Effects of simulated COVID-19 cytokine storm on stent thrombogenicity.

Título

Effects of simulated COVID-19 cytokine storm on stent thrombogenicity.

Autor

Anne Cornelissen, Matthew Kutyna, Qi Cheng, Yu Sato, Rika Kawakami, Atsushi Sakamoto, Kenji Kawai, Masayuki Mori, Raquel Fernandez, Liang Guo, Dario Pellegrini, Giulio Guagliumi, Mark Barakat, Renu Virmani, Aloke Finn

Descripción

Cytokine storm-related hypercoagulation may be important in the pathogenesis of stent thrombosis in patients with SARS-CoV-2. Whether stent polymers behave differently under such conditions has never been explored. Fluorinated polymer-nanocoated and uncoated COBRA stents (CeloNova), BioLinx-polymer-coated Resolute Onyx stents (Medtronic), and Synergy stents (Boston Scientific), which are abluminally coated with a bioabsorbable polymer, were exposed to human blood from healthy donors which was supplemented with 400 pg/mL IL-6 and 100 pg/mL TNF-α, similar to what is seen in cytokine storm caused by SARS-CoV-2. Platelet adhesion and neutrophil activation, assessed by immunofluorescence, were compared under cytokine storm and control conditions (untreated blood) (n = 4 experimental runs). Platelet adhesion values, defined as %platelet-covered area x staining intensity, were significantly lower in coated and uncoated COBRA and in Resolute Onyx than in Synergy under control conditions (1.28 × 107 ± 0.43 × 107 vs. 2.92 × 107 ± 0.49 × 107 vs. 3.57 × 107 ± 0.73 × 107 vs. 9.94 × 107 ± 0.99 × 107; p ≤0.0001). In cytokine storm, platelet adhesion values remained low in coated COBRA-PzF (1.78 × 107 ± 0.38 × 107) compared to all other devices (uncoated COBRA: 5.92 × 107 ± 0.96 × 107; Resolute Onyx: 7.27 × 107 ± 1.82 × 107; Synergy: 11.28 × 107 ± 1.08 × 107; p ≤ 0.0001). Although cytokine storm conditions significantly increased neutrophil activation in all stents, it was significantly less in coated and uncoated COBRA, and in Resolute Onyx than in Synergy. Blood-biomaterials interactions may determine the thrombogenic potential of stents. Under simulated cytokine storm conditions, fluoropolymer-coated stents showed the most favorable anti-thrombogenic and anti-inflammatory properties.

Fecha

2021

Materia

neutrophils, covid-19, cytokine storm, platelets, myocardial infarction, Stent thrombosis

Identificador

10.1016/j.carrev.2021.03.023

Fuente

Cardiovascular revascularization medicine : including molecular interventions

Archivos

https://socictopen.socict.org/files/to_import/pdfs/23f2955cda099734e1319c06fdaf0e00.pdf

Colección

Citación

Anne Cornelissen, Matthew Kutyna, Qi Cheng, Yu Sato, Rika Kawakami, Atsushi Sakamoto, Kenji Kawai, Masayuki Mori, Raquel Fernandez, Liang Guo, Dario Pellegrini, Giulio Guagliumi, Mark Barakat, Renu Virmani, Aloke Finn, “Effects of simulated COVID-19 cytokine storm on stent thrombogenicity.,” SOCICT Open, consulta 22 de abril de 2026, https://socictopen.socict.org/items/show/5775.

Formatos de Salida

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