Ding Qihang, Wang Caiqian, Wang Haoran, Xiang Chunbai, Wang Zhao, Wang Yue, Zhao Ling, Vendrell Marc, Kim Jong Seung
Department of Chemistry, Korea University, Seoul 02841, Korea.
National Key Laboratory of Agricultural Microbiology, Huazhong Agricultural University, Wuhan 430070, China.
J Am Chem Soc. 2025 May 14;147(19):16661-16673. doi: 10.1021/jacs.5c04975. Epub 2025 May 2.
Rabies is a viral disease with an almost 100% fatality rate, primarily transmitted through bites from infected animals, with a long incubation period and no effective clinical treatments to date. Herein, we developed the first fluorescent nanotheranostic probe in the second near-infrared (NIR-II) window capable of efficiently crossing the blood-brain barrier (BBB), precisely targeting rabies virus (RABV), and enabling safe photodynamic therapy (PDT). This probe is based on a novel NIR-II organic polyacetylene fluorophore, DK, which self-assembles via a click reaction with a nanoparticle carrier, N3-PEG2000-R, that we synthesized with a high biocompatibility and BBB permeability. The probe surface is further modified with an aptamer that specifically binds to RABV glycoprotein (RVG), resulting in our final nanotheranostic probe, . Upon intravenous injection into mice, it effectively crosses the BBB, localizes to the infection site, and binds to the RVG, allowing for real-time NIR-II fluorescence imaging. Additionally, it efficiently converts light energy into chemical energy without generating thermal effects, ensuring safe and effective PDT. This advanced nanotheranostic probe integrates precise targeting, deep-tissue imaging, and safe therapy, making it a promising candidate for future clinical applications in rabies treatment.
狂犬病是一种病死率几乎达100%的病毒性疾病,主要通过感染动物的咬伤传播,潜伏期长,且迄今为止尚无有效的临床治疗方法。在此,我们开发了首个在第二近红外(NIR-II)窗口的荧光纳米诊疗探针,它能够有效穿过血脑屏障(BBB),精确靶向狂犬病病毒(RABV),并实现安全的光动力疗法(PDT)。该探针基于一种新型的NIR-II有机聚乙炔荧光团DK,它通过与纳米颗粒载体N3-PEG2000-R发生点击反应进行自组装,我们合成的这种纳米颗粒载体具有高生物相容性和血脑屏障通透性。探针表面进一步用与RABV糖蛋白(RVG)特异性结合的适体进行修饰,从而得到我们最终的纳米诊疗探针。静脉注射到小鼠体内后,它能有效穿过血脑屏障,定位到感染部位,并与RVG结合,实现实时NIR-II荧光成像。此外,它能有效地将光能转化为化学能而不产生热效应,确保光动力疗法安全有效。这种先进的纳米诊疗探针整合了精确靶向、深部组织成像和安全治疗功能,使其成为未来狂犬病治疗临床应用的有前景的候选者。