Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/92871
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Title: A facile metal–phenolic–amine strategy for dual-functionalization of blood-contacting devices with antibacterial and anticoagulant properties
Authors: Tu, Q
Shen, X
Liu, Y
Zhang, Q 
Zhao, X 
Maitz, MF
Liu, T
Qiu, H
Wang, J
Huang, N
Yang, Z
Issue Date: 1-Feb-2019
Source: Materials chemistry frontiers, 1 Feb. 2019, v. 3, no. 2, p. 265-275
Abstract: Thrombosis and infections of extracorporeal circuits and indwelling medical devices are the two major life-threatening complications faced in clinical practice. Herein, we report a novel and facile metal-phenolic-amine surface modification strategy to engineer a multifunctional coating on these devices to combat thrombosis and infection. This strategy is inspired by the metal-catecholamine coordination complex of [Fe(dopa)3] in mussels, in which Cu(ii) ions (metal), plant polyphenol gallic acid (phenol) and cystamine (amine) are employed to fabricate a copper-phenolic-amine network. Our in vitro and in vivo experiments reveal that the resultant Cu(ii)-chelating coatings endow the modified tubing with not only durable antibacterial properties, but also capability to persistently generate anticoagulant therapeutic nitric oxide (NO) gas in the presence of endogenous S-nitrosothiols (RSNO) from fresh blood. We anticipate that our simple and multifunctional coating strategy will be a milestone in the development of surface engineering, especially that of biomedical devices.
Publisher: Chinese Ceramic Society
Journal: Materials chemistry frontiers 
EISSN: 2052-1537
DOI: 10.1039/c8qm00458g
Rights: This journal is © The Royal Society of Chemistry and the Chinese Chemical Society 2019
The following publication Tu, Q., Shen, X., Liu, Y., Zhang, Q., Zhao, X., Maitz, M. F., ... & Yang, Z. (2019). A facile metal–phenolic–amine strategy for dual-functionalization of blood-contacting devices with antibacterial and anticoagulant properties. Materials Chemistry Frontiers, 3(2), 265-275 is available at https://doi.org/10.1039/c8qm00458g
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