MPs-ACT, an Assay to Evaluate the Procoagulant Activity of Microparticles

Author:

Gao Yalong1,Li Xiaotian1,Qin Yafei2,Men Jianlong3,Ren Jing3,Li Xiaochun1,Xu Chunlei1,Li Qifeng1,Li Ying1,Cui Weiyun1,Zhang Shu1,Li Lei1,Li Yaohua1,Zhang Jianning1,Liu Li1ORCID

Affiliation:

1. Key Laboratory of Post-Neurotrauma Neurorepair and Regeneration in Central Nervous System, Ministry of Education and Tianjin Neurological Institute, Tianjin Medical University General Hospital, Tianjin, China

2. Department of General Surgery, Tianjin Medical University General Hospital, Tianjin, China

3. Precision Medicine Center, Tianjin Medical University General Hospital, Tianjin, China

Abstract

The procoagulant effect of microparticles (MPs) contributes to hypercoagulability-induced thrombosis. We provide preliminary findings of the MPs-Activated Clotting Time (MPs-ACT) assay to determine the procoagulant activity of MPs. MPs-rich plasma was obtained and recalcified. Changes in plasma viscoelasticity were evaluated and the time to the peak viscoelastic changes was defined as the MPs-ACT. MPs concentration was measured by flow cytometry. Coagulation products produced during plasma clotting were identified by fibrin and fibrinopeptide A. MPs were prepared in vitro and added to standard plasma to simulate pathological samples. In addition, reproducibility and sensitivity were evaluated. We confirmed the linear relationship between MPs-ACT and MP concentrations. Dynamic changes in fibrin production were depicted. We simulated the correlation between MPs-ACT and standard plasma containing MPs prepared in vitro. The reproducibility of high-value and low-value samples was 6.0% and 10.8%, respectively. MPs-ACT sensitively detected hypercoagulable samples from patients with pre-eclampsia, hip fractures, and lung tumors. MPs-ACT largely reflects the procoagulant effect of MPs. MPs-ACT sensitively and rapidly detects hypercoagulability with MPs-rich plasma. It may be promising for the diagnosis of hypercoagulable states induced by MPs.

Funder

National Natural Science Foundation of China

Publisher

SAGE Publications

Subject

Hematology,General Medicine

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