State Key Laboratory of Food Science and Technology, Jiangnan University, Wuxi 214122, China.
International Joint Laboratory on Food Safety, Jiangnan University, Wuxi 214122, China.
ACS Appl Mater Interfaces. 2020 Oct 14;12(41):45850-45858. doi: 10.1021/acsami.0c14063. Epub 2020 Oct 5.
Photodynamic sterilization is the most promising method to combat bacterial infection, especially multidrug-resistant bacterial infection. However, the absorption of conventional photosensitizers is mostly located in the UV-vis region, leading to limited penetration depth and poor therapeutic efficacy for deep-tissue bacterial infection. Besides, most of the photosensitizers are always in the activated state and lack bacteria-targeting ability, which inevitably causes severe nonspecific damage to normal tissues. Here, we show the design of a pH reversibly switchable near-infrared photosensitizer-based nanocapsule for precision bacteria-targeting fluorescence imaging-guided photodynamic sterilization. pH reversibly activatable asymmetric cyanine was synthesized as a bacteria-specific imaging unit and smart photosensitizer to realize precision imaging-guided targeting sterilization without side effects. An allicin mimic was introduced into the smart photosensitizer as the auxiliary bactericidal group to further enhance antibacterial efficiency. Meanwhile, amphipathic functionalized polyethylene glycol was employed to fabricate the nanocapsule by self-assembly to endow the charge-reversed intelligent targeting ability and prolong blood circulation. The developed switchable nanocapsule not only enables precision bacterial infection-targeted imaging without background fluorescence interference but also gives an efficient bactericidal effect with excellent specificity and negligible side effects, holding great potential for practical application.
光动力杀菌是对抗细菌感染的最有前途的方法,尤其是对抗多重耐药菌感染。然而,传统光敏剂的吸收大多位于紫外-可见区域,导致对深部组织细菌感染的穿透深度有限,治疗效果不佳。此外,大多数光敏剂始终处于激活状态,缺乏细菌靶向能力,这不可避免地对正常组织造成严重的非特异性损伤。在这里,我们展示了一种基于 pH 可逆开关的近红外光动力杀菌的光敏剂纳米胶囊的设计。合成了 pH 可逆激活的不对称菁染料作为细菌特异性成像单元和智能光敏剂,以实现无副作用的精确成像引导靶向杀菌。将大蒜素模拟物引入智能光敏剂中作为辅助杀菌基团,以进一步提高抗菌效率。同时,采用两亲性功能化的聚乙二醇通过自组装制备纳米胶囊,赋予电荷反转智能靶向能力和延长血液循环。所开发的可切换纳米胶囊不仅能够实现精确的细菌感染靶向成像,而没有背景荧光干扰,而且具有高效的杀菌效果,具有极好的特异性和可忽略的副作用,具有很大的实际应用潜力。