Zhao Qiang, Zhou Xiaobo, Cao Tianye, Zhang Kenneth Yin, Yang Lijuan, Liu Shujuan, Liang Hua, Yang Huiran, Li Fuyou, Huang Wei
Key Laboratory for Organic Electronics and Information Displays & Institute of Advanced Materials (IAM) , Jiangsu National Synergistic Innovation Center for Advanced Materials (SICAM) , Nanjing University of Posts & Telecommunications , 9 Wenyuan Road , Nanjing 210023 , China . Email:
Department of Chemistry & State Key Laboratory of Molecular Engineering of Polymers & Institute of Biomedicine Science , Fudan University , Shanghai 200433 , China . Email:
Chem Sci. 2015 Mar 1;6(3):1825-1831. doi: 10.1039/c4sc03062a. Epub 2015 Jan 12.
A kind of fluorescent/phosphorescent dual-emissive conjugated polyelectrolyte has been prepared by introducing phosphorescent platinum(ii) porphyrin (O-sensitive) into a fluorene-based conjugated polyelectrolyte (O-insensitive), which can form ultrasmall conjugated polymer dots (FP-Pdots) in the phosphate buffer solution (PBS) self-assembly caused by their amphiphilic structures with hydrophobic backbones and hydrophilic side chains. These FP-Pdots can exhibit an excellent ratiometric luminescence response to O content with high reliability and full reversibility for measuring oxygen levels, and the excellent intracellular ratiometric O sensing properties of the FP-Pdots nanoprobe have also been confirmed by the evident change in the / ratio values in living cells cultured at different O concentrations. To confirm the reliability of the O sensing measurements of the FP-Pdots nanoprobe, O quenching experiments based on lifetime measurements of phosphorescence from Pt(ii) porphyrin moieties have also been carried out. Utilizing the sensitivity of the long phosphorescence lifetime from Pt(ii) porphyrins to oxygen, the FP-Pdots have been successfully applied in time-resolved luminescence imaging of intracellular O levels, including photoluminescence lifetime imaging and time-gated luminescence imaging, which will evidently improve the sensing sensitivity and reliability. Finally, oxygen sensing experiments were successfully performed by luminescence imaging of tumor hypoxia in nude mice.
通过将磷光铂(II)卟啉(对氧敏感)引入芴基共轭聚电解质(对氧不敏感)中,制备了一种荧光/磷光双发射共轭聚电解质,由于其具有疏水主链和亲水侧链的两亲结构,该聚电解质在磷酸盐缓冲溶液(PBS)中能自组装形成超小的共轭聚合物点(FP-Pdots)。这些FP-Pdots对氧含量可表现出优异的比率发光响应,用于测量氧水平具有高可靠性和完全可逆性,并且通过在不同氧浓度下培养的活细胞中I/II比率值的明显变化,也证实了FP-Pdots纳米探针优异的细胞内比率氧传感特性。为了确认FP-Pdots纳米探针氧传感测量的可靠性,还基于对Pt(II)卟啉部分磷光寿命的测量进行了氧猝灭实验。利用Pt(II)卟啉长磷光寿命对氧的敏感性,FP-Pdots已成功应用于细胞内氧水平的时间分辨发光成像,包括光致发光寿命成像和时间门控发光成像,这将显著提高传感灵敏度和可靠性。最后,通过裸鼠肿瘤缺氧的发光成像成功进行了氧传感实验。