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首页> 外文期刊>Journal of analytical chemistry >Lactose tailored boronic acid conjugated fluorescent gold nanoclusters for turn-on sensing of dopamine
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Lactose tailored boronic acid conjugated fluorescent gold nanoclusters for turn-on sensing of dopamine

机译:乳糖量身定制的硼酸共轭荧光金纳米纳米多巴胺的开启感应

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摘要

Dopamine being a neurotransmitter and chemical messenger plays a vivacious role in a number of significant medical conditions like Parkinson's disease, Attention Deficit Hyperactivity Disorder, Schizophrenia, and drug addiction. As turn-on sensors have a superior level of selectivity than fluorescence quenching based sensors, we developed a fluorescence retrieval strategy for dopamine sensing. Here, highly fluorescent amino phenyl boronic acid (APBA)aEuro'conjugated gold nanocluster (AuaEuro'BSAaEuro'APBA probe) has been synthesised from bovine serum albuminaEuro'protected gold nanocluster (AuaEuro'BSA NCs). Boronic acid forms boronate ester with disaccharides such as lactose due to its affinity to polyols. Hence fluorescence of AuaEuro'BSAaEuro'APBA probe is quenched when it binds with lactose molecules through boronate ester formation. The fluorescence of AuaEuro'BSAaEuro'APBAaEuro'lactose system can be retrieved (turn-on) with dopamine by the competitive displacement of lactose from the probe surface which suggests the higher affinity of boronic acid to the catechol group of dopamine. Furthermore, real samples spiked with dopamine including human serum and urine were analysed using this turn-on sensor and showed excellent recovery percentage. The developed fluorescent sensor offered high selectivity for dopamine over other catecholamines and aminoacids with detection limit as low as 0.7 mu M.
机译:多巴胺是神经递质和化学信使在许多重要的医疗条件下起着活泼的作用,如帕金森病,注意力缺陷多动障碍,精神分裂症和吸毒成瘾。由于开启传感器具有比荧光猝灭的传感器更优越的选择性,我们开发了用于多巴胺感测的荧光检索策略。这里,高荧光氨基苯基硼酸(APBA)Aeuro'concogated金纳米纳米蛋白(Auaeuro'BSaaeuro'apba探针)已从牛血清alβαα保护的金纳米蛋白(Auaeuro'BSA NCs)中合成。硼酸与二糖形成硼酸酯,例如乳糖,由于其对多元醇的亲和力。因此,当通过硼酸酯形成与乳糖分子结合时,猝灭的荧光荧光。通过从探针表面的乳糖的竞争性位移可以检索αAeuro'BSaaeuro'apbaaeuro'Apbaaeuro'Apbaaeuro'AuctoseSystem的荧光,这表明硼酸对多巴胺的儿茶酚基团的亲和力较高。此外,使用该导通传感器分析与包括人血清和尿液在内的多巴胺掺入的真实样品,并显示出优异的恢复百分比。发达的荧光传感器在其他儿茶酚胺和氨基酸上为多巴胺提供了高选择性,检测极限低至0.7μm。

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