Leitão Miguel M, de Melo-Diogo Duarte, Alves Cátia G, Lima-Sousa Rita, Correia Ilídio J
CICS-UBI-Centro de Investigação em Ciências da Saúde, Universidade da Beira Interior, 6200-506, Covilhã, Portugal.
CIEPQPF-Departamento de Engenharia Química, Universidade de Coimbra, Rua Sílvio Lima, 3030-790, Coimbra, Portugal.
Adv Healthc Mater. 2020 Mar;9(6):e1901665. doi: 10.1002/adhm.201901665. Epub 2020 Jan 29.
Developing technologies that allow the simultaneous diagnosis and treatment of cancer (theragnostic) has been the quest of numerous interdisciplinary research teams. In this context, nanomaterials incorporating prototypic near infrared (NIR)-light responsive heptamethine cyanines have been showing very promising results for cancer theragnostic. The precisely engineered features of these nanomaterials endow them with the ability to achieve a high tumor accumulation, enabling a tumor's visualization by NIR fluorescence and photoacoustic imaging modalities. Upon interaction with NIR light, the tumor-homed heptamethine cyanine-incorporating nanomaterials can also produce a photothermal/photodynamic effect with a high spatio-temporal resolution and minimal side effects, leading to an improved therapeutic outcome. This progress report analyses the application of nanomaterials incorporating prototypic NIR-light responsive heptamethine cyanines (IR775, IR780, IR783, IR797, IR806, IR808, IR820, IR825, IRDye 800CW, and Cypate) for cancer photothermal therapy, photodynamic therapy, and imaging. Overall, the continuous development of nanomaterials incorporating the prototypic NIR absorbing heptamethine cyanines will cement their phototheragnostic capabilities.
开发能够同时进行癌症诊断和治疗的技术(诊疗一体化)一直是众多跨学科研究团队追求的目标。在这种背景下,包含原型近红外(NIR)光响应性七甲川花菁的纳米材料在癌症诊疗方面已显示出非常有前景的结果。这些纳米材料经过精确设计的特性使其能够实现高肿瘤蓄积,从而通过近红外荧光和光声成像方式实现肿瘤可视化。与近红外光相互作用时,归巢于肿瘤的含七甲川花菁纳米材料还能产生具有高时空分辨率且副作用最小的光热/光动力效应,从而改善治疗效果。本进展报告分析了包含原型近红外光响应性七甲川花菁(IR775、IR780、IR783、IR797、IR806、IR808、IR820、IR825、IRDye 800CW和Cypate)的纳米材料在癌症光热治疗、光动力治疗和成像中的应用。总体而言,包含原型近红外吸收性七甲川花菁的纳米材料的持续发展将巩固其光诊疗能力。