Center 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 518060, China.
Pneumology Department, Shenzhen Children's Hospital, Shenzhen 518026, China.
Chem Soc Rev. 2022 Mar 21;51(6):1983-2030. doi: 10.1039/d1cs01138c.
Photo-driven theranostics, also known as phototheranostics, relying on the diverse excited-state energy conversions of theranostic agents upon photoexcitation represents a significant branch of theranostics, which ingeniously integrate diagnostic imaging and therapeutic interventions into a single formulation. The combined merits of photoexcitation and theranostics endow photo-driven theranostics with numerous superior features. The applications of aggregation-induced emission luminogens (AIEgens), a particular category of fluorophores, in the field of photo-driven theranostics have been intensively studied by virtue of their versatile advantageous merits of favorable biocompatibility, tuneable photophysical properties, unique aggregation-enhanced theranostic (AET) features, ideal AET-favored on-site activation ability and ready construction of one-for-all multimodal theranostics. This review summarised the significant achievements of photo-driven theranostics based on AIEgens, which were detailedly elaborated and classified by their diverse theranostic modalities into three groups: fluorescence imaging-guided photodynamic therapy, photoacoustic imaging-guided photothermal therapy, and multi-modality theranostics. Particularly, the tremendous advantages and individual design strategies of AIEgens in pursuit of high-performance photosensitizing output, high photothermal conversion and multimodal function capability by adjusting the excited-state energy dissipation pathways are emphasized in each section. In addition to highlighting AIEgens as promising templates for modulating energy dissipation in the application of photo-driven theranostics, current challenges and opportunities in this field are also discussed.
光驱动治疗学,也称为光治疗学,依赖于治疗剂在光激发下的各种激发态能量转换,是治疗学的一个重要分支,它巧妙地将诊断成像和治疗干预集成到单一制剂中。光激发和治疗学的结合优点赋予了光驱动治疗学许多优越的特性。聚集诱导发光团(AIEgens),一种特殊的荧光团类别,由于其良好的生物相容性、可调的光物理性质、独特的聚集增强治疗(AET)特性、理想的 AET 有利的现场激活能力以及易于构建全合一多模态治疗学等多种有利优点,在光驱动治疗学领域的应用得到了广泛研究。本综述总结了基于 AIEgens 的光驱动治疗学的重要成就,详细阐述并按其不同的治疗模式分为三组:荧光成像引导光动力治疗、光声成像引导光热治疗和多模态治疗学。特别强调了 AIEgens 通过调整激发态能量耗散途径来追求高性能光敏输出、高光热转换和多模态功能能力的巨大优势和个体设计策略。除了强调 AIEgens 作为调节光驱动治疗学应用中能量耗散的有前途的模板外,还讨论了该领域当前的挑战和机遇。