Gustafsson Camilla, Shirani Hamid, Leira Petter, Rehn Dirk R, Linares Mathieu, Nilsson K Peter R, Norman Patrick, Lindgren Mikael
Department of Theoretical Chemistry and Biology, School of Engineering Sciences in Chemistry, Biotechnology and Health KTH Royal Institute of Technology, 106 91, Stockholm, Sweden.
Division of Chemistry, Department of Physics, Chemistry and Biology Linköping University, 581 83, Linköping, Sweden.
Chemphyschem. 2021 Feb 3;22(3):323-335. doi: 10.1002/cphc.202000669. Epub 2020 Dec 23.
Anionic pentameric thiophene acetates can be used for fluorescence detection and diagnosis of protein amyloid aggregates. Replacing the central thiophene unit by benzothiadiazole (BTD) or quinoxaline (QX) leads to large emission shifts and basic spectral features have been reported [Chem. Eur. J. 2015, 21, 15133-13137]. Here we present new detailed experimental results of solvent effects, time-resolved fluorescence and examples employing multi-photon microscopy and lifetime imaging. Quantum chemical response calculations elucidate how the introduction of the BTD/QX groups changes the electronic states and emissions. The dramatic red-shift follows an increased conjugation and quinoid character of the π-electrons of the thiophene backbone. An efficient charge transfer in the excited states S and S compared to the all-thiophene analogue makes these more sensitive to the polarity and quenching by the solvent. Taken together, the results guide in the interpretation of images of stained Alzheimer disease brain sections employing advanced fluorescence microscopy and lifetime imaging, and can aid in optimizing future fluorescent ligand development.
阴离子五聚噻吩乙酸酯可用于蛋白质淀粉样聚集体的荧光检测和诊断。用苯并噻二唑(BTD)或喹喔啉(QX)取代中心噻吩单元会导致发射大幅位移,并且已报道了基本光谱特征[《欧洲化学杂志》2015年,21卷,15133 - 13137页]。在此,我们展示了关于溶剂效应、时间分辨荧光的新的详细实验结果,以及采用多光子显微镜和寿命成像的示例。量子化学响应计算阐明了BTD/QX基团的引入如何改变电子态和发射。与全噻吩类似物相比,显著的红移伴随着噻吩主链π电子共轭和醌型特征的增加。与全噻吩类似物相比,激发态S和S中有效的电荷转移使得这些对溶剂的极性和猝灭更敏感。综合来看,这些结果有助于解释使用先进荧光显微镜和寿命成像对阿尔茨海默病脑切片进行染色的图像,并有助于优化未来荧光配体的开发。