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Colorimetric chiral discrimination of lysine enantiomers and configurable logic gate operation based on fluorescein-functionalized polydiacetylene vesicles

机译:基于荧光素官能化多二乙烯基囊泡的赖氨酸对映异构体的比色手套鉴别和可配置的逻辑栅操作

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摘要

The chiral recognition of amino acid enantiomers is of great significance owing to the fact that l-type amino acids act as the basic chiral elements of the molecular architecture of proteins. In this study, a novel and simple colorimetric chiral sensor based on fluorescein-substituted polydiacetylene (FPDA) vesicles was developed. Due to their different complexing abilities with Cu2+ ions, FPDA vesicles and lysine enantiomers, the above hybrid PDA vesicle sensors allow practical chiral discrimination of lysine. Moreover, with two defined stimulus conditions from each of the parameters pH, Cu2+ ion, d- or l-lysine, the hybrid FPDA vesicles were used to construct two basic "AND" and "OR" logic operations successfully. These logic gate operations, which are based on colorimetric conjugated polymers and can discriminate chiral enantiomers, may provide new opportunities for chiral sensing and information storage in complicated microenvironments.
机译:由于L型氨基酸作为蛋白质的分子结构的基本手性元素,氨基酸对映体的手性识别具有重要意义。 在该研究中,开发了一种基于荧光素取代的多二乙烯(FPDA)囊泡的新型和简单的比色手性传感器。 由于其与Cu2 +离子,FPDA囊泡和赖氨酸对映体的不同络合能力,上述杂交PDA囊泡传感器允许赖氨酸的实际手性鉴别。 此外,通过来自每个参数pH,Cu 2 +离子,D-或L-赖氨酸的两个定义的刺激条件,使用混合FPDA囊泡来构建两个基本的“和”和“或”逻辑操作。 这些基于比色缀合聚合物和可以区分手性对映体的这些逻辑栅极操作可以为复杂的微环境中的手性感和信息储存提供新的机会。

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