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Updated: May 21, 2026

Extracellular Vesicle Tissue Factor Activity Assay
Published on: December 29, 2023
Microparticle-associated tissue factor activity measured with the Zymuphen MP-TF kit and the calibrated automated
Marit Hellum1, Reidun Øvstebø, Anne-Marie S Trøseid
1Blood Cell Research Group, Section for Research, Department of Medical Biochemistry, Oslo University Hospital, Ullevål, Norway. m.s.hellum@medisin.uio.no
Abstract:
There is increasing clinical interest for measuring microparticle (MP)-associated tissue factor (TF) activity owing to its possible role as a prothrombotic biomarker in a variety of diseases. However, the methods used are to various extents hampered by lack of (pre)analytical standardization as well as limited published documentation. The objective of this study was to evaluate the performance of the Zymuphen MP-TF kit and the calibrated automated thrombogram (CAT) assay in measuring MP-associated TF activity in plasma using a Neisseria meningitidis (Nm)-stimulated whole blood model. In addition, (pre)analytical variables like centrifugation procedures, freezing/thawing and the effect of addition of exogenous phosphatidylserine in plasma were evaluated in the CAT assay. Citrate-anticoagulated blood was stimulated with Nm bacteria for 4 h before platelet-poor plasma (PPP) or platelet-free plasma (PFP) were prepared and assayed with either of the two methods. Nm dose-dependently (10-10 bacteria/ml) induced TF-specific activity, measured as decreased lagtimes, in the CAT assay. The Zymuphen MP-TF kit also detected TF activity, although much higher Nm doses (10 bacteria/ml) were required to achieve measurable levels. Neither freezing/thawing nor the use of PPP vs. PFP influenced the TF activity, measured over a broad range of lagtimes, in the CAT assay. In conclusion, changes in lagtime in the CAT assay reflected levels of MP-associated TF activity in a more sensitive manner than the Zymuphen MP-TF kit did, in our Nm-stimulated whole blood system.
Insights
The calibrated automated thrombogram (CAT) assay is more sensitive than the Zymuphen MP-TF kit for measuring microparticle (MP)-associated tissue factor (TF) activity. This finding is crucial for developing standardized prothrombotic biomarker assays.
Area of Science:
- Biochemistry
- Hematology
- Clinical Chemistry
Background:
- Microparticle (MP)-associated tissue factor (TF) activity is a potential prothrombotic biomarker.
- Current measurement methods lack standardization and documentation.
Purpose of the Study:
- Evaluate Zymuphen MP-TF kit and calibrated automated thrombogram (CAT) assay performance for MP-TF activity.
- Assess pre-analytical variables affecting TF activity measurements.
Main Methods:
- Used a Neisseria meningitidis (Nm)-stimulated whole blood model.
- Assayed MP-TF activity in platelet-poor plasma (PPP) and platelet-free plasma (PFP).
- Evaluated centrifugation, freezing/thawing, and phosphatidylserine effects on CAT assay.
Main Results:
- Nm dose-dependently induced TF activity in the CAT assay (decreased lagtime).
- Zymuphen MP-TF kit required higher Nm doses for TF detection.
- Freezing/thawing and plasma type (PPP vs. PFP) did not affect CAT assay TF activity.
Conclusions:
- CAT assay lagtime changes sensitively reflect MP-associated TF activity levels.
- CAT assay demonstrates superior sensitivity compared to Zymuphen MP-TF kit in this model.

