首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Thiol-chromene click chemistry: A coumarin-based derivative and its use as regenerable thiol probe and in bioimaging applications
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Thiol-chromene click chemistry: A coumarin-based derivative and its use as regenerable thiol probe and in bioimaging applications

机译:硫醇-色烯点击化学:一种基于香豆素的衍生物,及其作为可再生硫醇探针的用途以及在生物成像应用中的用途

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摘要

The synthesis and characterization of a coumarin-chromene (8, 9-dihydro-2H-cyclopenta[b]pyrano[2,3-f]chromene-2,10(7aH)-dione) (1) derivative and its use for thiol chemosensing in water was reported. Experimental details showed 1 acts as a probe for the detection of thiols including cysteine (Cys), homocysteine (Hcy) and glutathione (GSH), whereas amino acids which do not contain thiols induced no changes in UV-vis spectra and fluorescence emission properties of 1. A possible detection mechanism is a nucleophilic attack of thiols to the α,β-unsaturated ketone in 1 that resulted in a fluorescent coumarin derivative. Further studies showed that 1-thiol derivatives can be applied to the design of regenerative chemodosimeters for Cu~(2+), Hg~(2+) and Cd~(2+) in water based on M~(n+)-promoted desulfurization and recovery of 1. Furthermore, the optical properties of the probe and its Cys-addition product were theoretically studied. The ability of probe 1 to detect thiols in living cells (HepG2 cells) via an enhancement of the fluorescence was proved. Moreover, the applicability of 1 for the direct determination of biorelevant thiols in a complex matrix such as human plasma was also demonstrated.
机译:香豆素-色烯(8,9-二氢-2H-环戊[b]吡喃并[2,3-f]色烯-2,10(7aH)-二酮)(1)衍生物的合成与表征及其在硫醇中的用途据报道在水中进行化学传感。实验细节表明1可作为检测半胱氨酸(Cys),高半胱氨酸(Hcy)和谷胱甘肽(GSH)等巯基的探针,而不含巯基的氨基酸不会引起紫外可见光谱和荧光发射特性的变化。 1.一种可能的检测机制是巯基对1中的α,β-不饱和酮的亲核攻击,从而导致了荧光香豆素衍生物。进一步的研究表明,基于M〜(n +)促进的脱硫,1-硫醇衍生物可用于水中Cu〜(2 +),Hg〜(2+)和Cd〜(2+)的再生化学计量器的设计。 1的回收率和回收率。此外,还对探针及其Cys加成产物的光学性质进行了理论研究。证明了探针1通过增强荧光检测活细胞(HepG2细胞)中硫醇的能力。此外,还证明了1用于直接测定复杂基质(例如人血浆)中生物相关硫醇的适用性。

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