Publication: Coagulation at the blood-electrode interface: the role of electrochemical desorption and degradation of fibrinogen
Coagulation at the blood-electrode interface: the role of electrochemical desorption and degradation of fibrinogen
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Simona, B. R., Brunisholz, R. A., Morhard, R., Hunziker, P., & Vörös, J. (2014). Coagulation at the blood-electrode interface: the role of electrochemical desorption and degradation of fibrinogen. Langmuir, 30(24), 7227–7234. https://doi.org/10.1021/la500634y
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The influence of electrochemistry on the coagulation of blood on metal surfaces was demonstrated several decades ago. In particular, the application of cathodic currents resulted in reduced surface thrombogenicity, but no molecular mechanism has been so far proposed to explain this observation. In this article we used for the first time the quartz crystal microbalance with dissipation monitoring technique coupled with an electrochemical setup (EQCM-D) to study thrombosis at the blood-electrode interface. We confirmed the reduced throm
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Simona, B. R., Brunisholz, R. A., Morhard, R., Hunziker, P., & Vörös, J. (2014). Coagulation at the blood-electrode interface: the role of electrochemical desorption and degradation of fibrinogen. Langmuir, 30(24), 7227–7234. https://doi.org/10.1021/la500634y