Platelet Adhesion and Activation in an ECMO Thrombosis‐on‐a‐Chip Model

Abstract: Use of extracorporeal membrane oxygenation (ECMO) for cardiorespiratory failure remains complicated by blood clot formation (thrombosis), triggered by biomaterial surfaces and flow conditions. Thrombosis may result in ECMO circuit changes, cause red blood cell hemolysis, and thromboembolic events. Medical device thrombosis is potentiated by the interplay between biomaterial properties, hemodynamic flow conditions and patient pathology, however, the contribution and importance of these factors are poorly understood because many in vitro models lack the capability to customize material and flow conditions to investigate thrombosis under clinically relevant medical device conditions. Therefore, an ECMO thrombosis‐on‐a‐chip model is developed that enables highly customizable biomaterial and flow combinations to evaluate ECMO thrombosis in real‐time with low blood volume. It is observed that low flow rates, decelerating conditions, and flow stasis significantly increased platelet adhesion, correlating with clinical thrombus formation. For the first time, it is found that tubing material, polyvinyl chloride, caused increased platelet P‐selectin activation compared to connector material, polycarbonate. This ECMO thrombosis‐on‐a‐chip model can be used to guide ECMO operation, inform medical device design, investigate embolism, occlusion and platelet activation mechanisms, and develop anti‐thrombotic biomaterials to ultimately reduce medical device thrombosis, anti‐thrombotic drug use and therefore bleeding complications, leading to safer blood‐contacting medical devices.

Location
Deutsche Nationalbibliothek Frankfurt am Main
Extent
Online-Ressource
Language
Englisch

Bibliographic citation
Platelet Adhesion and Activation in an ECMO Thrombosis‐on‐a‐Chip Model ; day:17 ; month:05 ; year:2024 ; extent:16
Advanced science ; (17.05.2024) (gesamt 16)

Creator
Goh, Tiffany
Gao, Lingzi
Singh, Jasneil
Totaro, Richard
Carey, Ruaidhri
Yang, Kevin
Cartwright, Bruce
Dennis, Mark
Ju, Lining Arnold
Waterhouse, Anna

DOI
10.1002/advs.202401524
URN
urn:nbn:de:101:1-2405171441377.421955262331
Rights
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Last update
14.08.2025, 10:53 AM CEST

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Associated

  • Goh, Tiffany
  • Gao, Lingzi
  • Singh, Jasneil
  • Totaro, Richard
  • Carey, Ruaidhri
  • Yang, Kevin
  • Cartwright, Bruce
  • Dennis, Mark
  • Ju, Lining Arnold
  • Waterhouse, Anna

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