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2.
Sci Total Environ ; 848: 157770, 2022 Nov 20.
Article in English | MEDLINE | ID: mdl-35926599

ABSTRACT

Weed resistance to glyphosate has been a driving force behind the increased use of alternative herbicides in agriculture. Recently, dicamba-tolerant recombinant plants were introduced to the market, which may result in residues of this agrochemical contaminating environmental waters. Given that restrictions on the use of dicamba have consequently been established by regulatory agencies, it is therefore also desirable to conduct extensive controls on dicamba residues. Immunoassays are currently the most powerful bioanalytical technology for the rapid monitoring of chemical residues and contaminants. In the present study, a novel hapten was designed maintaining unaltered all the antigenic moieties of the target molecule, and this was used to generate high-affinity monoclonal antibodies against dicamba for the first time. Additionally, a collection of haptens with different linker composition or linker tethering site was synthesized and conjugated to proteins. Using these novel immunoreagents, a direct competitive enzyme-linked immunosorbent assay with a limit of detection for dicamba of 0.24 ng/mL was developed and validated. Analysis of water samples from different origins afforded recovery values between 90 % and 120 %, and coefficients of variation below 20 % were obtained. These results indicate that the developed immunochemical assay is suitable for the rapid determination of dicamba residues in environmental water samples.


Subject(s)
Dicamba , Herbicides , Antibodies, Monoclonal , Dicamba/chemistry , Haptens/chemistry , Herbicides/chemistry , Immunoassay , Water
3.
Anal Chem ; 94(30): 10857-10864, 2022 08 02.
Article in English | MEDLINE | ID: mdl-35853613

ABSTRACT

Algal blooms that contaminate freshwater resources with cyanotoxins constitute, nowadays, a global concern. To deal with this problem, a variety of analytical methods, including immunochemical assays, are available for the main algal toxins, for example, microcystins, nodularins, and saxitoxins, with the remarkable exception of anatoxin-a. Now, for the first time, highly sensitive, enantioselective immunoassays for anatoxin-a have been validated using homemade monoclonal antibodies. Two competitive enzyme-linked immunosorbent assays were developed in different formats, with detection limits for (+)-anatoxin-a of 0.1 ng/mL. Excellent recovery values between 82 and 117%, and coefficients of variation below 20%, were observed using environmental water samples fortified between 0.5 and 500 ng/mL. In addition, a lateral-flow immunochromatographic assay was optimized for visual and instrumental reading of results. This test showed a visual detection limit for (+)-anatoxin-a of 4 ng/mL. Performance with a reader was validated in accordance with the European guidelines for semiquantitative rapid methods for small chemical contaminants. Thus, at a screening target concentration of 2 ng/mL, the probability of a blank sample to be classified as "suspect" was as low as 0.2%. Finally, the optimized direct enzyme immunoassay was validated by comparison with high-performance liquid chromatography-tandem mass spectroscopy data and showed a good correlation (r = 0.995) with a slope of 0.94. Moreover, environmental water samples containing more than 2 ng/mL of anatoxin-a were detected by the developed dipstick assay. These results provide supplementary and complementary strategies for monitoring the presence of anatoxin-a in water.


Subject(s)
Bacterial Toxins , Cyanobacteria , Bacterial Toxins/chemistry , Cyanobacteria/chemistry , Cyanobacteria Toxins , Environmental Monitoring/methods , Marine Toxins/analysis , Microcystins/analysis , Tropanes/analysis , Water/analysis
4.
Toxins (Basel) ; 14(3)2022 03 02.
Article in English | MEDLINE | ID: mdl-35324682

ABSTRACT

Appropriate hapten design and synthesis have been identified as critical steps to generate high-performance immunoreagents and to develop sensitive and selective immunoanalytical methods. Antibodies and immunoassays for the major mycotoxin zearalenone have been reported and marketed. However, zearalenone haptens have mostly been prepared by the oxime active ester technique, and hapten characterization has generally been poor or non-existent. In the present study, novel haptens of zearalenone with longer linkers and with alternative tethering sites have been designed for immunizing and assay conjugate preparation. All of these molecules were purified and spectroscopically verified, and a structure-activity relationship evaluation was carried out. This approach revealed that the hapten with the linker at the carbonyl group generated antibodies with a higher affinity than the hapten functionalized at the phenyl moiety. Antibodies produced with the latter hapten, on the other hand, showed lower cross-reactivity values to the major zearalenone metabolites. Finally, similar immunoassay sensitivity was achieved with all of the antibodies when heterologous haptens were employed. Furthermore, by altering the structure of the competing antigen, the immunoassay selectivity was modified. These results demonstrate that immunochemical methods for zearalenone rapid analysis can still be improved in terms of sensitivity and selectivity.


