Lin Zi-Yang, Han Xin-Yue, Chen Zi-Han, Shi Guoyue, Zhang Min
School of Chemistry and Molecular Engineering, Shanghai Key Laboratory for Urban Ecological Processes and Eco-Restoration, East China Normal University, 500 Dongchuan Road, Shanghai 200241, China.
J Mater Chem B. 2018 Nov 14;6(42):6877-6883. doi: 10.1039/c8tb02353k. Epub 2018 Oct 12.
Thiols play a crucial role in various biological processes, and the discrimination of thiols in biofluids is a significant but difficult issue. Herein, a facile label-free non-invasive fluorescent sensor array has been presented based on PDA/PEI-Cu in three different pH buffer solutions for pattern discrimination of thiols and chiral recognition of cysteine (Cys) enantiomers in biofluids toward health monitoring. The proposed sensor array was fabricated based on the fact that Cu has a strong affinity toward thiols, which prevents Cu from binding PDA/PEI, and the fluorescence properties of PDA/PEI were recovered to a certain degree. Different thiols exhibited different affinities toward Cu, generating distinct fluorescence response patterns. These response patterns are characteristic for each thiol and can be discriminated by principal component analysis (PCA). In this work, three types of PDA/PEI-Cu sensors (PDA/PEI-Cu , PDA/PEI-Cu and PDA/PEI-Cu ) were prepared by using acetate buffer with different pHs (at 4, 4.5, and 5) to form our proposed sensor array, which could realize the pattern discrimination of 8 thiols. Moreover, we successfully realized the sensitivity and selectivity assays to these thiols. Furthermore, the proposed sensor array could discriminate mixtures of thiols as well as the chiral recognition of mixtures of Cys enantiomers, promising its potential practical usage. Significantly, the resultant practical application in real samples showed that it could be a fascinating assay for the development of non-invasive diagnosis. This method promises the facile, sensitive and powerful discrimination of thiols in biofluids and would sprout more relevant strategies toward a broad range of applications.
硫醇在各种生物过程中发挥着关键作用,而生物流体中硫醇的鉴别是一个重要但困难的问题。在此,基于聚多巴胺/聚乙烯亚胺-铜(PDA/PEI-Cu)在三种不同pH缓冲溶液中构建了一种简便的无标记非侵入式荧光传感器阵列,用于生物流体中硫醇的模式鉴别以及半胱氨酸(Cys)对映体的手性识别,以实现健康监测。所提出的传感器阵列是基于铜对硫醇具有强亲和力这一事实构建的,这会阻止铜与聚多巴胺/聚乙烯亚胺结合,从而使聚多巴胺/聚乙烯亚胺的荧光特性在一定程度上得以恢复。不同的硫醇对铜表现出不同的亲和力,产生不同的荧光响应模式。这些响应模式对每种硫醇来说都是独特的,并且可以通过主成分分析(PCA)进行鉴别。在这项工作中,通过使用不同pH值(4、4.5和5)的醋酸盐缓冲液制备了三种类型的聚多巴胺/聚乙烯亚胺-铜传感器(PDA/PEI-Cu 、PDA/PEI-Cu 和PDA/PEI-Cu ),以形成我们所提出的传感器阵列,该阵列能够实现8种硫醇的模式鉴别。此外,我们成功实现了对这些硫醇的灵敏度和选择性测定。此外,所提出的传感器阵列能够鉴别硫醇混合物以及半胱氨酸对映体混合物的手性识别,显示出其潜在的实际应用价值。值得注意的是,在实际样品中的实际应用结果表明,它可能是一种用于无创诊断发展的极具吸引力的检测方法。该方法有望实现生物流体中硫醇的简便、灵敏且强大的鉴别,并将催生更多适用于广泛应用的相关策略。