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Characterization of Human Monocyte Subsets by Whole Blood Flow Cytometry Analysis
Published on: October 17, 2018
Intermittent-flow versus continuous-flow mononuclear cell apheresis
J Storek1, J Nepomucka, P Kobylka
1Institute of Hematology and Blood Transfusion, Prague, Czechoslovakia.
Abstract:
An intermittent-flow (Haemonetics V-50) and a continuous-flow (Fenwall CS-3000) blood cell separator were compared regarding mononuclear cell (MNC) collection. 17 evaluable V-50 and 24 CS-3000 aphereses were performed on healthy donors. No significant difference was found in MNC yield (median 6.4 x 10(9) on V-50, 6.3 x 10(9) on CS-3000) or in CFU-GM yield (median 41 x 10(3) versus 43 x 10(3) respectively). Nevertheless, red blood cell as well as polymorphonuclear cell contamination was substantially greater on V-50 than on CS-3000, while platelet contamination was slightly lower on V-50 than on CS-3000. The continuous-flow apheresis system CS-3000 is concluded to be more suitable for MNC harvesting than the intermittent-flow system V-50.
Insights
The continuous-flow Fenwall CS-3000 is better for collecting mononuclear cells (MNCs) than the intermittent-flow Haemonetics V-50. While MNC yield was similar, the CS-3000 had less contamination.
Area of Science:
- Hematology
- Biomedical Engineering
- Cellular Biology
Background:
- Blood cell separators are crucial for isolating specific cell populations.
- Intermittent-flow and continuous-flow systems represent different technological approaches to apheresis.
- Optimizing mononuclear cell (MNC) collection is vital for various clinical and research applications.
Purpose of the Study:
- To compare the efficacy of an intermittent-flow (Haemonetics V-50) and a continuous-flow (Fenwall CS-3000) blood cell separator for mononuclear cell (MNC) collection.
- To evaluate differences in cell yield and purity between the two apheresis systems.
Main Methods:
- A comparative study involving 17 aphereses using the V-50 and 24 aphereses using the CS-3000 on healthy donors.
- Analysis of mononuclear cell (MNC) yield and colony-forming unit-granulocyte-macrophage (CFU-GM) yield.
- Assessment of contamination by red blood cells, polymorphonuclear cells, and platelets.
Main Results:
- No significant difference was observed in MNC yield (V-50: median 6.4 x 10^9; CS-3000: median 6.3 x 10^9).
- No significant difference was found in CFU-GM yield (V-50: median 41 x 10^3; CS-3000: median 43 x 10^3).
- The CS-3000 system demonstrated substantially lower red blood cell and polymorphonuclear cell contamination compared to the V-50 system, with slightly lower platelet contamination.
Conclusions:
- The continuous-flow apheresis system (CS-3000) is more suitable for mononuclear cell (MNC) harvesting than the intermittent-flow system (V-50).
- The CS-3000 offers a purer MNC product, which is advantageous for downstream applications.
- System design impacts the efficiency and purity of cell separation in apheresis procedures.
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