Literature DB >> 11205918

Simultaneous immunomagnetic CD34+ cell selection and B-cell depletion in peripheral blood progenitor cell samples of patients suffering from B-cell non-Hodgkin's lymphoma.

M Mohr1, F Dalmis, E Hilgenfeld, E Oelmann, M Zühlsdorf, K Kratz-Albers, A Nolte, C Schmitmann, D Onaldi-Mohr, U Cassens, H Serve, W Sibrowski, J Kienast, W E Berdel.   

Abstract

The reduction of residual tumor cells is one of the main targets of leukapheresis product (LP) processing. Immunomagnetic enrichment/selection of CD34+ progenitor cells (Baxter Isolex 300i) can achieve a reduction of contaminating B-cells of approximately 2-3 logs in B-cell non-Hodgkin's lymphoma patients. Specific release of the enriched CD34+ cells (stem cell releasing agent PR34+; Baxter) and the use of antibody-coated immunobeads targeted against B-cell markers (CD10, CD19, CD20, CD22, CD23, and CD37) during this procedure allows the GMP-like simultaneous capture of residual B cells within a closed system. This combination of two purging techniques enhances the B-cell depletion capacity up to 4.5 logs. By performing 10 clinical-scale purging procedures, we could show that the simultaneous immunomagnetic purging method is easy to perform and highly efficient. We evaluated B-cell log depletion by flow cytometry for cases with marker-positive cells detectable before and after the purging procedure. The mean reduction of B-cells in these cases was 3.5 logs; the mean CD34+ cell yield and purity were 47 and 92%. Using three LPs, we tested the procedure on a modified Baxter Isolex 300i device with software adaptations for this procedure (software version 2.0) in direct comparison with CD34+ cell selection only, using the former version (version 1.12). The CD34+ cell yield was 49% (40-54%) for the CD34+ cell selection and 51% (19-72%) for simultaneous double selection. The mean purity was 96% for CD34+ cell selection and 98% for simultaneous double selection. B-cell depletion was 1.9 logs for CD34+ cell selection, and after simultaneous double selection, the B-cell content was decreased by 3.7 log steps (P = 0.0495). Clinical application of double-purged cells has not prolonged the hematopoietic recovery times after high-dose therapy as compared with nonpurged peripheral blood progenitor cell autotransplants. In conclusion, we could show that the simultaneous double selection protocol developed leads to a highly increased B-cell purging efficacy when compared with CD34+ cell selection without any negative effects regarding CD34+ cell yield and engraftment times after high-dose therapy.

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Year:  2001        PMID: 11205918

Source DB:  PubMed          Journal:  Clin Cancer Res        ISSN: 1078-0432            Impact factor:   12.531


  4 in total

1.  Microfluidic immunomagnetic cell separation using integrated permanent micromagnets.

Authors:  O Osman; S Toru; F Dumas-Bouchiat; N M Dempsey; N Haddour; L-F Zanini; F Buret; G Reyne; M Frénéa-Robin
Journal:  Biomicrofluidics       Date:  2013-10-15       Impact factor: 2.800

Review 2.  Oncolytic viral purging of leukemic hematopoietic stem and progenitor cells with Myxoma virus.

Authors:  Masmudur M Rahman; Gerard J Madlambayan; Christopher R Cogle; Grant McFadden
Journal:  Cytokine Growth Factor Rev       Date:  2010-03-07       Impact factor: 7.638

3.  GMP-conformant on-site manufacturing of a CD133+ stem cell product for cardiovascular regeneration.

Authors:  Anna Skorska; Paula Müller; Ralf Gaebel; Jana Große; Heiko Lemcke; Cornelia A Lux; Manuela Bastian; Frauke Hausburg; Nicole Zarniko; Sandra Bubritzki; Ulrike Ruch; Gudrun Tiedemann; Robert David; Gustav Steinhoff
Journal:  Stem Cell Res Ther       Date:  2017-02-10       Impact factor: 6.832

Review 4.  The ex vivo purge of cancer cells using oncolytic viruses: recent advances and clinical implications.

Authors:  Jovian J Tsang; Harold L Atkins
Journal:  Oncolytic Virother       Date:  2015-01-23
  4 in total

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