Fu Nina, Wang Yijiao, Liu Dan, Zhang Caixia, Su Shao, Bao Biqing, Zhao Baomin, Wang Lianhui
Key Laboratory for Organic Electronics and Information Displays & Institute of Advanced Materials (IAM), Jiangsu National Synergetic Innovation Center for Advanced Materials (SICAM), Nanjing University of Posts & Telecommunications, 9 Wenyuan Road, Nanjing 210023, China.
Polymers (Basel). 2017 Jun 15;9(6):227. doi: 10.3390/polym9060227.
A novel cationic water-soluble conjugated polyelectrolyte (CPE) of polyfluorene that contains 15% fraction of 2,1,3-benzothiadiazole (BT) units (PFC3NBT) has been obtained. PFC3NBT demonstrates intramolecular energy transfer from the fluorene segments to BT sites when negatively charged species (SDS or DNAs) are added, following by a shift in emission color from blue to green, has been developed. The high density of positive charges and pendent short alkyl chains of -propyltrimethylammoniums endow PFC3NBT with high solubility and high fluorescence quantum efficiency of 33.6% in water. The fluorescence emission properties were investigated in the presence of adverse buffer solutions, different surfactants and DNA strands. Interesting fluorescence emission quenching at short wavelength and fluorescence resonance energy transfer (FRET) induced light-on at BT sites were observed and discussed in detail. Very different from previous reports, the fluorescence emission spectra transition happens with an enhancement of integrated fluorescent intensity. The analytes induced a light-up sensing system was studied with a PFC3NBT/SDS complex mode and confirmed with DNA/DNA-FAM sensing systems. More exciting preliminary results on label-free sensing of tumor markers were also reported by investigating the unique fluorescence response to 11 kinds of proteins. These results provide a new insight view for designing CPEs with light-up and label-free features for biomolecular sensing.
已制备出一种新型的含15% 2,1,3-苯并噻二唑(BT)单元的聚芴阳离子水溶性共轭聚电解质(CPE)(PFC3NBT)。当加入带负电的物质(十二烷基硫酸钠或DNA)时,PFC3NBT表现出从芴链段到BT位点的分子内能量转移,随后发射颜色从蓝色变为绿色。-丙基三甲基铵的高密度正电荷和侧链短烷基赋予PFC3NBT高水溶性和在水中33.6%的高荧光量子效率。在存在不利缓冲溶液、不同表面活性剂和DNA链的情况下研究了其荧光发射特性。观察并详细讨论了在短波长处有趣的荧光发射猝灭以及在BT位点诱导的荧光共振能量转移(FRET)引发的光开启现象。与先前报道非常不同的是,荧光发射光谱转变伴随着积分荧光强度的增强。以PFC3NBT/十二烷基硫酸钠复合模式研究了分析物诱导的发光传感系统,并用DNA/DNA-FAM传感系统进行了证实。通过研究对11种蛋白质的独特荧光响应,还报道了关于肿瘤标志物无标记传感的更令人兴奋的初步结果。这些结果为设计具有发光和无标记特征的用于生物分子传感的CPEs提供了新的见解。