The contact of any biomaterial with blood gives rise to multiple pathophysiologic defensive mechanisms such as; activation of the coagulation cascade, platelet adhesion and activation of the complement system and leukocytes. The reduction of these events is of crucial importance for the successful clinical performance of a cardiovascular device. This can be achieved by improving the hemocompatibility of the device materials or by pharmacologic inhibition of the key enzymes responsible for the activation of the cascade reactions, or a combination of both. Different strategies have been developed during the last 20 years, and this article is an attempt to review the most significant, by dividing them into three main categories: bioinert or biopassive, biomimetic and bioactive strategies. With regard to bioactive strategies, particular attention is given to heparin immobilization and recent related technologies. References from both scientific literature and commercial sites are provided. Future development and studies are suggested.

Bioactive Technologies For Hemocompatibility

TANZI, MARIA CRISTINA
2005-01-01

Abstract

The contact of any biomaterial with blood gives rise to multiple pathophysiologic defensive mechanisms such as; activation of the coagulation cascade, platelet adhesion and activation of the complement system and leukocytes. The reduction of these events is of crucial importance for the successful clinical performance of a cardiovascular device. This can be achieved by improving the hemocompatibility of the device materials or by pharmacologic inhibition of the key enzymes responsible for the activation of the cascade reactions, or a combination of both. Different strategies have been developed during the last 20 years, and this article is an attempt to review the most significant, by dividing them into three main categories: bioinert or biopassive, biomimetic and bioactive strategies. With regard to bioactive strategies, particular attention is given to heparin immobilization and recent related technologies. References from both scientific literature and commercial sites are provided. Future development and studies are suggested.
2005
bioactive; biomembrane mimicry; biomimetic; biopassive; glycomimesis; hemocompatibility materials; heparin immobilization; polyethylene oxide; surface-immobilizing agents; surface modification
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11311/513325
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