Ma Hengchang, Yang Zengming, Cao Haiying, Lei Lei, Chang Lu, Ma Yucheng, Yang Manyi, Yao Xiaoqiang, Sun Shaobo, Lei Ziqiang
Key Laboratory of Eco-Environment-Related Polymer Materials Ministry of Education, College of Chemistry and Chemical Engineering, Northwest Normal University, Lanzhou, 730070, P. R. China.
J Mater Chem B. 2017 Jan 28;5(4):655-660. doi: 10.1039/c6tb02844f. Epub 2016 Dec 5.
Specific organelle imaging and long-term cellular tracking are of paramount importance in monitoring biological processes, pathological pathways, and therapeutic effects, etc. Herein, we report a novel macromolecule fluorescent probe (TPPA-DBO), which is synthesized from tris(4-(pyridin-4-yl)phenyl)amine (TPPA) and 1,8-dibromononane (DBO) with a gram scale by a simple method. TPPA-DBO demonstrates a highly specific nucleolus-targeting ability, which is very challenging in the bioimaging research field. We have shown that the green nucleolus-specificity probe TPPA-DBO has advantages over the commercially available nucleolus-staining probes such as DAPI, Hoechst dyes and SYTOs in terms of its AIE-performance, large Stokes shift (175 nm), excellent photostability, and promising usefulness in live cell imaging experiments. Surprisingly, after internalizing TPPA-DBO into the nucleus region for a period of time, some TPPA-DBO are reversely diffused from nucleolus into the cytoplasm, thus resulting in the staining of mitochondria with a redder emission color. This research result may provide a new concept of cellular tracker design and provide insight into biological questions, understanding disease mechanismss, and designing new therapeutic strategies.
特异性细胞器成像和长期细胞追踪在监测生物过程、病理途径和治疗效果等方面至关重要。在此,我们报道了一种新型大分子荧光探针(TPPA-DBO),它由三(4-(吡啶-4-基)苯基)胺(TPPA)和1,8-二溴壬烷(DBO)通过简单方法以克级规模合成。TPPA-DBO表现出高度特异性的核仁靶向能力,这在生物成像研究领域极具挑战性。我们已经表明,绿色核仁特异性探针TPPA-DBO在聚集诱导发光性能、大斯托克斯位移(175 nm)、优异的光稳定性以及在活细胞成像实验中的潜在实用性方面优于市售的核仁染色探针,如DAPI、Hoechst染料和SYTOs。令人惊讶的是,将TPPA-DBO内化到细胞核区域一段时间后,一些TPPA-DBO会从核仁反向扩散到细胞质中,从而导致线粒体被染成更红的发射颜色。这一研究结果可能为细胞追踪器设计提供新的概念,并为理解生物学问题、疾病机制以及设计新的治疗策略提供见解。