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April 24, 20260 citationsOpen Access

Cilostazol as a repurposed therapeutic agent in sickle cell disease

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AKAli Al Khatib

Key Result

Cilostazol may serve as a repurposed therapy for sickle cell disease by simultaneously addressing microvascular dysfunction, platelet hyperactivation, and impaired perfusion.

Key Points

  • The aim is to evaluate cilostazol's potential as a treatment for multiple aspects of sickle cell disease.
  • Review of current mechanistic knowledge regarding cilostazol and its effects on sickle cell disease.
  • Analysis of cilostazol's impact on inflammation, microvascular dysfunction, and blood rheology.
  • Cilostazol improves endothelial function and reduces platelet aggregation.
  • Mechanistic evidence indicates cilostazol may help address vaso-occlusion and organ damage in sickle cell disease.
  • Cilostazol has the potential to enhance blood flow and alleviate symptoms in patients.

Structured PICO

Does cilostazol improve outcomes in patients with sickle cell disease?

P
Population
Patients with sickle cell disease
I
Intervention
Cilostazol

Cilostazol presents biological plausibility as a repurposed therapeutic agent to address multiple pathological components of sickle cell disease.

Abstract

ABSTRACT Sickle cell disease is a multisystem hemoglobinopathycharacterized by vaso-occlusion , chronic hemolysis ,endothelial dysfunction ,inflammation , and progressive organ damage. Despite advances in disease modifying therapies such as hydroxyurea and monoclonal antibodies targeting adhesion pathways , many patients continue to experience recurrent vaso-occlusive crises. Cilostazol, a phosphodiesterase-3 inhibitor , increase intracellular cyclic adenosine monophosphate resulting in vasodilation, inhibition of platelet aggregation , improvement of endothelial function , and modulation of blood rheology . emerging mechanistic evidence suggests that cilostazol ma address multiple pathological components of sickle cell disease simultaneously, particulary microvascular dysfunction , platelet hyperactivation, and impaired perfusion . The review synthesizes current mechanistic knowledge and proposes cilostazol as a potential repurposed therapeutic agent in sickle cell disease , highlighting biological plausibility and future research directions

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Cite This Study

Ali Al Khatib (2026) studied this question. Cilostazol may serve as a repurposed therapy for sickle cell disease by simultaneously addressing microvascular dysfunction, platelet hyperactivation, and impaired perfusion.

synapsesocial.com/papers/69eb0b8d553a5433e34b540dhttps://doi.org/10.5281/zenodo.19701400
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Update on Cilostazol: A Critical Review of Its Antithrombotic and Cardiovascular Actions and Its Clinical Applications2021 · 28 citations
  2. 2The Role of Cilostazol, a Phosphodiesterase-3 Inhibitor, in the Development of Atherosclerosis and Vascular Biology: A Review with Meta-Analysis2024 · 32 citations
  3. 3Progress in the Mechanism and Clinical Application of Cilostazol2019 · 22 citations
  4. 4Cilostazol Effects after Lower Extremity Revascularization. Historical Background and Review of the Literature2023
  5. 5A Critical Review of the Molecular and Clinical Effects of Cilostazol After Percutaneous Coronary Intervention2026