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Updated: Apr 3, 2026

Hemocompatibility Testing of Blood-Contacting Implants in a Flow Loop Model Mimicking Human Blood Flow
Published on: March 5, 2020
The Quest for Nonthrombotic Surface Modifications to Achieve Hemocompatibility of Implantable Devices
Lise Nadine Tchouta1, Pramod Narayan Bonde
1From the Section of Cardiac Surgery, Center for Advanced Heart Failure and Transplantation, Yale University School of Medicine, New Haven, Connecticut.
Abstract:
The use of blood-contacting implantable devices is limited by surface-induced thrombosis, which has led to the development of thromboresistant surfaces. Multidisciplinary efforts have promoted the development of surface modifications to minimize thrombosis by targeting surface-induced coagulation. To this date, no material has been identified that remains irrevocably hemocompatible with time but many options are now available with their own limitations. Essential to this review is the understanding of some of the challenges in this field and newer opportunities for hemocompatibility research. This report will also briefly review many of the achievements in the development of hemocompatible biomaterial coating, including surface modifications against protein adsorption and platelet adhesion, biomimetism, and endothelialization.