Subject(s)
Zearalenone , Antibodies , Antigens , Enzyme-Linked Immunosorbent Assay/methods , Haptens , Immunoassay/methods
5.
Sci Rep ; 11(1): 23438, 2021 12 06.
Article in English | MEDLINE | ID: mdl-34873236

ABSTRACT

Mycotoxins represent a major concern for human and animal health because of their harmful effects and high occurrence in food and feed. Rapid immunoanalytical methods greatly contribute to strengthening the safety of our food supply by efficiently monitoring chemical contaminants, so high-affinity and specific antibodies have been generated for almost all internationally regulated mycotoxins. The only exception is patulin, a mycotoxin mainly produced by Penicillium expansum for which such a target has not yet been achieved. Accordingly, no point-of-need tests commonly used in food immunodiagnostics are commercially available for patulin. In the present study, three functionalized derivatives conforming to generally accepted rules in hapten design were firstly tested to generate suitable antibodies for the sensitive immunodetection of patulin. However, these conventional bioconjugates were unable to elicit the desired immune response, so an alternative strategy that takes advantage of the high electrophilic reactivity of patulin was explored. Patulin was reacted with 4-bromothiophenol, and the obtained adduct was used to produce antibodies with nanomolar affinity values. These results demonstrated for the first time that targeting the adduct resulting from the reaction of patulin with a thiol-containing compound is a promising approach for developing user-friendly immunoanalytical techniques for this elusive mycotoxin.


Subject(s)
Mycotoxins/chemistry , Patulin/chemistry , Animals , Antibodies/chemistry , Chemistry, Pharmaceutical/methods , Female , Food Microbiology , Food Supply , Fruit/chemistry , Haptens/chemistry , Immune System , Immunity , Immunochemistry/methods , Malus , Penicillium/metabolism , Rabbits , Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization , Sulfhydryl Compounds/chemistry
6.
Toxins (Basel) ; 13(12)2021 12 10.
Article in English | MEDLINE | ID: mdl-34941720

ABSTRACT

Immunochemical methods for mycotoxin analysis require antigens with well-defined structures and antibodies with outstanding binding properties. Immunoreagents for the mycotoxins alternariol and/or alternariol monomethyl ether have typically been obtained with chemically uncharacterized haptens, and antigen conjugates have most likely been prepared with mixtures of functionalized molecules. For the first time, total synthesis was performed, in the present study, to obtain two haptens with opposite linker attachment locations. The functionalized synthetic haptens were purified and deeply characterized by different spectrometric methods, allowing the preparation of bioconjugates with unequivocal structures. Direct and indirect competitive enzyme-linked immunosorbent assays, using homologous and heterologous conjugates, were employed to extensively evaluate the generated immunoreagents. Antibodies with high affinity were raised from conjugates of both haptens, and a structure-activity relationship between the synthetic haptens and the specificity of the generated antibodies could be established. These results pave the way for the development of novel highly sensitive immunoassays selective of one or two of these Alternaria mycotoxins.


Subject(s)
Antibody Formation/drug effects , Binding Sites, Antibody/drug effects , Haptens/chemistry , Haptens/immunology , Lactones/chemistry , Lactones/immunology , Mycotoxins/chemistry , Mycotoxins/immunology , Immunoassay/methods , Immunologic Tests , Molecular Structure
7.
Talanta ; 226: 122123, 2021 May 01.
Article in English | MEDLINE | ID: mdl-33676678

ABSTRACT

Immunoassays are nowadays being employed for rapid contaminant analysis in clinical, environmental, and agrochemical samples. A thorough characterization of the antibody‒antigen interaction can bring light to the immunoreagent selection process in order to develop sensitive and robust tests. Thus, determination of equilibrium and reaction rate constants is usually recommendable. However, this can be quite tricky for low molecular weight compounds, and competitive strategies are commonly followed to estimate apparent affinity values. In the present study, a collection of monoclonal antibodies to penthiopyrad was raised for the first time, and apparent equilibrium constants were assessed by the Langmuir model using three different competitive enzyme-linked immunosorbent assay formats. The obtained KD values from antibody-coated assays were quite close to the corresponding KD values calculated from surface plasmon resonance (SPR) evaluation. These studies were employed to select a pair of immunoreagents for immunoassay development. The KD value for penthiopyrad of the selected antibody obtained by SPR was 0.28 nM. The optimized direct assay showed an IC50 value for penthiopyrad of 0.42 nM (0.15 ng mL-1) in buffer. The limit of quantification for grape, must, and wine samples was 10 ng mL-1. An excellent correlation was found when immunochemical results were compared with those from LC-MS/MS. As an application case, it was determined that 58% of penthiopyrad was still found in wine after fermentation.


