Related Experiment Video
Updated: May 21, 2026

Dynamic Multiparameter Platelet Function Assessment Using a Capacitive Biosensor
Published on: May 2, 2025
Methodological considerations for the assessment of ADP induced platelet aggregation using the Multiplate® analyser
Lisa R Johnston1, Peter D Larsen, Anne C La Flamme
1School of Biological Sciences, Victoria University of Wellington , Wellington , New Zealand.
Abstract:
Factors affecting the Multiplate® assay's analytical precision have not been well defined. We investigated the effect of methodological factors on the measurement of ADP-induced platelet aggregation using the Multiplate® assay. ADP-induced platelet aggregation was analysed in whole blood using the Multiplate® assay. We tested the reproducibility of measurement, the effect of different anticoagulants (hirudin, citrate and heparin) and the effect of time delay (15, 30, 45, 60, 120 and 180 minutes) between sampling and analysis in patients. The use of a manual calibrated pipette with the Multiplate® analyser was also tested. The mean coefficient of variation (CV) using the manufacturers recommended methods was 10.8 ± 8.7% (n = 30). When compared to hirudin (359.5 ± 309 AU*min) the use of heparin (521.0 ± 316 AU*min, p = 0.0015) increased platelet aggregation, while the use of sodium citrate (245.0 ± 209 AU*min, p = 0.003) decreased the platelet aggregation (n = 20). The addition of CaCl2 to the citrate-anticoagulated blood resulted in platelet aggregation levels similar to hirudin. Platelet aggregation varied with time delay (n = 20). When compared to platelet aggregation at 30 minutes (391.1 ± 283 AU*min), platelet aggregation was reduced at 60 minutes (335.2 ± 251.6 AU*min, p < 0.05), 120 minutes (198.8 ± 122.9 AU*min, p < 0.001) and 180 minutes (160.7 ± 92 AU*min, p < 0.001). The use of a manual calibrated pipette did not significantly reduce the mean CV in the assay (n = 20). Methodological factors such as the anticoagulant used and the time delay should be standardised where possible to reduce variability, and allow thresholds derived from one study to be comparable across multiple studies.
Insights
Standardizing anticoagulants and time delays in the Multiplate® assay is crucial for precise ADP-induced platelet aggregation measurements. This improves the reliability and comparability of results across studies.
Area of Science:
- Hematology
- Clinical Chemistry
- Laboratory Medicine
Background:
- The Multiplate® assay is widely used for assessing platelet function.
- Analytical precision is critical for reliable platelet aggregation measurements.
- Factors influencing the Multiplate® assay's precision are not fully understood.
Purpose of the Study:
- To investigate methodological factors affecting ADP-induced platelet aggregation measurements using the Multiplate® assay.
- To evaluate the impact of different anticoagulants and time delays on assay precision.
- To assess the effect of using a manual calibrated pipette.
Main Methods:
- ADP-induced platelet aggregation was analyzed in whole blood.
- Reproducibility was assessed.
- Effects of hirudin, citrate, and heparin anticoagulants were compared.
- Impact of time delays (15-180 minutes) between sampling and analysis was evaluated.
- Use of a manual calibrated pipette was tested.
Main Results:
- The mean coefficient of variation (CV) was 10.8% ± 8.7% with manufacturer's recommended methods.
- Heparin increased platelet aggregation compared to hirudin (p=0.0015).
- Sodium citrate decreased platelet aggregation (p=0.003), but CaCl2 addition normalized results.
- Platelet aggregation significantly decreased with longer time delays (60, 120, 180 minutes) compared to 30 minutes (p<0.001).
- A manual calibrated pipette did not significantly reduce assay CV.
Conclusions:
- Anticoagulant choice and time delay significantly impact ADP-induced platelet aggregation measurements.
- Standardization of these methodological factors is essential for reducing variability.
- Standardization will enhance the comparability of Multiplate® assay results across different studies and laboratories.
More Related Videos
09:13Turbidimetry on Human Washed Platelets: The Effect of the Pannexin1-inhibitor Brilliant Blue FCF on Collagen-induced Aggregation
Published on: April 6, 2017
05:49Procoagulant Platelet Characterization by Measuring Phosphatidylserine Exposure and Microvesicle Release from Human Purified Platelets
Published on: November 29, 2024