MOE key Laboratory for Analytical Science of Food Safety and Biology, College of Chemistry, Fuzhou University, Fuzhou 350108, China.
Theranostics. 2020 Mar 26;10(11):4809-4821. doi: 10.7150/thno.44376. eCollection 2020.
Fluorescence (FL) and photoacoustic (PA) imaging in the second near infrared window (NIR-II FL and NIR-II PA) hold great promise for biomedical applications because of their non-invasive nature and excellent spatial resolution properties. : We develop a NIR-II PA and NIR-II FL dual-mode imaging gold nanorod vesicles (AuNR Ves) by self-assembly of amphiphilic AuNR coated with light responsive polyprodrug of Ru-complex and PEG, and NIR-II cyanine dye (IR 1061). The AuNR Ves showed strong ligh absorption property and PA imaging performance in the NIR-II windows. Moreover, the NIR-II fluorescence signal of IR 1061 loaded in the AuNR Ve is quenched. : The AuNR Ves can release photosensitizer Ru-complex and IR 1061 sequentially triggered by NIR light irradiation, leading to a corresponding NIR-II PA signal decrease and NIR-II FL signal recovery. Meanwhile, Ru-complex can not only serve as a chemotherapeutic drug but also generate singlet oxygen (O) under NIR light irradiation. The release of Ru-complex and photodynamic therapy are guided by the responsive variation of NIR-II PA and NIR-II FL signals. : The AuNR Ve possessing not only precisely control O/drug release but also the intrinsic ability to monitor therapy process offers a new strategy for the development of smart theranostic nanoplatform.
荧光(FL)和光声(PA)成像在近红外二区(NIR-II FL 和 NIR-II PA)具有很大的生物医学应用潜力,因为它们具有非侵入性和优异的空间分辨率特性。:我们通过自组装具有光响应性钌配合物和聚乙二醇(PEG)包裹的光响应性聚前药和近红外二区菁染料(IR 1061)的两亲性金纳米棒(AuNR),开发了一种 NIR-II PA 和 NIR-II FL 双模成像金纳米棒囊泡(AuNR Ves)。AuNR Ves 在 NIR-II 窗口中表现出很强的光吸收特性和 PA 成像性能。此外,负载在 AuNR Ves 中的近红外二区菁染料(IR 1061)的近红外二区荧光信号被猝灭。:AuNR Ves 可以在近红外光照射下顺序释放光敏剂钌配合物和 IR 1061,导致相应的 NIR-II PA 信号下降和 NIR-II FL 信号恢复。同时,Ru 配合物不仅可以作为化疗药物,而且可以在近红外光照射下产生单线态氧(O)。Ru 配合物的释放和光动力治疗是通过 NIR-II PA 和 NIR-II FL 信号的响应变化来指导的。:AuNR Ves 不仅具有精确控制 O/药物释放的能力,而且具有内在的监测治疗过程的能力,为开发智能治疗纳米平台提供了一种新策略。