Subject(s)
Antibodies, Monoclonal , Tandem Mass Spectrometry , Chromatography, Liquid , Enzyme-Linked Immunosorbent Assay , Pyrazoles , Surface Plasmon Resonance , Thermodynamics , Thiophenes
8.
Sci Rep ; 11(1): 1809, 2021 01 19.
Article in English | MEDLINE | ID: mdl-33469120

ABSTRACT

Spirotetramat is employed worldwide to fight insect pests due to its high efficiency. This chemical is quickly metabolized by plants into spirotetramat-enol, so current regulations establish that both compounds must be determined in foodstuffs for monitoring purposes. Nowadays, immunochemical methods constitute rapid and cost-effective strategies for chemical contaminant analysis at trace levels. However, high-affinity binders and suitable bioconjugates are required. In this study, haptens with opposite functionalisation sites were synthesized in order to generate high-affinity monoclonal antibodies. A direct competitive enzyme-linked immunosorbent assay with an IC50 value for the sum of spirotetramat and spirotetramat-enol of 0.1 µg/L was developed using selected antibodies and a novel heterologous bioconjugate carrying a rationally-designed hapten. Studies with fortified grape, grape juice, and wine samples showed good precision and accuracy values, with limits of quantification well below the maximum residue limits. Excellent correlation of results was observed with a standard reference chromatographic method. As a step forward, a lateral flow immunoassay was developed for onsite screening analysis of spirotetramat in wine. This assay was successfully validated according to Regulation 519/2014/EU for semi-quantitative methods at concentrations in line with the legal levels of spirotetramat and spirotetramat-enol in grapes, with a satisfactory false suspect rate below 2%.


Subject(s)
Antibodies, Monoclonal/analysis , Aza Compounds/analysis , Enzyme-Linked Immunosorbent Assay/methods , Food Contamination/analysis , Immunoassay/methods , Insecticides/analysis , Spiro Compounds/analysis
9.
Food Chem ; 345: 128828, 2021 May 30.
Article in English | MEDLINE | ID: mdl-33338836

ABSTRACT

Immunochemical methods are highly deployed in analytical laboratories worldwide for monitoring the incidence of mycotoxins in the food chain. Nevertheless, most conventional immunoassays for ochratoxin A (OTA), including commercial kits, show limitations to robustly determine this mycotoxin in grape-derived products below regulated levels (2 ng/mL). Herein, two rapid tests for sensitive OTA determination in wine and must were developed capitalizing on a collection of bioconjugates from innovative synthetic haptens and monoclonal antibodies with subnanomolar affinity. The ELISA (LOD = 8 pg/mL) showed excellent performance in recovery studies, and it was applied to survey commercial wines and musts for OTA contamination. Concerning LFIA, validation according to the Commission Regulation 519/2014 showed that samples exceeding 2 ng/mL were properly scored as uncompliant. More importantly, illegal samples provided a complete inhibition of the test signal, making this test an easy-to-use, rapid, and convenient screening method for in-house control of OTA in wineries.


Subject(s)
Food Analysis/methods , Immunoassay/methods , Ochratoxins/analysis , Wine/analysis , Food Contamination/analysis , Indicators and Reagents/chemistry , Limit of Detection
10.
J Mater Chem B ; 8(45): 10439-10449, 2020 12 07.
Article in English | MEDLINE | ID: mdl-33124633

