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Updated: Jun 1, 2025

Microfluidics in Assessing Platelet Function
Published on: November 8, 2024
Influence of Anticoagulants on Platelet Counts: A Study and Recommendations From the French Speaking Cellular
Soraya Wuilleme1, Sandrine Girard2, Michel Soulard3
1Hematology Biology, Nantes University Hospital, Nantes, France.
Introduction:
For complete blood count, ethylenediaminetetraacetic acid (EDTA) is universally used and has been recognized as the most robust anticoagulant. However, it may lead to pseudothrombocytopenia (PTCT), due to the formation of platelet clumps, which is currently followed by resampling on sodium citrate. Other possible anticoagulants are citrate theophylline adenosine dipyridamole (CTAD) and MgSO4. These anticoagulants were compared here for resolution of PTCT and platelet count values and stability.
Methods:
Paired blood samples were used to compare the four anticoagulants. First, samples containing clumps on EDTA were compared to samples collected on sodium citrate (335), CTAD (31), or MgSO4 (160). For platelet counts, compared series were of respectively, 168, 191, and 87, paired to PTCT-free EDTA samples. Finally, platelet count stability was evaluated over 2-24 h.
Results:
MgSO4, followed by CTAD, was the most efficient to avoid platelet clump formation, while sodium citrate performed poorly. Regarding platelet count, significantly lower values were obtained with sodium citrate (p < 0.0001), with more samples (35% vs. 6.5%) below the 150 × 109/L threshold. Conversely, CTAD yielded similar values as EDTA, while higher counts were observed with MgSO4 (p = 0.008). Finally, platelet count stability began to decrease at 4 h for sodium citrate, while the other anticoagulants were stable for at least 8 h, up to 12 h for MgSO4 and 24 h for EDTA.
Conclusions:
This real-life study confirms that sodium citrate should no longer be used to improve platelet counts in patients with platelet clumps, CTAD, if available, and MgSO4 being much better alternatives.
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