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用于快速和多重检测猪病毒病的光子标记自由生物传感器。

Photonic Label-Free Biosensors for Fast and Multiplex Detection of Swine Viral Diseases.

机构信息

Nanophotonics Technology Center, Universitat Politècnica de València, 46022 València, Spain.

Lumensia Sensors S.L., 46022 València, Spain.

出版信息

Sensors (Basel). 2022 Jan 18;22(3):708. doi: 10.3390/s22030708.

Abstract

In this paper we present the development of photonic integrated circuit (PIC) biosensors for the label-free detection of six emerging and endemic swine viruses, namely: African Swine Fever Virus (ASFV), Classical Swine Fever Virus (CSFV), Porcine Reproductive and Respiratory Syndrome Virus (PPRSV), Porcine Parvovirus (PPV), Porcine Circovirus 2 (PCV2), and Swine Influenza Virus A (SIV). The optical biosensors are based on evanescent wave technology and, in particular, on Resonant Rings (RRs) fabricated in silicon nitride. The novel biosensors were packaged in an integrated sensing cartridge that included a microfluidic channel for buffer/sample delivery and an optical fiber array for the optical operation of the PICs. Antibodies were used as molecular recognition elements (MREs) and were selected based on western blotting and ELISA experiments to ensure the high sensitivity and specificity of the novel sensors. MREs were immobilized on RR surfaces to capture viral antigens. Antibody-antigen interactions were transduced via the RRs to a measurable resonant shift. Cell culture supernatants for all of the targeted viruses were used to validate the biosensors. Resonant shift responses were dose-dependent. The results were obtained within the framework of the SWINOSTICS project, contributing to cover the need of the novel diagnostic tools to tackle swine viral diseases.

摘要

本文介绍了用于检测六种新兴和地方性猪病毒的光子集成电路 (PIC) 生物传感器的开发,这些病毒包括:非洲猪瘟病毒 (ASFV)、猪瘟病毒 (CSFV)、猪繁殖与呼吸综合征病毒 (PPRSV)、猪细小病毒 (PPV)、猪圆环病毒 2 型 (PCV2) 和猪流感病毒 A (SIV)。光学生物传感器基于倏逝波技术,特别是基于氮化硅中制造的共振环 (RR)。新型生物传感器被封装在集成的感测盒中,该感测盒包括用于缓冲液/样品输送的微流道和用于 PIC 光学操作的光纤阵列。抗体被用作分子识别元件 (MRE),并基于 Western blot 和 ELISA 实验进行选择,以确保新型传感器具有高灵敏度和特异性。MRE 被固定在 RR 表面上以捕获病毒抗原。抗体-抗原相互作用通过 RR 传递到可测量的共振位移。针对所有靶向病毒的细胞培养上清液均用于验证生物传感器。共振位移响应与剂量有关。该结果是在 SWINOSTICS 项目的框架内获得的,有助于满足新型诊断工具对抗猪病毒性疾病的需求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf9b/8838678/cb1855a19314/sensors-22-00708-g001.jpg

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