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Updated: Nov 10, 2025

Preparation of Washed Human Platelets for Quantitative Metabolic Flux Studies
Published on: January 10, 2025
PAR-4/Ca2+-calpain pathway activation stimulates platelet-derived microparticles in hyperglycemic type 2 diabetes
Alessandra Giannella1, Giulio Ceolotto1, Claudia Maria Radu1
1Metabolic Disease Unit, Department of Medicine-DIMED, Via Giustiniani, 2, 35128, Padova, Italy.
Background:
Patients with type 2 diabetes (T2DM) have a prothrombotic state that needs to be fully clarified; microparticles (MPs) have emerged as mediators and markers of this condition. Thus, we investigate, in vivo, in T2DM either with good (HbA1c ≤ 7.0%; GGC) or poor (HbA1c > 7.0%; PGC) glycemic control, the circulating levels of MPs, and in vitro, the molecular pathways involved in the release of MPs from platelets (PMP) and tested their pro-inflammatory effects on THP-1 transformed macrophages.
Methods:
In 59 T2DM, and 23 control subjects with normal glucose tolerance (NGT), circulating levels of CD62E+, CD62P+, CD142+, CD45+ MPs were determined by flow cytometry, while plasma levels of ICAM-1, VCAM-1, IL-6 by ELISA. In vitro, PMP release and activation of isolated platelets from GGC and PGC were investigated, along with their effect on IL-6 secretion in THP-1 transformed macrophages.
Results:
We found that MPs CD62P+ (PMP) and CD142+ (tissue factor-bearing MP) were significantly higher in PGC T2DM than GGC T2DM and NGT. Among MPs, PMP were also correlated with HbA1c and IL-6. In vitro, we showed that acute thrombin exposure stimulated a significantly higher PMP release in PGC T2DM than GGC T2DM through a more robust activation of PAR-4 receptor than PAR-1 receptor. Treatment with PAR-4 agonist induced an increased release of PMP in PGC with a Ca2+-calpain dependent mechanism since this effect was blunted by calpain inhibitor. Finally, the uptake of PMP derived from PAR-4 treated PGC platelets into THP-1 transformed macrophages promoted a marked increase of IL-6 release compared to PMP derived from GGC through the activation of the NF-kB pathway.
Conclusions:
These results identify PAR-4 as a mediator of platelet activation, microparticle release, and inflammation, in poorly controlled T2DM.
Insights
Poorly controlled type 2 diabetes (T2DM) increases platelet microparticles (PMP) via PAR-4 activation, leading to inflammation. This highlights PAR-4 as a key target for managing T2DM complications.
Area of Science:
- Cardiovascular Research
- Diabetes Mellitus Research
- Hematology
Background:
- Type 2 diabetes (T2DM) is associated with a prothrombotic state.
- Microparticles (MPs), particularly platelet-derived MPs (PMP), are implicated as mediators and markers in T2DM complications.
- Understanding the mechanisms of MP release and their inflammatory effects is crucial for managing T2DM.
Purpose of the Study:
- To investigate circulating MP levels in T2DM patients with good (GGC) versus poor (PGC) glycemic control.
- To elucidate the in vitro molecular pathways of PMP release from platelets in T2DM.
- To assess the pro-inflammatory effects of PMP on macrophages.
Main Methods:
- Flow cytometry and ELISA were used to quantify circulating MPs (CD62E+, CD62P+, CD142+, CD45+), ICAM-1, VCAM-1, and IL-6 in T2DM patients and controls.
- In vitro studies examined PMP release and platelet activation from GGC and PGC subjects.
- Pro-inflammatory effects of PMP on THP-1 macrophages were evaluated.
Main Results:
- Significantly higher levels of CD62P+ (PMP) and CD142+ MPs were observed in PGC T2DM patients compared to GGC T2DM and normal glucose tolerance (NGT) groups.
- PMP levels correlated with HbA1c and IL-6.
- In vitro, thrombin-induced PMP release was higher in PGC T2DM, mediated by PAR-4 activation via a Ca2+-calpain-dependent pathway.
- Uptake of PMP from PGC platelets into macrophages increased IL-6 release through NF-kB pathway activation.
Conclusions:
- Poor glycemic control in T2DM elevates PMP levels.
- PAR-4 receptor activation is a key mechanism driving PMP release and subsequent inflammation in poorly controlled T2DM.
- PAR-4 represents a potential therapeutic target for mitigating inflammation and thrombotic risks in T2DM.
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