School of Engineering, China Pharmaceutical University, Nanjing 211198, P. R. China.
State Key Laboratory of Natural Medicines, Key Laboratory of Drug Quality Control and Pharmacovigilance, Department of Pharmaceutical Analysis, China Pharmaceutical University, Nanjing 211198, P. R. China.
Theranostics. 2021 May 13;11(14):7045-7056. doi: 10.7150/thno.60586. eCollection 2021.
Precise treatment of tumors is attracting increasing attention. Molecular probes simultaneously demonstrating the diagnostic signal and pharmacological effect in response to tumor microenvironment are highly desired. γ-glutamyl transpeptidase (GGT) is a biomarker with significantly up-regulated expression in the tumor area. We developed a GGT responsive near-infrared (NIR) nanoassembly for tumor-specific fluorescence imaging-guided photothermal therapy. The GGT responsive NIR probe was constructed by conjugating GGT-specific substrate γ-glutamic acid (γ-Glu) with cyanine fluorophore (NRh-NH) via amide reaction. The resulting NRh-G spontaneously assembled into nanoparticles (NRh-G-NPs) around 50 nm. The NPs were characterized and the properties evaluated in the presence or absence of GGT. Subsequently, we studied fluorescence imaging and photothermal therapy of NRh-G-NPs and . NRh-G-NPs, upon specific reaction with GGT, turned into NRh-NH-NPs, showing a ~180-fold fluorescence enhancement and excellent photothermal effect recovery. NRh-G-NPs could selectively light up U87MG tumor cells while their fluorescence was weak in L02 human normal liver cells. The NPs also showed excellent tumor cell ablation upon laser irradiation. After intravenous injection into tumor-bearing mice, NRh-G-NPs could arrive in the tumor area and specifically light up the tumor. Following laser irradiation, the tumor could be completely erased with no tumor reoccurrence for up to 40 days. NRh-G-NPs were specifically responsive to GGT overexpressed in U87MG tumor cells and selectively lit up the tumor for imaging-guided therapy. Besides, the recovery of photothermal property in the tumor area could improve cancer therapy precision and decreased side effects in normal tissues.
肿瘤的精准治疗受到越来越多的关注。人们非常希望能够同时展示诊断信号和针对肿瘤微环境的药理效应的分子探针。γ-谷氨酰转肽酶(GGT)是一种在肿瘤区域表达显著上调的生物标志物。我们开发了一种 GGT 响应的近红外(NIR)纳米组装体,用于肿瘤特异性荧光成像引导的光热治疗。GGT 响应的 NIR 探针是通过酰胺反应将 GGT 特异性底物γ-谷氨酸(γ-Glu)与菁染料(NRh-NH)偶联构建而成。所得的 NRh-G 通过自组装形成约 50nm 的纳米颗粒(NRh-G-NPs)。我们对 NPs 进行了表征,并在存在或不存在 GGT 的情况下评估了它们的性质。随后,我们研究了 NRh-G-NPs 的荧光成像和光热治疗。NRh-G-NPs 与 GGT 特异性反应后,变成 NRh-NH-NPs,荧光增强约 180 倍,光热效应恢复良好。NRh-G-NPs 可以选择性地点亮 U87MG 肿瘤细胞,而在 L02 人正常肝细胞中其荧光较弱。当用激光照射时,这些纳米颗粒也能很好地杀死肿瘤细胞。静脉注射到荷瘤小鼠后,NRh-G-NPs 可以到达肿瘤区域并特异性地点亮肿瘤。激光照射后,肿瘤可完全消除,40 天内无肿瘤复发。NRh-G-NPs 特异性地响应 U87MG 肿瘤细胞中过表达的 GGT,并选择性地点亮肿瘤进行成像引导治疗。此外,肿瘤区域光热性能的恢复可以提高癌症治疗的精度,减少正常组织的副作用。