Improved Priming for Mobilization of and Optimal Timing for Harvest of Peripheral Blood Stem Cells
- 1 August 1996
- journal article
- research article
- Published by Mary Ann Liebert Inc in Journal of Hematotherapy
- Vol. 5 (4) , 399-406
- https://doi.org/10.1089/scd.1.1996.5.399
Abstract
The time of stem cell harvest and the mobilization regimen may play important roles in terms of achieving adequate numbers of stem cells by leukapheresis. To optimize the timing of leukapheresis, we have determined simultaneously the number of CD34+ cells in the peripheral blood as well as in the leukapheresis product of 214 apheresis procedures performed in 66 unselected patients with malignant hematologic diseases and solid tumors. A significant correlation between the number of CD34+ cells in peripheral blood and the leukapheresis product (R = 0.8) was found. The presence of more than 20 × 103/ml blood CD34+ cells gave a sufficient yield (≥1.0 × 106 CD34+ cells/kg) in 81% of the cases. In an attempt to compare two priming regimens, we performed leukapheresis twice in 12 patients with stable disease. In the first sequence, stem cells were mobilized with rhG-CSF (10μg/kg/day) alone and, in the second sequence, with cyclophosphamide (4 g/m2) plus rhG-CSF. A significantly higher yield of CD34+ cells and a better correlation between CD34+ cells in the peripheral blood and the leukapheresis product were found after priming with high-dose cyclophosphamide plus rhG-CSF, compared with priming with rhG-CSF alone. In a multivariate analysis, three factors were found to correlate with the yield of CD34+ cells, namely prior chemotherapy, bone marrow function, and the mobilization regimen. The use of cyclophosphamide priming improves CD34+ mobilization, and the introduction of blood CD34+ level optimizes the timing for harvest of stem cells, which should be performed early during treatment of malignancies.Keywords
This publication has 16 references indexed in Scilit:
- Mobilization of haemopoietic stem cells by cyclophosphamide into the peripheral blood of patients with haematological malignanciesClinical and Laboratory Haematology, 2008
- Short-term myeloid growth factor mediated expansion of bone marrow haemopoiesis| studied by localized magnetic resonance proton spectroscopyBritish Journal of Haematology, 1994
- Development of a simplified single-apheresis approach for peripheral-blood progenitor-cell transplantation in previously treated patients with lymphoma.Journal of Clinical Oncology, 1994
- Peripheral blood stem cells (PBSCs) collected after recombinant granulocyte colony stimulating factor (rhG‐CSF): an analysis of factors correlating with the tempo of engraftment after transplantationBritish Journal of Haematology, 1994
- Haemopoietic reconstitution after autologous blood stem cell transplantation in patients with malignancies: a multicentre retrospective studyBritish Journal of Haematology, 1994
- Multiparameter flow-cytometrical quantitation of circulating CD34+-cells: correlation to the quantitation of circulating haemopoietic progenitor cells by in vitro colony-assayBritish Journal of Haematology, 1991
- 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 factorBlood, 1989
- GRANULOCYTE-MACROPHAGE COLONY STIMULATING FACTOR EXPANDS THE CIRCULATING HAEMOPOIETIC PROGENITOR CELL COMPARTMENT IN MANThe Lancet, 1988
- HAEMOPOIETIC RECONSTITUTION AFTER AUTOLOGOUS PERIPHERAL BLOOD STEM CELL TRANSPLANTATION IN ACUTE LEUKAEMIAThe Lancet, 1986
- Increase in circulating stem cells following chemotherapy in manBlood, 1976