Rapid and Portable Gold Nanoparticle-Based Nanosensors for Vibrio spp. Detection from Aquaculture Water and Fish Tissues

Page view(s)
0
Checked on
Rapid and Portable Gold Nanoparticle-Based Nanosensors for Vibrio spp. Detection from Aquaculture Water and Fish Tissues
Title:
Rapid and Portable Gold Nanoparticle-Based Nanosensors for Vibrio spp. Detection from Aquaculture Water and Fish Tissues
Journal Title:
ACS Applied Nano Materials
Publication Date:
31 March 2026
Citation:
Aung, K. M. M., Sutarlie, L., & Su, X. (2026). Rapid and Portable Gold Nanoparticle-Based Nanosensors for Vibrio spp. Detection from Aquaculture Water and Fish Tissues. ACS Applied Nano Materials, 9(14), 6070–6079. https://doi.org/10.1021/acsanm.5c04984
Abstract:
Multiple species of Vibrio bacteria (Vibrio spp.) are pathogenic and can cause mortality to aquaculture organisms. Current Vibrio detection relies on bacteria plate count or molecular methods, both requiring sophisticated laboratory facilities and prolonged processes. We have developed a gold nanoparticle (AuNP)-based “Filter-and-Stain” and “Swab-and-Stain” methods for rapid and on-site detection of Vibrio spp. from aquaculture water and solid/semisolid fish tissues, respectively. An anti-Vibrio DNA aptamer with a generic selectivity to four prominent Vibrio species was conjugated to 13 nm AuNPs (Apt-AuNPs) as plasmonic nanostains. In the “Filter-and-Stain” method, water samples were filtered through a polyvinylidene fluoride (PVDF) syringe filter (0.22 μm pore size), followed by addition of the Apt-AuNPs solution. The selective binding of the Apt-AuNPs to the Vibrio cells captured by the membrane can be detected by the stain color, which is further amplified by a gold deposition reaction. A home-built hand-held optical detector was used to quantify the stain intensity for quantification of Vibrio spp. with a LOD of 14 CFU/mL within 30 min assay time. For fish tissues, on the other hand, the “Swab-and-Stain” method was used, where anti-Vibrio antibody-modified cotton swabs capture Vibrio cells from homogenized tissue samples, followed by Apt-AuNPs staining of the captured Vibrio cells (forming a sandwiched complex) and gold deposition. The stain intensity on the swabs, quantified by mobile phone image analysis, enabled a binary assessment of the Vibrio presence (“yes” or “no”) at a cutoff concentration of 100 CFU/mL in 30 min. Twenty-five fish tank water samples and six fish kidney samples were used to validate the methods, relative to Vibrio selective Thiosulfate Citrate Bile salts Sucrose (TCBS) agar plate count.
License type:
Publisher Copyright
Funding Info:
This research / project is supported by the Agency of Science, Technology and Research (A*STAR) - GAP
Grant Reference no. : ACCL/19-GAP071-R20A
Description:
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ACS Applied Nano Materials, copyright © American Chemical Society after peer review and technical editing by the publisher. To access the final edited and published work see https://doi.org/10.1021/acsanm.5c04984.
ISSN:
2574-0970
Files uploaded:


File Size Format Action
an-2025-04984sr2-17-mar-2026.pdf 1.67 MB PDF Request a copy
revised-si-an-2025-04984sr2-16-mar-2026.pdf 1.12 MB PDF Request a copy