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Routine Screening Method for Microparticles in Platelet Transfusions
Published on: January 31, 2018
An innovative flow cytometric approach for small-size platelet microparticles: influence of calcium
Silvia Montoro-García1, Eduard Shantsila, Esteban Orenes-Piñero
1Haemostasis, Thrombosis and Vascular Biology Unit, University of Birmingham Centre for Cardiovascular Sciences, City Hospital, Birmingham, UK.
Abstract:
Microparticles (MPs) are small submicron membrane-derived vesicles shed from a variety of cells and they have been implicated in different disorders. Accordingly, understanding of physiological characteristics of MPs and improvement of methods of their quantification are important for further advance in the field. Although flow cytometry is the most widely applied technique for MP analysis, it is limited by lack of adequate standardisation. Annexin V (AnV), which binds surface phosphatidylserine (PS) with high affinity, has been long regarded as a marker of MPs, but AnV binding is Ca2+-dependent and it is unclear how [Ca2+] concentrations could affect AnV binding to MPs and its enumeration. MPs from citrated and heparinised plasma were labelled with AnV, anti-CD42b and quantified using an Apogee A50 flow cytometer. The small-size MP gate was defined with the use of size beads (from 0.1 to 0.5 μm) and confirmed with an in vitro assessment of platelet stimulation. Biotinylated anti-CD42b antibodies were then bound to streptavidin conjugated with different fluorochromes, leading to an amplified signal of platelet MPs (PMPs). Moderate increase of [Ca2+] concentrations in the annexin V staining buffer allows initial plasma recalcification and more accurate MP quantification in citrated plasma. Thrombin stimulation of platelet-free plasma containing only MPs did not produce any changes in the concentration of AnV+ MPs, but decreased the anti-CD42b binding. The results also indicate that prolonged storage and thrombin induce the release of AnV+ MPs whereas PS exposure in pre-existent MPs is not affected by thrombin. In conclusion, we present a sensitive protocol for the analysis of circulating and in vitro induced small-size PMPs that might contribute to future cardiovascular and clinical research.
Insights
Accurate quantification of microparticles (MPs) is crucial for understanding disorders. This study refines flow cytometry methods for analyzing platelet MPs (PMPs), improving accuracy in plasma samples by optimizing calcium levels and antibody labeling.
Area of Science:
- Biomedical research
- Cell biology
- Analytical chemistry
Background:
- Microparticles (MPs) are cell-derived vesicles implicated in various disorders.
- Flow cytometry is a common MP analysis technique but lacks standardization.
- Annexin V (AnV) binding to MPs is calcium-dependent, affecting quantification.
Purpose of the Study:
- To improve the quantification of small-size platelet MPs (PMPs).
- To investigate the effect of calcium concentration on AnV binding and MP enumeration.
- To develop a sensitive protocol for analyzing circulating and in vitro induced PMPs.
Main Methods:
- MPs from citrated and heparinized plasma were labeled with AnV and anti-CD42b.
- Quantification was performed using an Apogee A50 flow cytometer with defined size gates.
- Optimized staining buffer calcium concentrations and antibody amplification techniques were employed.
Main Results:
- Moderate increase in calcium concentration improved MP quantification in citrated plasma.
- Thrombin stimulation decreased anti-CD42b binding but did not alter AnV+ MP concentration in platelet-free plasma.
- Prolonged storage and thrombin induced release of AnV+ MPs, without affecting pre-existent MP phosphatidylserine exposure.
Conclusions:
- A sensitive protocol for analyzing small-size PMPs was developed.
- Optimized calcium levels enhance MP quantification accuracy.
- The findings contribute to future cardiovascular and clinical research involving MPs.
