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All-in-one platform for salivary cotinine detection integrated with a microfluidic channel and an electrochemical biosensor

机译:用于微流体通道和电化学生物传感器的一体化唾液类含有细胞素检测的一体化平台

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摘要

Medical disorders caused by second-hand smoke are a major public health concern worldwide. To estimate the level of second-hand smoke exposure, salivary diagnostics for cotinine analysis is a compelling alternative in conventional diagnostics using bio-fluids, such as blood and urine, owing to its simple and non-invasive collection method. However, there are several critical issues, such as tedious multisteps, demand for expertise, and field unavailability to collect and transport the purified saliva for further analysis. Here, an all-in-one platform is presented to simply collect real human saliva and directly deliver it onto the biosensing surface. The platform consists of a commercial cotton-swab-type collector, 3D-printed housing, and microfluidic channel integrated with an electrochemical competitive immunosensor to evaluate the level of salivary cotinine. The immunosensor is based on a competitive binding assay between cotinine-conjugated horseradish peroxidase (C-HRP) and cotinine for anti-cotinine binding sites. The current responses obtained from the HRP-thionine-H2O2 system decreased proportionally to the cotinine concentration. This immunosensor successfully detected its target over a range of 1 x 10(-1) to 1 x 10(4) pg ml(-1) with a low limit of detection of 6 x 10(-2) pg ml(-1) and a limit of quantification of 1 x 10(-1) pg ml(-1). In addition, the platform is applicable to various commercial cotton-swab-type saliva collectors and can successfully transfer the saliva in wide flow rates ranging from 0.1 to 30 ml min(-1) without leakage or damage to the sensing surface. Furthermore, the practicality of the proposed platform was evaluated by measuring cotinine in real human saliva from eight non-smokers. The concentration of cotinine was from 45.7 to 890.8 pg ml(-1), which was in good agreement with that measured by liquid chromatography-tandem mass spectrometry (LC-MS/MS). The introduced all-in-one platform represented a reliable performance delivering simple and practical steps in salivary diagnostics.
机译:二手烟造成的医学障碍是全球主要的公共卫生问题。为了估算二手烟雾暴露的水平,唾液诊断为Cotinine分析是使用生物流体(如血液和尿液)的常规诊断中的引人注目的替代方案。然而,有几个关键问题,例如繁琐的多学期,对专业知识的需求,以及收集和运输纯化的唾液的现场不可用,以进行进一步分析。在这里,提出了一体化平台以简单地收集真正的人类唾液,并直接将其递送到生物传感表面上。该平台由商用棉签型集电体,3D印刷外壳和微流体通道组成,与电化学竞争免疫传感器集成,以评估唾液类含量水平。免疫传感器基于Cotinine缀合的辣根过氧化物酶(C-HRP)与抗Cotinine结合位点的胞苷之间的竞争性结合测定。从HRP-zhiomine-H2O2系统获得的当前响应比成比地降低到Cotinine浓度。这种免疫传感器在1×10(-1)至1×10(4)pg ml(-1)的范围内成功地检测到其目标,其检测限为6×10(-2)pg ml(-1)和定量限制为1×10(-1)pg ml(-1)。此外,该平台适用于各种商业棉签型唾液收集器,可以成功将唾液转移到0.1至30mL min(-1)的宽流速,而不会泄漏或损坏传感表面。此外,通过从八个非吸烟者测量真正的人类唾液中的胞苷来评估所提出的平台的实用性。胞苷的浓度为45.7至890.8 pg ml(-1),其与通过液相色谱 - 串联质谱(LC-MS / MS)测量的良好一致。介绍的一体化平台代表了一种可靠的性能,在唾液诊断中提供了简单实际的步骤。

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