A simple and selective electrochemical magneto-assay for sea lice eDNA detection developed with a Quality by Design approach

Overview
TitleA simple and selective electrochemical magneto-assay for sea lice eDNA detection developed with a Quality by Design approach
AuthorsBettazzi F, Orlandini S, Zhang L, Laschi S, Nilsen MM, Krolicka A, Baussant T, Palchetti I
TypeJournal Article
Journal NameThe Science of the total environment
Volume791
IssueN/A
Year2021
Page(s)148111
CitationBettazzi F, Orlandini S, Zhang L, Laschi S, Nilsen MM, Krolicka A, Baussant T, Palchetti I. A simple and selective electrochemical magneto-assay for sea lice eDNA detection developed with a Quality by Design approach. The Science of the total environment. 2021 Jun 01; 791:148111.

Abstract

Environmental DNA (eDNA) is a novel, non-invasive sampling procedure that allows the obtaining of genetic material directly from environmental samples without any evidence of biological sources. The eDNA methodology can greatly benefit from coupling it to reliable, portable and cost-effective tools able to perform decentralized measurements directly at the site of need and in resource-limited settings. Herein, we report a simple method for the selective analysis of eDNA using a magneto-assay with electrochemical detection. The proposed method involves the polymerase chain-reaction (PCR) amplification of mitochondrial eDNA of parasitic Salmon lice (Lepeophtheirus salmonis), extracted from seawater samples. The eDNA sequence was targeted via sandwich hybridization onto magnetic beads and enzymatic labeling was performed to obtain an electroactive product measured by differential pulse voltammetry. Quality by Design (QbD), a recent concept of science- and risk-oriented quality paradigm, was used for the optimization of the different parameters of the assay. Response surface methodology and Monte Carlo simulations were performed to define the method operable design region. The optimized electrochemical magneto-assay attained a limit of detection of 2.9 amol μL

Properties
Additional details for this publication include:
Property NameValue
Publication ModelPrint-Electronic
ISSN1879-1026
eISSN1879-1026
Publication Date2021 Jun 01
Journal AbbreviationSci Total Environ
PIIS0048-9697(21)03182-X
Elocation10.1016/j.scitotenv.2021.148111
DOI10.1016/j.scitotenv.2021.148111
CopyrightCopyright © 2021 Elsevier B.V. All rights reserved.
LanguageEnglish
Language Abbreng
Publication TypeJournal Article
Journal CountryNetherlands
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DatabaseAccession
PMID: PMID:34119793