Department of Speciality Chemicals Technology, Institute of Chemical Technology (ICT), Mumbai, 400019, India.
Department of Biotechnology, BIT Mesra, Ranchi, India.
Chemistry. 2021 Mar 22;27(17):5470-5482. doi: 10.1002/chem.202004942. Epub 2021 Feb 25.
Designing chiral AIEgens without aggregation-induced emission (AIE)-active molecules externally tagged to the chiral scaffold remains a long-standing challenge for the scientific community. The inherent aggregation-caused quenching phenomenon associated with the axially chiral (R)-[1,1'-binaphthalene]-2,2'-diol ((R)-BINOL) scaffold, together with its marginal Stokes shift, limits its application as a chiral AIE-active material. Here, in our effort to design chiral luminogens, we have developed a design strategy in which 2-substituted furans, when appropriately fused with the BINOL scaffold, will generate solid-state emissive materials with high thermal and photostability as well as colour-tunable properties. The excellent biocompatibility, together with the high fluorescence quantum yield and large Stokes shift, of one of the luminogens stimulated us to investigate its cell-imaging potential. The luminogen was observed to be well internalised and uniformly dispersed within the cytoplasm of MDA-MB-231 cancer cells, showing high fluorescence intensity.
设计没有将聚集诱导发射(AIE)活性分子外部标记到手性支架上的手性 AIE 化合物仍然是科学界面临的一个长期挑战。与轴向手性(R)-[1,1'-联萘]-2,2'-二醇((R)-BINOL)支架相关的固有聚集猝灭现象,以及其较小的斯托克斯位移,限制了其作为手性 AIE 活性材料的应用。在这里,在我们设计手性发光体的努力中,我们开发了一种设计策略,其中 2-取代呋喃与 BINOL 支架适当融合时,将生成具有高热和光稳定性以及可调颜色性质的固态发光材料。其中一种发光体具有优异的生物相容性,以及高荧光量子产率和大斯托克斯位移,这激发了我们研究其细胞成像潜力。观察到发光体很好地内化并均匀分散在 MDA-MB-231 癌细胞的细胞质中,显示出高荧光强度。