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基于负载四环素的聚(3,4-亚乙基二氧噻吩)基质的电响应抗菌涂层。

Electrically-responsive antimicrobial coatings based on a tetracycline-loaded poly(3,4-ethylenedioxythiophene) matrix.

作者信息

Czerwińska-Główka Dominika, Przystaś Wioletta, Zabłocka-Godlewska Ewa, Student Sebastian, Cwalina Beata, Łapkowski Mieczysław, Krukiewicz Katarzyna

机构信息

Department of Physical Chemistry and Technology of Polymers, Silesian University of Technology, Gliwice, Poland.

Department of Environmental Biotechnology, Faculty of Energy and Environmental Engineering, Silesian University of Technology, Gliwice, Poland; Biotechnology Centre, Silesian University of Technology, Krzywoustego 8, 44-100 Gliwice, Poland.

出版信息

Mater Sci Eng C Mater Biol Appl. 2021 Apr;123:112017. doi: 10.1016/j.msec.2021.112017. Epub 2021 Mar 9.

Abstract

The growth of bacteria and the formation of complex bacterial structures on biomedical devices is a major challenge in modern medicine. The aim of this study was to develop a biocompatible, conducting and antibacterial polymer coating applicable in biomedical engineering. Since conjugated polymers have recently aroused strong interest as controlled delivery systems for biologically active compounds, we decided to employ a poly(3,4-ethylenedioxythiophene) (PEDOT) matrix to immobilize a powerful, first-line antibiotic: tetracycline (Tc). Drug immobilization was carried out simultaneously with the electrochemical polymerization process, allowing to obtain a polymer coating with good electrochemical behaviour (charge storage capacity of 19.15 ± 6.09 mC/cm) and high drug loading capacity (194.7 ± 56.2 μg/cm). Biological activity of PEDOT/Tc matrix was compared with PEDOT matrix and a bare Pt surface against a model Gram-negative bacteria strain of Escherichia coli with the use of LIVE/DEAD assay and SEM microscopy. Finally, PEDOT/Tc was shown to serve as a robust electroactive coating exhibiting antibacterial activity.

摘要

细菌在生物医学设备上的生长以及复杂细菌结构的形成是现代医学面临的一项重大挑战。本研究的目的是开发一种适用于生物医学工程的生物相容性、导电且抗菌的聚合物涂层。由于共轭聚合物最近作为生物活性化合物的控释系统引起了强烈关注,我们决定采用聚(3,4 - 乙撑二氧噻吩)(PEDOT)基质来固定一种强效的一线抗生素:四环素(Tc)。药物固定与电化学聚合过程同时进行,从而获得具有良好电化学行为(电荷存储容量为19.15±6.09 mC/cm)和高药物负载量(194.7±56.2μg/cm)的聚合物涂层。使用活/死检测法和扫描电子显微镜,将PEDOT/Tc基质的生物活性与PEDOT基质以及裸露的铂表面针对大肠杆菌模型革兰氏阴性菌菌株进行了比较。最后,PEDOT/Tc被证明可作为一种具有抗菌活性的坚固电活性涂层。

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