Division of Pharmacy and Optometry, School of Health Sciences, Faculty of Biology, Medicine, and Health, The University of Manchester, Manchester, M13 9PT, UK.
Laboratory of Polymers and Biomaterials, Fondazione Istituto Italiano di Tecnologia, 16163, Genova, Italy.
Macromol Rapid Commun. 2019 Jan;40(1):e1800699. doi: 10.1002/marc.201800699. Epub 2018 Nov 26.
In this review, a general introduction to biological oxidants (focusing on reactive oxygen species, ROS) and the biomedical rationale behind the development of materials capable of responding to ROS is provided. The state of the art for preparative aspects and mechanistic responses of the most commonly used macromolecular ROS-responsive systems, including polysulfides, polyselenides, polythioketals, polyoxalates, and also oligoproline- and catechol-based materials, is subsequently given. The endowment of multiple responsiveness, with specific emphasis on the cases where a molecular logic gate behavior can be obtained, is focused on. Finally, fundamental open issues, which include implications of the "drug"-like character of ROS-responsive materials (inherent anti-inflammatory behavior) and the poor quantitative understanding of ROS roles in biology, are discussed.
在这篇综述中,提供了对生物氧化剂(重点是活性氧物种,ROS)的一般介绍,以及开发能够响应 ROS 的材料的医学基础。随后介绍了最常用的高分子 ROS 响应体系的制备方面和机械响应的最新进展,包括多硫化物、多硒化物、多硫酮、丙二酸酯,以及寡聚脯氨酸和儿茶酚基材料。重点关注赋予多种响应性的情况,特别是可以获得分子逻辑门行为的情况。最后,讨论了基本的未解决问题,包括 ROS 响应材料的“药物”性质(固有抗炎行为)的影响,以及对生物学中 ROS 作用的定量理解不足的问题。