荧光
吞噬细胞
光毒性
活性氧
生物物理学
纳米探针
纳米颗粒
烧蚀
材料科学
化学
光化学
纳米技术
吞噬作用
体外
生物化学
微生物学
生物
工程类
航空航天工程
物理
量子力学
作者
Min Wu,Wenbo Wu,Yukun Duan,Xingang Liu,Meng Wang,Chi Uyen Phan,Guobin Qi,Guping Tang,Bin Liu
标识
DOI:10.1002/adma.202005222
摘要
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.
科研通智能强力驱动
Strongly Powered by AbleSci AI