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Updated: Jan 5, 2026

Microfluidics in Assessing Platelet Function
Published on: November 8, 2024
Comparison of three common whole blood platelet function tests for in vitro P2Y12 induced platelet inhibition
Joao D Dias1, Torben Pottgiesser2, Jan Hartmann3
1Haemonetics S.A., Signy, Switzerland. jdias@haemonetics.com.
Insights
Platelet function tests using point-of-care analyzers show significant differences in detecting P2Y12-inhibitor effects. These variations impact clinical interpretation and require further investigation for patient risk assessment.
Area of Science:
- Cardiology
- Pharmacology
- Biomedical Engineering
Background:
- Platelet function testing is crucial for managing patients on P2Y12-inhibitors in interventional cardiology.
- Existing point-of-care analyzers lack systematic comparison, hindering consistent clinical application.
- Inter-device variability may affect risk stratification for thrombosis and bleeding.
Purpose of the Study:
- To systematically compare the performance of three whole blood point-of-care platelet function analyzers.
- To evaluate device differences in quantifying the effects of ticagrelor and aspirin (ASA).
- To assess the clinical relevance of observed inter-device variations.
Main Methods:
- Standardized in vitro testing using healthy volunteer blood samples.
- Spiking blood with varying concentrations of ticagrelor and ASA.
- Analysis across TEG®6s, Multiplate®, and VerifyNow® analyzers to determine Effective Concentration (EC) levels.
- Repeatability assessment and calculation of drug effect model disagreements.
Main Results:
- ASA did not affect ADP-activated pathways across all tested devices.
- TEG®6s distinguished all ticagrelor EC zones, while VerifyNow® and Multiplate® distinguished fewer zones.
- Multiplate® exhibited the widest EC10-EC90 window, followed by TEG®6s and VerifyNow®.
- TEG®6s demonstrated the highest repeatability with the smallest coefficient of variation.
Conclusions:
- Significant performance differences exist among point-of-care platelet function analyzers.
- The clinical implications of these discrepancies in assessing P2Y12-inhibitor effects warrant further investigation.
- Standardization or clear guidelines are needed for reliable clinical use.
Abstract:
In the context of interventional cardiology, platelet function testing may identify patients treated with P2Y12-inhibitors at an increased risk of mortality, thrombosis and bleeding. Several whole blood point-of-care platelet function analyzers are available; however, inter-device differences have not been examined systematically. To compare three platelet function tests under standardized in vitro conditions. Healthy volunteer (n = 10) blood samples were spiked with increasing concentrations of ticagrelor (0-7500 ng/mL) and/or ASA (0-3280 ng/mL), measured on three platelet function analyzers (TEG®6s, Multiplate®, and VerifyNow®) and respective Effective Concentration (EC) levels EC10, EC50 and EC90 were calculated. Repeatability was assessed in a separate group of pooled blood samples (n = 10) spiked with ticagrelor at EC10, EC50 and EC90. ASA had no impact on ADP-activated channels for all three devices. TEG®6s was able to distinguish (p ≤ 0.05) between all ticagrelor EC zones; VerifyNow® and Multiplate® were able to distinguish between three and two zones, respectively. Multiplate® showed the largest window between EC10 and EC90 (19-9153 ng/mL), followed by TEG®6s (144-2589 ng/mL), and VerifyNow® (191-1100 ng/mL). Drug effect models distribution of disagreements were identified for TEG®6s (5.0%), VerifyNow® (8.3%), and Multiplate® (13.3%). TEG®6s showed the smallest average coefficient of variation between EC conditions (5.1%), followed by Multiplate® (14.1%), and VerifyNow® (17.7%). Linear models could be generated between TEG®6s and Multiplate®, but not VerifyNow®. Significant differences were found between whole blood point-of-care platelet function analyzers and the clinical impact of these differences needs to be further investigated.
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