Comparison of Haemonetics Cell Saver 5+ and manual density separation for optimum depletion of red blood cells and preservation of CD34(+) cells in major ABO-incompatible bone marrow grafts

比较 Haemonetics Cell Saver 5+ 和手动密度分离法在主要 ABO 血型不相容骨髓移植中红细胞去除和 CD34(+) 细胞保存方面的效果

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Abstract

BACKGROUND AIMS: The current approach for preventing hemolysis of red blood cells (RBCs) in major ABO-incompatible bone marrow (BM) grafts after infusion is to deplete RBCs from BM products before transplantation. Traditionally, manual density separation (MDS) using Ficoll-Hypaque (Cytiva Sweden AB, Uppsala, Sweden has been used to accomplish RBC depletion. This process yields good CD34(+) cell recovery, but it requires open manipulation and is labor-intensive and time-consuming. We hypothesized that an alternative automated method using Haemonetics Cell Saver 5+ (Haemonetics Corporation, Boston, MA, USA) would offer equivalent RBC depletion and CD34(+) cell recovery. Small marrow volumes from pediatric donors can be processed using Cell Saver (CS) without adding the third-party RBCs necessary for other automated methods. METHODS: This retrospective analysis comprised data from 58 allogeneic BM grafts. RBC depletion and CD34(+) cell recovery from BM using MDS (35 grafts) were compared with CS (14 grafts). Nine products underwent RBC depletion using CS with Ficoll (CS-F) when RBC volume was less than 125 mL. RESULTS: Linear regression analysis of log transformation of CD34(+) cell recovery adjusted for log transformation of both baseline CD34(+) cell content and baseline total volume showed no significant difference between MDS and CS (estimated coefficient, -0.121, P = 0.096). All products contained an RBC volume of less than 0.25 mL/kg post-processing. CD34(+) cell recovery with CS-F was comparable to MDS and CS and suitable for pediatric recipients of allogeneic hematopoietic cell transplantation. CONCLUSIONS: We provide evidence that an automated method using Haemonetics Cell Saver 5+ achieves RBC depletion and CD34(+) cell recovery comparable to MDS when adjusting for baseline factors.

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