An Integrated Photonic Biosensing Platform for Pathogen Detection in Aquaculture

Author:

Knoben Wout1,Graf Siegfried2ORCID,Borutta Florian3ORCID,Tegegne Zerihun4,Ningler Michael5,Blom Arthur1ORCID,Dam Henk1,Evers Kevin1ORCID,Schonenberg Rens1,Schütz-Trilling Anke1,Veerbeek Janneke1ORCID,Arnet Roman2,Fretz Mark2,Revol Vincent2,Valentin Thomas2,Bridges Christopher R.3,Schulz Stephan K.3,van Kerkhof Joost4,Leenstra Anne4,Orujov Farid4,van Middendorp Henk1

Affiliation:

1. Surfix Diagnostics, Agro Business Park 2, 6708 PW Wageningen, The Netherlands

2. CSEM, Untere Gründlistrasse 1, 6055 Alpnach, Switzerland

3. TunaTech GmbH, Merowingerplatz 1A, 40225 Düsseldorf, Germany

4. PHIX Photonics Assembly, Hengelosestraat 525, 7521 AG Enschede, The Netherlands

5. LRE Medical GmbH, Georg-Brauchle-Ring 89, 80992 München, Germany

Abstract

Aquaculture is expected to play a vital role in solving the challenge of sustainably providing the growing world population with healthy and nutritious food. Pathogen outbreaks are a major risk for the sector, so early detection and a timely response are crucial. This can be enabled by monitoring the pathogen levels in aquaculture facilities. This paper describes a photonic biosensing platform based on silicon nitride waveguide technology with integrated active components, which could be used for such applications. Compared to the state of the art, the current system presents improvements in terms of miniaturization of the Photonic Integrated Circuit (PIC) and the development of wafer-level processes for hybrid integration of active components and for material-selective chemical and biological surface modification. Furthermore, scalable processes for integrating the PIC in a microfluidic cartridge were developed, as well as a prototype desktop readout instrument. Three bacterial aquaculture pathogens (Aeromonas salmonicida, Vagococcus salmoninarum, and Yersinia ruckeri) were selected for assay development. DNA biomarkers were identified, corresponding primer-probe sets designed, and qPCR assays developed. The biomarker for Aeromonas was also detected using the hybrid PIC platform. This is the first successful demonstration of biosensing on the hybrid PIC platform.

Funder

European Union

Publisher

MDPI AG

Reference39 articles.

1. Applications of Commercial Biosensors in Clinical, Food, Environmental, and Biothreat/Biowarfare Analyses;Bahadir;Anal. Biochem.,2015

2. (2024, June 11). United Nations Sustainable Development Goals (SDGs). Available online: https://sdgs.un.org/goals.

3. FAO (2022). The State of World Fisheries and Aquaculture 2022. Towards Blue Transformation, FAO.

4. The Many Challenges of Disease Management in Aquaculture;Cain;J. World Aquac. Soc.,2022

5. Factors Influencing Production Loss in Salmonid Farming;Pincinato;Aquaculture,2021

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