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含杂环芳基侧链的新型丙氨酸:具有生物相关性的金属阳离子荧光化学传感研究与合成。

Novel alanines bearing a heteroaromatic side chain: synthesis and studies on fluorescent chemosensing of metal cations with biological relevance.

机构信息

Centre of Chemistry, University of Minho, Campus of Gualtar, 4710-057, Braga, Portugal.

出版信息

Amino Acids. 2018 Jun;50(6):671-684. doi: 10.1007/s00726-018-2549-z. Epub 2018 Mar 12.

Abstract

A family of novel thienylbenzoxazol-5-yl-L-alanines, consisting of an alanine core bearing a benzoxazole at the side chain with a thiophene ring at position 2, substituted with different (hetero)aryl substituents, was synthesised to study the tuning of the photophysical and chemosensory properties of the resulting compounds. These novel heterocyclic alanines 3a-f and a series of structurally related bis-thienylbenzoxazolyl-alanines 3g-j were evaluated for the first time in the recognition of selected metal cations with environmental, medicinal and analytical interest such as Co, Cu, Zn and Ni, in acetonitrile solution, with the heterocycles at the side chain acting simultaneously as the coordinating and reporting units, via fluorescence changes. This behaviour can be explained by the involvement of the electron donor heteroatoms in the recognition event, through complexation of the metal cations. The spectrofluorimetric titrations showed that thienylbenzoxazolyl-alanines 3a-j and 4a,b were non-selective fluorimetric chemosensors for the above-mentioned cations, with the best results being obtained for the interaction of Cu with bis-alanine 3j and deprotected alanines 4a,b. The encouraging photophysical and metal ion sensing properties of these thienylbenzoxazolyl-alanines suggest that they can be used to obtain bioinspired fluorescent reporters for metal ion such as peptides/proteins with chemosensory/probing ability.

摘要

一种新型的噻吩基苯并恶唑-5-基-L-丙氨酸家族,由一个丙氨酸核心组成,侧链上带有苯并恶唑,在 2 位带有噻吩环,取代不同的(杂)芳基取代基,被合成以研究所得化合物的光物理和化学传感性质的调节。这些新型杂环丙氨酸 3a-f 和一系列结构相关的双噻吩基苯并恶唑基-丙氨酸 3g-j 在识别具有环境、医学和分析兴趣的选定金属阳离子方面首次进行了评估,例如 Co、Cu、Zn 和 Ni,在乙腈溶液中,侧链上的杂环同时作为配位和报告单元,通过荧光变化。这种行为可以通过电子供体杂原子参与识别事件来解释,通过金属阳离子的络合。光谱荧光滴定表明,噻吩基苯并恶唑基-丙氨酸 3a-j 和 4a,b 是非选择性荧光化学传感器,用于上述阳离子,与 bis-alanine 3j 和去保护丙氨酸 4a,b 的 Cu 相互作用的结果最好。这些噻吩基苯并恶唑基-丙氨酸具有令人鼓舞的光物理和金属离子传感性质,表明它们可用于获得具有化学传感/探测能力的肽/蛋白质等金属离子的生物灵感荧光报告物。

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