Hong Kong Branch of Chinese National Engineering Research Center for Tissue Restoration and Reconstruction, Department of Chemistry, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong, 999077, China.
Centre for AIE Research, Shenzhen Key Laboratory of Polymer Science and Technology, Guangdong Research Center for Interfacial Engineering of Functional Materials, College of Material Science and Engineering, Shenzhen University, Shenzhen 518061, People's Republic of China.
ACS Nano. 2023 Sep 12;17(17):17004-17020. doi: 10.1021/acsnano.3c04266. Epub 2023 Aug 18.
The aggregation-induced emission photosensitizer (AIE PS) has stood out as an alternative and competent candidate in bacterial theranostics, particularly with the use of cationic AIE PS in bacterial discrimination and elimination. Most reported work emphasizes the role of electrostatic interaction between cationic AIE PS and negatively charged bacterial surfaces, enabling broad applications from bacterial discrimination to bacterial killing. However, the underlying targeting mechanism and the design rationale of the cationic AIE PS for effective bacterial labeling remain poorly investigated. In this Article, we designed and synthesized a series of cationic amphiphilic AIE PSs with different calculated log values. Then, we systemically studied the relationship between the hydrophobicity variation of AIE PS and bacterial targeting outcomes, the dose of AIE PS needed to label various species of bacteria, and their photodynamic antibacterial efficiency. The findings in this work provide a better understanding of the unclear AIE PS-bacterial interaction mechanism and some insights into the structural design strategies of cationic amphiphilic AIE PS for better development in bacterial theranostics.
聚集诱导发光光敏剂(AIE PS)作为一种替代的、有竞争力的候选物在细菌治疗学中脱颖而出,特别是使用阳离子 AIE PS 进行细菌鉴别和清除。大多数报道的工作强调了阳离子 AIE PS 与带负电荷的细菌表面之间的静电相互作用,使从细菌鉴别到细菌杀伤的广泛应用成为可能。然而,阳离子 AIE PS 用于有效细菌标记的潜在靶向机制和设计原理仍未得到充分研究。在本文中,我们设计并合成了一系列具有不同计算 logP 值的阳离子两亲性 AIE PS。然后,我们系统地研究了 AIE PS 疏水性变化与细菌靶向结果之间的关系、标记各种细菌所需的 AIE PS 剂量以及它们的光动力抗菌效率。这项工作的结果提供了对 AIE PS-细菌相互作用机制的更深入理解,并为阳离子两亲性 AIE PS 的结构设计策略提供了一些见解,以促进其在细菌治疗学中的更好发展。