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基于金纳米粒子增强荧光的用于即时尿液中免疫球蛋白分析的生物传感器。

Biosensor for Point-of-Care Analysis of Immunoglobulins in Urine by Metal Enhanced Fluorescence from Gold Nanoparticles.

机构信息

Dipartimento di Fisica Ettore Pancini , Università di Napoli Federico II , Via Cintia, 26 Ed. 6 , 80126 Napoli , Italy.

Dipartimento di Medicina Molecolare e Biotecnologie Mediche , Università di Napoli Federico II , Via Pansini 5 , 80131 Napoli , Italy.

出版信息

ACS Appl Mater Interfaces. 2019 Jan 30;11(4):3753-3762. doi: 10.1021/acsami.8b20501. Epub 2019 Jan 16.

Abstract

Biosensors are easy-to-use and cost-effective devices that are emerging as an attractive tool, not only in settling diagnosis or in disease monitoring, but also in mass screening tests, a timely topic that impacts on daily life of the whole society. Nanotechnologies lend themselves to the development of highly sensitive devices whose realization has become a very interdisciplinary topic. Relying on the enhancement of the fluorescence signal detected at the surface of patterned gold nanoparticles, we report the behavior of an analytical device in detecting immunoglobulins in real urine samples that shows a limit of detection of approximately 8 μg/L and a linear range of 10-100 μg/L well below the detection limit of nephelometric method, which is the reference method for this analysis. These performances have been reached thanks to an effective surface functionalization technique and can be improved even more if superydrophobic features of the substrate we produce will be exploited. Since the analyte recognition is realized by antibodies the specificity is very high and, in fact, no interference has been detected by other compounds also present in the real urine samples. The device has been assessed on serum samples by comparing IgG concentrations values obtained by the biosensor with those provided by a nephelometer. In this step we found that our approach allows the analysis of the whole blood without any pretreatment; moreover, it is inherently extendable to the analysis of most biochemical markers in biological fluids.

摘要

生物传感器易于使用且具有成本效益,它们作为一种有吸引力的工具正在出现,不仅在诊断或疾病监测方面,而且在大规模筛选测试方面也是如此,这是一个与时事相关的话题,会影响整个社会的日常生活。纳米技术可用于开发高度灵敏的设备,其实现已成为一个非常跨学科的课题。我们依靠在图案化金纳米粒子表面检测到的荧光信号增强,报告了一种分析设备在检测真实尿液样本中免疫球蛋白的行为,该设备的检测限约为 8 μg/L,线性范围为 10-100 μg/L,远低于比浊法的检测限,比浊法是该分析的参考方法。这些性能是通过有效的表面功能化技术实现的,如果我们所生产的基底具有超疏水特性,那么性能还可以进一步提高。由于分析物识别是通过抗体实现的,因此特异性非常高,实际上,在真实尿液样本中也没有检测到其他化合物的干扰。该设备通过将生物传感器获得的 IgG 浓度值与浊度计提供的值进行比较,在血清样本上进行了评估。在这一步中,我们发现我们的方法允许在无需任何预处理的情况下分析全血;此外,它可以固有地扩展到分析生物液中的大多数生化标志物。

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