Quantifying loss of CD34+ cells collected by apheresis after processing for freezing and post-thaw
Author:
Publisher
Elsevier BV
Subject
Hematology
Reference23 articles.
1. CD34+ cells obtained from “good mobilizers” are more activated and exhibit lower ex vivo expansion efficiency than their counterparts from “poor mobilizers”;Ivanovic;Transfusion,2010
2. The composition of leukapheresis products impacts on the hematopoietic recovery after autologous transplantation independently of the mobilization regimen;Menendez;Transfusion,2002
3. Mobilization of peripheral blood stem cells for autologous transplantation patients with hematological malignancies: influence of disease, mobilization method, age and sex;Zhang;Transfus Apheresis Sci,2008
4. Early total white blood cell recovery is a predictor of low number of apheresis and good CD34(+) cell yield;Marques;Transfus Sci,2000
5. Optimization of CD34+ collection for autologous transplantation using the evolution of peripheral blood cell counts after mobilization with chemotherapy and G-CSF;Delamain;Transfus Apheresis Sci,2006
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1. Long-Term Cryopreservation of Peripheral Blood Stem Cell Harvest Using Low Concentration (4.35%) Dimethyl Sulfoxide with Methyl Cellulose and Uncontrolled Rate Freezing at -80 °C: An Effective Option in Resource-Limited Settings;Transplantation and Cellular Therapy;2023-12
2. Variable recovery of cryopreserved hematopoietic stem cells and leukocyte subpopulations in leukapheresis products;Transfusion and Apheresis Science;2023-10
3. Effects of extended transport on cryopreserved allogeneic hematopoietic progenitor cell (HPC) product quality and optimal methods to assess HPC stability;Transfusion;2023-03-28
4. Role of flow cytometry in evaluation of the cellular therapy products used in haematopoietic stem cell transplantation;International Journal of Laboratory Hematology;2022-04-13
5. Effects of cell concentration, time of fresh storage, and cryopreservation on peripheral blood stem cells;Transfusion and Apheresis Science;2021-10
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