首页> 外文期刊>Chemistry - A European Journal >Simple Biosensor with High Selectivity and Sensitivity: Thiol-Specific Biomolecular Probing and Intracellular Imaging by AIE Fluorogen on a TLC Plate through a Thiol–Ene Click Mechanism†
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Simple Biosensor with High Selectivity and Sensitivity: Thiol-Specific Biomolecular Probing and Intracellular Imaging by AIE Fluorogen on a TLC Plate through a Thiol–Ene Click Mechanism†

机译:具有高选择性和灵敏度的简单生物传感器:硫醇特异性生物分子探测和AIE氟在TLC板上通过硫醇-烯点击机制进行细胞内成像†

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摘要

A handy, specific, sensitive bioprobe has been developed. Tetraphenylethene (TPE) was functionalized by a maleimide (MI) group, giving a TPE-MI adduct that was nonemissive in both solution and the solid state. It was readily transformed into a fluorogen showing an aggregation-induced emission (AIE) property by the click addition of thiol to its MI pendant. The click reaction and the AIE effect enabled TPE-MI to function as a thiol-specific bioprobe in the solid state. Thus, the spot of TPE-MI on a TLC plate became emissive when it had been exposed to L-cysteine, an amino acid containing a thiol group, but remained nonemissive when exposed to other amino acids that lack free thiol units. The thiol-activated emission was rapid and strong, readily detected by the naked eye at an analyte concentration as low as approximately 1 ppb, thanks to the “lighting up” nature of the bioprobing process. Similarly, the emission of TPE-MI was turned on only by the proteins containing free thiol units, such as glutathione. Clear fluorescence images were taken when living cells were stained by using TPE-MI as a visualization agent, affording a facile fluorescent maker for mapping the distribution of thiol species in cellular systems.
机译:已经开发了一种方便,特异性,灵敏的生物探针。通过马来酰亚胺(MI)基团将四苯乙烯(TPE)官能化,得到在溶液和固态均不存在的TPE-MI加合物。通过将硫醇点击加成到MI侧基上,很容易将其转变为显示出聚集诱导发射(AIE)特性的氟。点击反应和AIE效应使TPE-MI可以在固态状态下用作硫醇特异性生物探针。因此,当TPE-MI暴露于L-半胱氨酸(一种含有巯基的氨基酸)时,TLC板上的TPE-MI斑点开始发光,而暴露于缺少游离硫醇单元的其他氨基酸时则不再发光。由于生物探测过程的“点亮”特性,硫醇活化的排放快速而强劲,可以用肉眼在低至约1 analyteppb的分析物浓度下轻松检测到。类似地,仅通过含有游离硫醇单元的蛋白质(例如谷胱甘肽)来开启TPE-MI的发射。通过使用TPE-MI作为显像剂对活细胞进行染色,可以拍摄清晰的荧光图像,从而提供了一种简便的荧光标记物,可绘制出细胞系统中硫醇的分布图。

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