Zhang Lei, Wang Chunhui, Li Yuanyuan, Wang Haiyang, Sun Kunhui, Lu Siyu, Wang Yahui, Jing Su, Cordes Thorben
School of Chemistry and Molecular Engineering, Nanjing Tech University, 30 South Puzhu Road, 211816, Nanjing, China.
Physical and Synthetic Biology, Faculty of Biology, Ludwig-Maximilians-Universität München, Großhadernerstr. 2-4, 82152, Planegg-Martinsried, Germany.
Angew Chem Int Ed Engl. 2025 Jan 21;64(4):e202415627. doi: 10.1002/anie.202415627. Epub 2024 Nov 18.
Fluorophores are essential tools for optical imaging and biomedical research. Their synthetic modification to incorporate new functions, however, remains a challenging task. Conventional strategies rely on linear synthesis in which a parent framework is gradually extended. We here designed and synthesized a versatile library of multi-functional fluorophores via a scaffold-based Ugi four-component reaction (U-4CR). The adaptability of the scaffold is achieved through modification of starting materials. This allows to use a small range of starting materials for the creation of fluorogenic probes that can detect reactive-oxygen species and where the localization into subcellular organelles or membranes can be controlled. We present reaction yields ranging from 60 % to 90 % and discovered that some compounds can even function as imaging and therapeutic agents via Fenton chemistry inducing pyroptosis in living cancer cells. Our study underlines the potential of scaffold-based synthesis for versatile creation of functional fluorophores and their applications.
荧光团是光学成像和生物医学研究的重要工具。然而,对其进行合成修饰以纳入新功能仍然是一项具有挑战性的任务。传统策略依赖于线性合成,即在母体框架上逐步扩展。我们在此通过基于支架的乌吉四组分反应(U-4CR)设计并合成了一个多功能荧光团文库。支架的适应性通过起始材料的修饰来实现。这使得可以使用少量起始材料来创建能够检测活性氧物种的荧光探针,并且可以控制其在亚细胞器或膜中的定位。我们给出的反应产率在60%至90%之间,并且发现一些化合物甚至可以通过芬顿化学在活癌细胞中诱导焦亡,从而起到成像和治疗剂的作用。我们的研究强调了基于支架的合成在多功能创建功能性荧光团及其应用方面的潜力。