Bio-inspired hemocompatible surface modifications for biomedical applications

抗血栓 血栓 肝素 重症监护医学 生物医学工程 抗凝剂 临床实习 医学 纳米技术 材料科学 外科 内科学 家庭医学
作者
Megan Douglass,Mark Garren,Ryan Devine,Arnab Mondal,Hitesh Handa
出处
期刊:Progress in Materials Science [Elsevier BV]
卷期号:130: 100997-100997 被引量:49
标识
DOI:10.1016/j.pmatsci.2022.100997
摘要

When blood first encounters the artificial surface of a medical device, a complex series of biochemical reactions is triggered, potentially resulting in clinical complications such as embolism/occlusion, inflammation, or device failure. Preventing thrombus formation on the surface of blood-contacting devices is crucial for maintaining device functionality and patient safety. As the number of patients reliant on blood-contacting devices continues to grow, minimizing the risk associated with these devices is vital towards lowering healthcare-associated morbidity and mortality. The current standard clinical practice primarily requires the systemic administration of anticoagulants such as heparin, which can result in serious complications such as post-operative bleeding and heparin-induced thrombocytopenia (HIT). Due to these complications, the administration of antithrombotic agents remains one of the leading causes of clinical drug-related deaths. To reduce the side effects spurred by systemic anticoagulation, researchers have been inspired by the hemocompatibility exhibited by natural phenomena, and thus have begun developing medical-grade surfaces which aim to exhibit total hemocompatibility via biomimicry. This review paper aims to address different bio-inspired surface modifications that increase hemocompatibility, discuss the limitations of each method, and explore the future direction for hemocompatible surface research.
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