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Review

Insulin Resistance and Platelet Hyperactivity: Hematological Insights and Nutritional Strategies for Vascular Protection

1
Division of Hematology and Blood Banking, Department of Medical Laboratory Sciences, School of Paramedical Sciences, Shiraz University of Medical Sciences, Shiraz 71348, Iran
2
MSc in Hematology, Department of Hematology and Blood Transfusion, School of Paramedical Sciences, Bushehr University of Medical Sciences (BPUMS), Bushehr 7518759577, Iran
3
VAS-European Independent Foundation in Angiology/Vascular Medicine, Via GB Grassi 74, 20157 Milan, Italy
4
Support Association of Patients of Buerger’s Disease, Buerger’s Disease NGO, Mashhad 9183785195, Iran
5
Department of Internal Medicine, Metabolic Diseases and Angiology, Faculty of Health Sciences in Katowice, Medical University of Silesia, Ziołowa 45/47, 40-635 Katowice, Poland
*
Author to whom correspondence should be addressed.
Nutrients 2026, 18(5), 763; https://doi.org/10.3390/nu18050763
Submission received: 5 January 2026 / Revised: 12 February 2026 / Accepted: 24 February 2026 / Published: 26 February 2026

Abstract

Insulin resistance (IR) promotes a prothrombotic milieu by enhancing platelet hyperactivity, oxidative stress, and endothelial dysfunction, driving both microvascular and macrovascular complications in type 2 diabetes. Our review synthesizes mechanistic evidence showing that insulin-resistant platelets exhibit increased basal activation, elevated sensitivity to agonists, and reduced responsiveness to inhibitory signals, with distinct pro-aggregatory subpopulations amplifying thrombotic risk. Molecular pathways underlying platelet hyperactivation include reactive oxygen species accumulation, advanced glycation end-product signaling, disrupted calcium homeostasis, and impaired nitric oxide/prostacyclin pathways. Clinically, these mechanisms contribute to heightened arterial thrombosis, coronary artery disease, stroke, and microvascular injury, including nephropathy and retinopathy. Nutritional interventions emerge as effective modulators of platelet function and vascular health. Diets such as the Mediterranean, DASH, low-glycemic-index, and plant-based regimens, alongside bioactive compounds—including omega-3 fatty acids, polyphenols, vitamins D, E, C, and minerals like magnesium and zinc—may reduce platelet aggregation, oxidative stress, and systemic inflammation while restoring endothelial function. Clinical and epidemiological evidence demonstrates improvements in flow-mediated dilation, arterial elasticity, and stabilization of atherosclerotic plaques following dietary interventions. Integrating whole-diet strategies with targeted nutrients provides synergistic benefits, suggesting that personalized nutritional approaches can mitigate IR-induced platelet hyperactivity and lower vascular risk. These findings highlight nutrition as a practical, evidence-based adjunct to pharmacotherapy for cardiovascular protection in insulin-resistant populations.
Keywords: insulin resistance; platelet hyperactivity; nutritional strategies; thrombotic risk insulin resistance; platelet hyperactivity; nutritional strategies; thrombotic risk

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MDPI and ACS Style

Mohammadian, K.; Basirian, N.; Fakhar, F.; Keramat, S.; Stanek, A. Insulin Resistance and Platelet Hyperactivity: Hematological Insights and Nutritional Strategies for Vascular Protection. Nutrients 2026, 18, 763. https://doi.org/10.3390/nu18050763

AMA Style

Mohammadian K, Basirian N, Fakhar F, Keramat S, Stanek A. Insulin Resistance and Platelet Hyperactivity: Hematological Insights and Nutritional Strategies for Vascular Protection. Nutrients. 2026; 18(5):763. https://doi.org/10.3390/nu18050763

Chicago/Turabian Style

Mohammadian, Kiana, Narges Basirian, Fatemeh Fakhar, Shayan Keramat, and Agata Stanek. 2026. "Insulin Resistance and Platelet Hyperactivity: Hematological Insights and Nutritional Strategies for Vascular Protection" Nutrients 18, no. 5: 763. https://doi.org/10.3390/nu18050763

APA Style

Mohammadian, K., Basirian, N., Fakhar, F., Keramat, S., & Stanek, A. (2026). Insulin Resistance and Platelet Hyperactivity: Hematological Insights and Nutritional Strategies for Vascular Protection. Nutrients, 18(5), 763. https://doi.org/10.3390/nu18050763

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