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首页> 外文期刊>Journal of solid state electrochemistry >Picomolar-sensitive impedimetric sensor for salivary calcium analysis at POC based on SAM of Schiff base-modified gold electrode
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Picomolar-sensitive impedimetric sensor for salivary calcium analysis at POC based on SAM of Schiff base-modified gold electrode

机译:基于Schiff碱基改性金电极的POC唾液钙分析Picomolar敏感阻力传感器

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摘要

Analysis of saliva is a potential diagnostic tool in the management of human diseases. Analysis of saliva in healthy individuals is vital to comparison in a diseased state. Salivary glandular secretion constantly bathes the teeth and oral mucosa. The presence of saliva is vital for healthy oral tissue. Positive correlation has been shown in salivary calcium and phosphate and oral health. We have developed a highly sensitive and selective impedimetric calcium sensor for its non-invasive determination in saliva. The sensor is based on 2-hydroxy-4-(2-oxo-1,2-diphenylethylidene)amino) benzoic acid ionophore; self-assembled monolayer (SAM) on gold electrode has been developed. The calcium sensor was constructed by SAM-Au formation of the compound developed by covalently attaching 4-aminothiophenol (ATP) to the ionophore molecule through amide bond formation between its amino group and the carboxylic group of the ionophore. Characterization of the SAM formation on the gold electrode was performed using cyclic voltammetry (CV) and electrochemical impedance spectroscopy (EIS). The modification of the gold electrode was confirmed by measuring the adhesion and surface morphology using contact angle (CA) measurements and SEM. EIS was used as the measuring technique; the sensor showed a linear analytical range (LR) of 5 x 10(-12)-1 x 10(-6) mol L-1 and a limit of detection (LOD) of 3.6 x 10(-12) mol L-1 calculated on the basis of 3 sigma/s and limit of quantification (LOQ) of 1.2 x 10(-11) mol L-1. Moreover, the sensor was found to exhibit high selectivity for Ca(2+)selectivity over a variety of common interfering ions. The impedance behavior of the proposed calcium sensor has been modeled by an equivalent electrical circuit using a modified Randles model. The covalent immobilization of the ionophore into the modified gold electrode was manifested in its prolonged stability. The sensor was utilized for the determination of calcium concentration in real samples of human saliva; therefore, we believe it is suitable for point of care (POC).
机译:唾液分析是人类疾病管理中的潜在诊断工具。在健康个体中的唾液分析对于患病状态至关重要。唾液腺分泌不断沐浴牙齿和口腔粘膜。唾液的存在对于健康口腔组织至关重要。唾液钙和磷酸盐和口腔健康中显示了阳性相关性。我们开发了一种高度敏感和选择性的阻碍钙传感器,用于其唾液中的非侵入性测定。传感器基于2-羟基-4-(2-氧代-1,2-二苯基乙烯)氨基)苯甲酸离子载体;已经开发出在金电极上的自组装单层(SAM)。通过通过在其氨基和离子载体的羧基之间共价将4-氨基噻吩醇(ATP)与离子键形成产生的化合物形成的化合物的组化合物构成钙传感器。使用循环伏安法(CV)和电化学阻抗光谱(EIS)进行金电极上的SAM形成的表征。通过使用接触角(CA)测量和SEM测量粘附和表面形态来确认金电极的修改。 EIS被用作测量技术;传感器显示为5×10(-12)-1×10(-6)摩尔L-1的线性分析范围(LR)和3.6×10(-12)摩尔L-1的检测极限(LOD)根据3 sigma / s的基础计算,并限制为1.2×10(-11)mol L-1。此外,发现传感器在各种常见的干扰离子上表现出对Ca(2+)选择性的高选择性。所提出的钙传感器的阻抗行为已经通过使用修改的Randles模型的等效电路建模。将离子载体的共价固定到改性金电极中的延长稳定性中表现出。该传感器用于测定人唾液的真正样品中的钙浓度;因此,我们认为它适用于护理点(POC)。

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