impact factor: 5.531

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