Chapter 7. Photodynamic Antimicrobial Polymers

C. McCoy, Jessica M. Moore, M. Wylie
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Abstract

Photodynamic antimicrobial polymers are materials that exert an antimicrobial effect when irradiated with a specific light source. This light-triggered activity is considered advantageous, as it allows fine control of the antimicrobial effect, minimising the possible adverse effects and propagation of antimicrobial resistance commonly associated with overexposure to antimicrobial agents. Extensive research has been conducted on incorporation of photosensitisers into or onto polymeric supports to produce potent photodynamic antimicrobial materials. Photosensitisers are agents that generate cytotoxic reactive oxygen species (ROS) when illuminated with visible light in the presence of oxygen. The ability of these generated ROS to eradicate a wide range of microorganisms has led to the incorporation of photosensitisers into a range of polymers, with a vast array of potential applications explored. This chapter focuses on photosensitiser-incorporated polymers, with consideration of the factors that can be altered to optimise antimicrobial activity. This is followed by a detailed discussion on current research and the development of these unique materials for the production of light-activated antimicrobial biomedical devices or for anti-infective surfaces in clinical settings.
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第七章。光动力抗菌聚合物
光动力抗菌聚合物是当用特定光源照射时发挥抗菌作用的材料。这种光触发活性被认为是有利的,因为它允许对抗菌效果进行精细控制,最大限度地减少可能的不利影响和通常与过度暴露于抗菌药物相关的抗菌药物耐药性的传播。广泛的研究已经进行了光敏剂纳入或聚合载体,以产生有效的光动力抗菌材料。光敏剂是在氧气存在下用可见光照射时产生细胞毒性活性氧(ROS)的药剂。这些生成的活性氧能够消灭多种微生物,这使得光敏剂被应用于一系列聚合物中,具有广泛的潜在应用前景。本章的重点是光敏剂掺入的聚合物,考虑到可以改变的因素,以优化抗菌活性。随后详细讨论了目前的研究和这些独特材料的开发,用于生产光活化的抗菌生物医学设备或临床环境中的抗感染表面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Chapter 14. Catheters with Antimicrobial Surfaces Chapter 10. Antimicrobial Quaternary Ammonium Polymers for Biomedical Applications Chapter 6. Focal Drug Delivery for Management of Oral Infections Chapter 3. Controlled Release of Antimicrobial Small Molecules Chapter 8. Antimicrobial Biomaterials in Ophthalmology
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