State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University, Changchun 130012, P.R. China.
Joint Laboratory of Opto-Functional Theranostics in Medicine and Chemistry, The First Hospital of Jilin University, Changchun, 130021, P.R. China.
Theranostics. 2022 May 26;12(10):4536-4547. doi: 10.7150/thno.71443. eCollection 2022.
Near-infrared-II (NIR-II) dyes could be encapsulated by either exogenous or endogenous albumin to form stable complexes for deep tissue bioimaging. However, we still lack a complete understanding of the interaction mechanism of the dye@albumin complex. Studying this principle is essential to guide efficient dye synthesis and develop NIR-II probes with improved brightness, photostability, . Here, we screen and test the optical and chemical properties of dye@albumin fluorophores, and systematically investigate the binding sites and the relationship between dye structures and binding degree. Super-stable cyanine dye@albumin fluorophores are rationally obtained, and we also evaluate their pharmacokinetics and long-lasting NIR-II imaging abilities. We identify several key parameters of cyanine dyes governing the supramolecular/covalent binding to albumin, including a six-membered ring with chlorine (Cl), the small size of side groups, and relatively high hydrophobicity. The tailored fluorophore (IR-780@albumin) exhibits much-improved photostability, serving as a long-lasting imaging probe for NIR-II bioimaging. Our study reveals that the chloride-containing cyanine dyes with the above-screened chemical structure (e.g. IR-780) could be lodged into albumin more efficiently, producing a much more stable fluorescent probe. Our finding partly solves the photobleaching issue of clinically-available cyanine dyes, enriching the probe library for NIR-II bioimaging and imaging-guided surgery.
近红外二区 (NIR-II) 染料可以被外源性或内源性白蛋白包裹,形成稳定的复合物,用于深层组织生物成像。然而,我们仍然缺乏对染料@白蛋白复合物相互作用机制的全面了解。研究这一原理对于指导高效染料合成和开发具有更高亮度、更好光稳定性的 NIR-II 探针至关重要。
在这里,我们筛选和测试了染料@白蛋白荧光团的光学和化学性质,并系统地研究了结合部位以及染料结构与结合程度之间的关系。合理地获得了超稳定的菁染料@白蛋白荧光团,并评估了它们的药代动力学和持久的近红外二区成像能力。我们确定了几个影响菁染料与白蛋白超分子/共价结合的关键参数,包括带有氯 (Cl) 的六元环、较小的侧基和相对较高的疏水性。定制的荧光团 (IR-780@albumin) 表现出显著提高的光稳定性,可用作近红外二区生物成像的持久成像探针。
我们的研究表明,具有上述筛选出的化学结构的含氯菁染料(例如 IR-780)可以更有效地嵌入白蛋白中,产生更稳定的荧光探针。我们的发现部分解决了临床可用的菁染料的光漂白问题,丰富了用于近红外二区生物成像和成像引导手术的探针库。