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Updated: Jul 2, 2026

Turbidimetry on Human Washed Platelets: The Effect of the Pannexin1-inhibitor Brilliant Blue FCF on Collagen-induced Aggregation
Published on: April 6, 2017
Platelet microparticle-associated protein disulfide isomerase promotes platelet aggregation and inactivates insulin
Arun Raturi1, Shane Miersch, John W Hudson
1Department of Immunology and Microbial Science, The Scripps Research Institute, La Jolla, California 92037, USA.
Abstract:
Platelet-derived microparticles (pMP) have been shown to be pro-aggregatory and retain most of their platelet membrane markers. Recent studies have correlated elevated pMP levels with pathogenesis of diabetes mellitus and cardiovascular disease. The pro-aggregatory effect of pMP has been largely attributed to their negatively charged outer surface and activation of factor X by membrane associated Tissue factor (TF). Here we sought to investigate whether, like platelets, protein disulfide isomerase (PDI) is present on the surface of pMP and, if so, to analyze its contribution to platelet hyperaggregability and insulin degradation. Using a fluorescent assay based upon a novel pseudo-substrate of PDI, flow cytometry and immunological techniques, we have demonstrated the presence of PDI on the surface of pMP (termed msPDI) and its ability to influence insulin-mediated Akt phosphorylation (Thr308) in 3T3-L1 fibroblasts. Moreover, pMP are shown to contain catalytically active PDI, capable of both promoting platelet aggregation and disrupting insulin signaling. pMP increased initial rates of aggregation by 4-fold and the pro-aggregatory activity of pMPs could be attenuated with an anti-PDI antibody. The pMP insulin-reductase activity was further attributed to PDI based on the ability of anti-PDI antibodies to block the degradation of insulin, thereby restoring insulin signaling. Plasma pMP counts were also obtained from diabetic (n=10) and non-diabetic individuals (n=10) and found to be elevated in the diabetic state. Detection of increased levels of PDI-containing microparticles in patients with T2D raises the possibility that platelet hypersensitivity and insulin desensitization observed in diabetes can partially be attributed to msPDI activity.
Insights
Platelet-derived microparticles (pMP) contain surface protein disulfide isomerase (PDI) that promotes platelet aggregation and insulin degradation. Elevated pMP levels were found in diabetics, suggesting a role in diabetes complications.
Area of Science:
- Biochemistry
- Hematology
- Endocrinology
Background:
- Platelet-derived microparticles (pMP) are linked to diabetes and cardiovascular disease.
- pMP's pro-aggregatory effects are attributed to their surface charge and Tissue Factor (TF).
- The role of surface-bound protein disulfide isomerase (PDI) on pMP is not well understood.
Purpose of the Study:
- To investigate the presence and function of PDI on the surface of pMP (msPDI).
- To determine msPDI's contribution to platelet hyperaggregability and insulin degradation.
- To assess the correlation between plasma pMP levels, msPDI, and type 2 diabetes (T2D).
Main Methods:
- Utilized a novel fluorescent assay for PDI activity.
- Employed flow cytometry and immunological techniques to detect msPDI.
- Measured platelet aggregation rates and insulin signaling in 3T3-L1 fibroblasts.
- Quantified plasma pMP counts in diabetic and non-diabetic individuals.
Main Results:
- Demonstrated the presence of catalytically active PDI on the surface of pMP (msPDI).
- Showed that msPDI significantly promotes platelet aggregation (4-fold increase) and insulin degradation.
- Confirmed that anti-PDI antibodies attenuate pMP's pro-aggregatory and insulin-degrading activities.
- Found elevated plasma pMP counts in individuals with T2D compared to non-diabetics.
Conclusions:
- Surface PDI on microparticles (msPDI) is a key mediator of platelet hyperaggregability and insulin resistance.
- Elevated msPDI levels in T2D patients suggest its contribution to diabetes pathogenesis.
- msPDI activity may explain platelet hypersensitivity and insulin desensitization in diabetes.
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