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Sensitive detection of cardiac troponin-I protein using fabricated piezoresistive microcantilevers by a novel method of asymmetric biofunctionalization

机译:用新型的不对称生物官能化方法使用制造的压阻微电管敏感检测心肌肌钙蛋白-I蛋白

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摘要

Microcantilever-based sensor platform has attracted a lot of attention over the time in detection of a variety of molecules due to their miniaturized dimensions. Sensitivity enhancement is an important aspect of such sensors, especially when used for point-of-care diagnostic purpose. However, the major concern while operating these sensors in deflection mode is their sensitivity which mainly relies on selective chemical modification protocols employed on these sensor surfaces. One of the ways of getting better sensitivity is through asymmetric (one side) biofunctionalization of the sensor surface. In the presented work here, we have demonstrated a novel approach of asymmetric biofunctionalization of proteins in overall sensitivity enhancement of piezoresistive silicon nitride-oxide microcantilever sensor platform inside a flow chamber. Herein, using our developed surface chemistry, asymmetrically biofunctionalized microcantilevers first exhibited a greater electrical response in terms of piezoresistance change than their symmetric counterpart in the detection of human immunoglobulins (HIgGs) protein. Finally, these microcantilevers were employed to exhibit the enhanced sensitivity towards the detection of a crucial cardiac marker protein, i.e. Troponin-I (cTnI) down to 250 ng ml(-1) using asymmetric biofunctionalization process. This study shows that the developed asymmetric biofunctionalization methodology may be used as a general protocol to detect other important biomarkers of clinical applications with improved sensitivity.
机译:由于其小型化尺寸,微静电传感器的传感器平台在检测各种分子的时间内引起了很多关注。灵敏度增强是这种传感器的一个重要方面,特别是在用于护理点诊断目的时。然而,在偏转模式下操作这些传感器的主要问题是它们的灵敏度,主要依赖于这些传感器表面上采用的选择性化学改性方案。获得更好敏感性的方式之一是通过传感器表面的不对称(一侧)生物功能化。在此处的工作中,我们已经证明了一种新颖的蛋白质不对称生物官能化的新型敏感性增强的流量室内压阻硅氮化硅氧化物微电子传感器平台的整体敏感性增强。这里,使用我们所发育的表面化学,不对称的生物功能化微电子首先在对对称对应于检测人免疫球蛋白(HIGGS)蛋白的对称对应方面表现出更大的电气响应。最后,使用这些微膜剂在使用不对称生物官能化过程中表现出对检测至关重要的心脏标志物蛋白的增强的敏感性,即肌钙蛋白-i(CTNI)下至250ng(-1)。该研究表明,发达的不对称生物功能化方法可以用作检测临床应用的其他重要生物标志物,具有改善的灵敏度。

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