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HClO 激活的 AIE 纳米探针用于在吞噬细胞中进行基于影像引导的细菌消融的荧光和光动力作用。

HClO-Activated Fluorescence and Photosensitization from an AIE Nanoprobe for Image-Guided Bacterial Ablation in Phagocytes.

机构信息

Department of Chemical and Biomolecular Engineering, National University of Singapore, 4 Engineering Drive 4, Singapore, 117585, Singapore.

Department of Hepatobiliary and Pancreatic Surgery, First Affiliated Hospital, School of Medicine, Zhejiang University, Hangzhou, 310003, P. R. China.

出版信息

Adv Mater. 2020 Nov;32(47):e2005222. doi: 10.1002/adma.202005222. Epub 2020 Oct 20.

Abstract

Bacteria hiding in host phagocytes are difficult to kill, which can cause phagocyte disorders resulting in local and systemic tissue damage. Effective accumulation of activatable photosensitizers (PSs) in phagocytes to realize selective imaging and on-demand photodynamic ablation of bacteria is of great scientific and practical interests for precise bacteria diagnosis and treatment. Herein, HClO-activatable theranostic nanoprobes, DTF-FFP NPs, for image-guided bacterial ablation in phagocytes are introduced. DTF-FFP NPs are prepared by nanoprecipitation of an HClO-responsive near-infrared molecule FFP and an efficient PS DTF with aggregation-induced emission characteristic using an amphiphilic polymer Pluronic F127 as the encapsulation matrix. As an energy acceptor, FFP can quench both fluorescence and production of reactive oxygen species (ROS) of DTF, thus eliminating the phototoxicity of DTF-FFP NPs in normal cells and tissues. Once delivered to the infection sites, DTF-FFP NPs light up with red fluorescence and efficiently generate ROS owing to the degradation of FFP by the stimulated release of HClO in phagocytes. The selective activation of fluorescence and photosensitization is successfully confirmed by both in vitro and in vivo results, demonstrating the effectiveness and theranostic potential of DTF-FFP NPs in precise bacterial therapy.

摘要

细菌藏身于宿主吞噬细胞中难以被杀死,这会导致吞噬细胞功能紊乱,从而引发局部和全身组织损伤。将可激活的光敏剂(PS)有效递送至吞噬细胞中,实现对细菌的选择性成像和按需光动力消融,对于精确的细菌诊断和治疗具有重要的科学和实际意义。在此,我们介绍了一种用于吞噬细胞中细菌成像引导光动力消融的 HClO 激活型诊疗纳米探针 DTF-FFP NPs。DFT-FFP NPs 是通过将 HClO 响应型近红外分子 FFP 和具有聚集诱导发光特性的高效 PS DTF 用两亲聚合物 Pluronic F127 作为包封基质,采用纳米沉淀法制备得到的。作为能量受体,FFP 可以猝灭 DTF 的荧光和活性氧物种(ROS)的产生,从而消除 DTF-FFP NPs 在正常细胞和组织中的光毒性。一旦递送至感染部位,DFT-FFP NPs 会因吞噬细胞中 HClO 刺激释放而导致 FFP 降解,从而发出红色荧光并高效产生 ROS。体外和体内结果均成功证实了荧光和光动力的选择性激活,表明 DTF-FFP NPs 在精确细菌治疗中的有效性和治疗潜力。

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