State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University, Changchun, Jilin Province, 130012, People's Republic of China.
Department of Oncological Gynecology, the First Hospital of Jilin University, Changchun, Jilin Province, 130021, People's Republic of China.
Nanotechnology. 2021 Oct 7;32(50). doi: 10.1088/1361-6528/ac22df.
Image-guided therapy, with simultaneous imaging and therapy functions, has the potential to greatly enhance the therapeutic efficacy of anticancer therapy, and reduce the incidence of side effects. Fluorescence imaging has the advantages of easy operation, abundant signal, high contrast, and fast response for real-time and non-invasive tracking. Luminogens with aggregation-induced emission characteristics (AIEgens) can emit strong luminescence in an aggregate state, which makes them ideal materials to construct applicative fluorophores for fluorescence imaging. The opportunity for image-guided cancer treatment has inspired researchers to explore the theranostic application of AIEgens combined with other therapy methods. In recent years, many AIEgens with efficient photosensitizing or photothermal abilities have been designed by precise molecular engineering, with superior performance in image-guided anticancer therapy. Owing to the hydrophobic property of most AIEgens, an assembly approach has been wildly utilized to construct biocompatible AIEgen-based nanostructures in aqueous systems, which can be used for image-guided anticancer therapy. In the present review, we summarize the recent advances in the assembled AIEgens for image-guided anticancer therapy. Five types of image-guided anticancer therapy using assembled AIEgens are included: chemotherapy, photodynamic therapy, photothermal therapy, gene therapy, and synergistic therapy. Moreover, a brief conclusion with the discussion of current challenges and future perspectives in this area is further presented.
影像引导治疗具有实时、非侵入式的成像和治疗功能,有潜力极大地提高癌症治疗的疗效,并降低副作用的发生率。荧光成像是一种易于操作、信号丰富、对比度高、响应快速的技术,可用于实时、非侵入式的追踪。具有聚集诱导发光特性(AIEgens)的发光体在聚集状态下可以发出强荧光,使其成为构建用于荧光成像的应用荧光团的理想材料。影像引导癌症治疗的机会激发了研究人员探索 AIEgens 与其他治疗方法相结合的治疗应用。近年来,通过精确的分子工程设计了许多具有高效光动力或光热能力的 AIEgens,它们在影像引导的抗癌治疗中表现出优异的性能。由于大多数 AIEgens 的疏水性,组装方法被广泛用于在水相体系中构建具有生物相容性的基于 AIEgen 的纳米结构,可用于影像引导的抗癌治疗。在本综述中,我们总结了组装 AIEgens 在影像引导抗癌治疗方面的最新进展。包含了五种类型的使用组装 AIEgens 的影像引导抗癌治疗:化学疗法、光动力疗法、光热疗法、基因疗法和协同疗法。此外,进一步提出了对当前挑战和未来展望的简要讨论。