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Updated: Sep 11, 2025

High-throughput Identification of Bacteria Repellent Polymers for Medical Devices
Published on: November 5, 2016
Dual-Functional Antimicrobial and Anticoagulant Coatings: Synergistic Mechanisms, Research Advances, and
Yuqi Zhou1, Yuruo Zhang1, Quanjie Lv1
1State Key Lab of Metal Matrix Composites, School of Materials Science and Engineering, Shanghai Jiao Tong University, Shanghai, 200240, China.
Abstract:
The adhesion of biological components such as bacteria, proteins, and platelets on material surfaces triggers biofilm formation and thrombus generation, which leads to severe infections and embolism risks in blood-contacting medical devices. Conventional blood-contacting coatings predominantly focus on singular antibacterial or anticoagulant functions, while clinical demands urgently require surfaces with synergistic "antibacterial-anticoagulant" efficacy to address complex biofouling challenges. Recent advancements in dual-functional antibacterial-anticoagulant coatings have achieved notable progress. This review summarizes four representative categories: (1) antimicrobial-dominant antifouling coatings, which combine active bactericidal mechanisms to inhibit biofilm formation with passive antifouling strategies to suppress thrombogenesis; (2) anticoagulant-loaded bifunctional coatings, merging sustained-release anticoagulant agents with antibacterial active components or antifouling layers to achieve dual active defense; (3) physically biomimetic bifunctional coatings, leveraging micro/nanotopological architectures and surface chemical mimicry to disrupt bacterial adhesion and platelet activation simultaneously; and (4) environment-responsive smart coatings, enabling stimuli-responsive dynamic switching of antibacterial functions to adapt to in vivo microenvironmental changes. This review discusses the design principles and operational mechanisms of coatings while highlighting persistent challenges. Future research should focus on precisely functionalizing interfaces, enhancing synergistic properties, and optimizing dynamic adaptability to promote their practical applications.
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