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Validation of an Optimized DuraClone Phenotyping Kit Workflow for TBNK Subset Quantification
Carlos Agustin Villegas-Valverde1, Imilla Casado Hernandez1, Yaima Zuñiga Rosales1
1Abu Dhabi Stem Cells Center, Abu Dhabi, UAE.
Insights
This study optimized a TBNK assay for quantifying T-cells, B-cells, and NK-cells. The improved workflow enhances efficiency and accuracy for immune monitoring and disease diagnosis.
Area of Science:
- Clinical immunology
- Flow cytometry
- Hematology
Background:
- Accurate quantification of T-cells, B-cells, and NK-cells (TBNK) is vital for diagnosing immune disorders and monitoring therapies.
- Standardization of TBNK subset analysis in peripheral blood is essential for reliable clinical results.
Purpose of the Study:
- To standardize and validate an optimized workflow for the Beckman Coulter DuraClone IM Phenotyping Basic Kit for TBNK subset quantification.
- To improve workflow efficiency and analytical performance of TBNK enumeration.
Main Methods:
- Modified the DuraClone IM kit protocol, including changes to lysis buffer, addition of counting beads, elimination of centrifugation, and increased acquisition volume.
- Validated the optimized method according to CLSI guidelines (H42-A2, H62) for accuracy, precision, linearity, and limit of quantification (LLOQ).
- Assessed accuracy using Immuno-Trol controls and Bland-Altman analysis, and evaluated external proficiency via the CAP TBNK program.
Main Results:
- The modified protocol reduced procedural steps by 50% and processing time by 38.6%.
- Demonstrated high accuracy with low bias, strong agreement in Bland-Altman analysis, and successful completion of CAP proficiency tests.
- Achieved excellent precision (CV < 10%), linearity (R² > 0.99), and clinically relevant LLOQ (< 10-50 cells/μL) for TBNK subsets.
Conclusions:
- The optimized DuraClone IM kit protocol offers a standardized, reliable, and time-efficient method for lymphocyte subset quantification.
- The validated workflow improves efficiency and analytical performance without compromising accuracy or reproducibility.
- This provides a valuable alternative for clinical TBNK enumeration in peripheral blood.
Abstract:
Quantification of T-cells, B-cells, and NK-cells assay is crucial for diagnosing and monitoring immune diseases and evaluating lymphodepleting therapies. To standardize and validate an optimized workflow of the Beckman Coulter DuraClone IM Phenotyping Basic Kit for quantification of TBNK subsets in peripheral blood. Procedural changes included the use of an alternative lysis buffer, the addition of counting beads, the elimination of centrifugation steps, and an increase in acquisition volume. Validation followed CLSI H42-A2 and H62 guidelines, assessing accuracy, precision, linearity, and limit of quantification (LLOQ). Accuracy was evaluated by comparison with Immuno-Trol controls and by Bland-Altman analysis against standard immunophenotyping methods. External proficiency was assessed through participation in the College of American Pathologists (CAP) TBNK program in 2024. Procedural steps were reduced by 50%, and processing time by 38.6%. The modified method demonstrated high accuracy (-3 < bias < 35; cells/μL), a low bias based on Immuno-Trol targets, and strong agreement in the Bland-Altman analysis. The method successfully passed three CAP external proficiency tests in 2024, confirming interlaboratory reliability. Coefficients of variation for precision were below 10% for all subsets. Linearity exceeded R 2 > 0.99 across clinically relevant ranges. Most subsets demonstrated an LLOQ below 10-50 cells/μL, which is suitable for clinical applications. The proposed modifications to the DuraClone IM kit protocol improved workflow efficiency and analytical performance without compromising accuracy or reproducibility. The validated method provides a standardized, reliable, and time-efficient alternative for lymphocyte subset quantification.
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