ABSTRACT

Approximately 32 million people have died of HIV infection since the beginning of the outbreak, and 38 million are currently infected. Among strategies adopted by the Joint United Nations Programme on HIV/AIDS to end the AIDS global epidemic, the treatment, diagnosis, and viral suppression of the infected subjects are considered crucial for HIV prevention and transmission. Although several antiretroviral (ARV) drugs are successfully used to manage HIV infection, their efficacy strictly relies on perfect adherence to the therapy, which is seldom achieved. Patient supervision, especially in HIV-endemic, low-resource settings, requires rapid, easy-to-use, and affordable analytical tools, such as the enzyme-linked immunosorbent assay (ELISA) and especially the lateral flow immunoassay (LFIA). In this work, high-affinity monoclonal antibodies were generated to develop ELISA and LFIA prototypes for monitoring tenofovir (TFV), an ARV drug present in several HIV treatments. TFV was functionalized by inserting a carboxylated C5-linker at the phosphonic group of the molecule, and the synthetic derivative was conjugated to proteins for mice immunization. Through a rigorous screening strategy of hybridoma supernatants, a panel of monoclonal antibodies strongly binding to TFV was obtained. Following antibody characterization for affinity and selectivity by competitive ELISA, a LFIA prototype was developed and tentatively applied to determine TFV in simulated urine. The point-of-care test showed ultra-high detectability (the visual limit of detection was 2.5 nM, 1.4 ng mL-1), excellent selectivity, and limited proneness to matrix interference, thus potentially making this rapid method a valuable tool for the on-site assessment of patient adherence to ARV therapy.


Subject(s)
Anti-HIV Agents/urine , Antibodies, Monoclonal/immunology , Drug Monitoring/methods , HIV Infections/drug therapy , Immunoassay/methods , Tenofovir/urine , Animals , Anti-HIV Agents/immunology , Antibodies, Monoclonal/analysis , Enzyme-Linked Immunosorbent Assay/methods , Humans , Mice , Point-of-Care Testing , Tenofovir/immunology
11.
Bioconjug Chem ; 31(3): 956-964, 2020 03 18.
Article in English | MEDLINE | ID: mdl-32096992

ABSTRACT

Bioorthogonal reactions have revolutionized the way low-molecular-weight compounds are coupled to biomolecules. Organic chemistry, polymer science, and chemical biology are among the disciplines that have benefited the most from this breakthrough. Despite the reliability of the click chemistry concept for the efficient and chemoselective functionalization of biomacromolecules with haptens at preferred positions, the fact that azide-alkyne cycloaddition reactions originate new chemical moieties as part of the linker may have delayed their application in the immunodiagnostic field. Using the mycotoxin ochratoxin A as a model compound, we herein demonstrate for the first time that bioconjugates arising from the ligation between an azido-bearing hapten and an alkyne-modified carrier protein are able to elicit the generation of high-affinity monoclonal antibodies suitable for the development of rapid methods for the immunodetection of small organic molecules.


Subject(s)
Haptens/chemistry , Immunoassay/methods , Alkynes/chemistry , Azides/chemistry , Click Chemistry , Models, Molecular , Molecular Conformation , Ochratoxins/chemistry
12.
Angew Chem Int Ed Engl ; 58(27): 9134-9139, 2019 07 01.
Article in English | MEDLINE | ID: mdl-31063625

ABSTRACT

Early warning systems for monitoring toxic events may benefit from the availability of monoclonal antibodies enabling the sensitive and specific detection of anatoxin-a, a cyanotoxin involved in numerous cases of animal poisoning resulting from toxic algal blooms in freshwaters. Through the synthesis of three functionalized derivatives of anatoxin-a, we have succeeded in generating the first-ever reported immunoreagents (bioconjugates and antibodies) suitable for the development of immunoanalytical approaches aimed at rapid and onsite detection of this harmful cyanotoxin.


Subject(s)
Antibodies, Monoclonal/immunology , Enzyme-Linked Immunosorbent Assay , Haptens/immunology , Tropanes/analysis , Animals , Antibodies, Monoclonal/chemistry , Cattle , Cyanobacteria Toxins , Haptens/chemistry , Harmful Algal Bloom , Serum Albumin, Bovine/chemistry , Serum Albumin, Bovine/immunology , Stereoisomerism , Tropanes/immunology
13.
Food Chem ; 288: 117-126, 2019 Aug 01.
Article in English | MEDLINE | ID: mdl-30902271

ABSTRACT

Monoclonal antibody-based techniques have become a useful analytical technology in the agro-food sector. Nowadays, residues of the recently registered fungicide fluopyram are increasingly being found in quality control programs. In the present study, novel chemical derivatives of this pesticide were prepared and specific and high-affinity monoclonal antibodies to fluopyram were raised for the first time. Moreover, immunoassays to fluopyram were developed in two alternative enzyme-linked immunosorbent assay formats, using homologous and heterologous assay conjugates, with limits of detection below 0.05 µg L-1. The optimized immunoassays were applied to the analysis of fluopyram in fortified plums and grapes of four different varieties as well as in in-house prepared musts and wines. Recoveries were between 76.3% and 109.6% and coefficients of variation were below 20%. Quantification limits were well below the maximum residue limits. Immunoassay performance was statistically validated with a reference chromatographic technique using samples from fluopyram-treated plum and grape cultivars.


