Molecular Science and Biomedicine Laboratory (MBL), State Key Laboratory of Chemo/Biosensing and Chemometrics, College of Chemistry and Chemical Engineering, Hunan University, Changsha 410082, P. R. China.
J Am Chem Soc. 2021 Dec 22;143(50):21143-21160. doi: 10.1021/jacs.1c10925. Epub 2021 Dec 8.
Fluorescent organic dyes have been extensively used as raw materials for the development of versatile imaging tools in the field of biomedicine. Particularly, the development of solid-state organic fluorophores (SSOFs) in the past 20 years has exhibited an upward trend. In recent years, studies on SSOFs have focused on the development of advanced tools, such as optical contrast agents and phototherapy agents, for biomedical applications. However, the practical application of these tools has been hindered owing to several limitations. Thus, in this Perspective, we have provided insights that could aid researchers to further develop these tools and overcome the limitations such as limited aqueous dispersibility, low biocompatibility, and uncontrolled emission. First, we described the inherent photophysical properties and fluorescence mechanisms of conventional, aggregation-induced emissive, and precipitating SSOFs with respect to their biomedical applications. Subsequently, we highlighted the recent development of functionalized SSOFs for bioimaging, biosensing, and theranostics. Finally, we elucidated the potential prospects and limitations of current SSOF-based tools associated with biomedical applications.
荧光有机染料已被广泛用作生物医学领域多功能成像工具开发的原料。特别是,在过去 20 年中,固态有机荧光团(SSOFs)的发展呈上升趋势。近年来,SSOFs 的研究集中在开发先进的工具上,例如用于生物医学应用的光学对比剂和光疗剂。然而,由于存在一些限制,这些工具的实际应用受到了阻碍。因此,在本观点中,我们提供了一些见解,以帮助研究人员进一步开发这些工具并克服其局限性,例如有限的水分散性、低生物相容性和不可控的发射。首先,我们描述了传统、聚集诱导发射和沉淀 SSOFs 相对于其生物医学应用的固有光物理性质和荧光机制。随后,我们强调了用于生物成像、生物传感和治疗的功能化 SSOFs 的最新发展。最后,我们阐明了与生物医学应用相关的基于当前 SSOF 的工具的潜在前景和局限性。