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描述一种有利的光学无标记生物传感干涉测量读出方法,用于测量生物物种。

Description of an advantageous optical label-free biosensing interferometric read-out method to measure biological species.

机构信息

Micro-nano Photonics and Biophotonics Group, Centro Láser and Centro de Tecnología Biomédica, Universidad Politécnica de Madrid, Av. Ramiro de Maeztu 7, Madrid 28040, Spain.

出版信息

Sensors (Basel). 2014 Feb 21;14(2):3675-89. doi: 10.3390/s140203675.

Abstract

In this article we report a new, simple, and reliable optical read-out detection method able to assess Rotavirus present in human sera as well as in the viral pollution sources. It is based on the interference of two interferometers used as biophotonic transducers. The method significantly improves the optical label-free biosensing response measuring both, the concentration of the AgR and its corresponding size. Two different immunoassays were carried out: Bovine Serum Albumin (BSA), and the recognition by its antibody (anti-BSA); and Rotavirus (AgR) and the recognition by its antibody (anti-AgR). In the cases studied, and using as model interferometer a simple Fabry-Perot transducer, we demonstrate a biosensing enhancement of two orders of magnitude in the Limit of Detection (LoD). In fact, this read-out optical method may have significant implications to enhance other optical label-free photonic transducers reported in the scientific literature.

摘要

在本文中,我们报告了一种新的、简单而可靠的光学读出检测方法,能够评估人血清和病毒污染源中的轮状病毒。它基于两个用作生物光子换能器的干涉仪的干扰。该方法通过测量 AgR 的浓度及其相应的大小,显著提高了光学无标记生物传感响应。进行了两种不同的免疫测定:牛血清白蛋白(BSA)及其抗体(抗 BSA)的识别;以及轮状病毒(AgR)及其抗体(抗 AgR)的识别。在研究的情况下,使用简单的法布里-珀罗换能器作为模型干涉仪,我们证明了检测限(LoD)提高了两个数量级的生物传感增强。事实上,这种读出光学方法可能对增强科学文献中报道的其他光学无标记光子换能器具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b26c/3958242/bbf5a1aeaac7/sensors-14-03675f1.jpg

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