Subject(s)
Antibodies, Monoclonal/analysis , Benzamides/analysis , Immunoassay/methods , Pyridines/analysis , Wine/analysis , Limit of Detection , Succinate Dehydrogenase/analysis
14.
Analyst ; 143(23): 5718-5727, 2018 Nov 19.
Article in English | MEDLINE | ID: mdl-30378598

ABSTRACT

Nowadays, instrumental methodologies and rapid bioanalytical techniques complement each other for the analysis of toxic chemical compounds. Fluxapyroxad was commercialized a few years ago as a fungicide and today it is being used worldwide to control a variety of pests. In the present study, the development of monoclonal antibody-based immunochemical methods for the analysis of this chemical in food samples was evaluated for the first time. Novel haptens were synthesized and protein bioconjugates were prepared. High-affinity and specific monoclonal antibodies to fluxapyroxad were generated from two haptens with alternative linker tethering sites. Haptens with linker site heterology and a structurally heterologous hapten with a minor modification of the molecule conformation and volume but with a significant alteration of the electronic density of the pyrazole moiety were evaluated for immunoassay development. Direct and indirect competitive immunoassays were characterized and optimized, showing IC50 values for fluxapyroxad of 0.14 and 0.05 ng mL-1, respectively. The combination of two heterologies was particularly adequate in the indirect format. The two developed immunoassays showed excellent recoveries and coefficients of variation in fluxapyroxad-fortified plums and four varieties of grapes. Finally, a good correlation was found between the indirect immunoassay and UPLC-MS/MS when fruit samples with incurred residues of fluxapyroxad were analyzed. These monoclonal antibody-based immunochemical methods hold great promise for fluxapyroxad monitoring.


Subject(s)
Amides/analysis , Food Contamination/analysis , Fungicides, Industrial/analysis , Pyrazoles/analysis , Amides/immunology , Animals , Antibodies, Monoclonal/immunology , Enzyme-Linked Immunosorbent Assay/methods , Fruit/chemistry , Fungicides, Industrial/immunology , Haptens/chemistry , Limit of Detection , Mice , Pyrazoles/immunology
15.
ACS Omega ; 3(9): 11950-11957, 2018 Sep 30.
Article in English | MEDLINE | ID: mdl-30320282

ABSTRACT

Spirotetramat-a tetramic acid insecticide-is rapidly metabolized or degraded to give spirotetramat-enol; so, common residue definitions include the sum of both compounds. In the present study, two spirotetramat-functionalized derivatives (haptens) have been designed to generate immunoreagents to these molecules for rapid immunochemical analysis. Haptens have been synthesized with alternative linker tethering sites and, for the first time, high-affinity antibodies have been generated with different specificities to these active principles. Two sensitive assays have been developed using the same antibody in different formats, and by using linker-site heterologous haptens, the selectivity of the final immunoassay could be improved. A generic immunoassay with sensitivity similar to spirotetramat and spirotetramat-enol and a specific assay of spirotetramat-enol have been developed. The described antibody and bioconjugates showed great potential for sensitive immunosensor development and analysis of this complex analyte.

16.
Chemosphere ; 211: 302-307, 2018 Nov.
Article in English | MEDLINE | ID: mdl-30077110

ABSTRACT

In 2013, quinoxyfen was included in the list of priority hazard pollutants of the European Water Framework Directive due to its toxicity to aquatic organisms. However, few analytical methods for the analysis of this fungicide have been reported and no rapid immunochemical methods have been published so far. In the present study, immunoreagents for quinoxyfen analysis were generated for the first time and an enzyme-linked immunosorbent assay was developed. Two carboxylated derivatives of quinoxyfen were designed on the basis of the minimum energy conformation of the target compound. Active esters of those novel compounds were prepared using N,N'-disuccinimidyl carbonate, and purified for covalent coupling to proteins. Matrix-assisted laser desorption mass spectrometry of the prepared bioconjugates showed optimum hapten-to-protein molar ratios. Moreover, high-affinity antibodies specific of quinoxyfen were raised. As proof of concept, an immunoassay was evaluated using a heterologous conjugate, which afforded sensitivity values in the low nanomolar range. Moreover, excellent recoveries and coefficients of variation were obtained from the analysis of environmental water samples fortified with quinoxyfen. A limit of quantification of 60 µg/L was determined. The prepared bioconjugates and antibodies could be valuable immunoreagents for the development of a variety of rapid immunosensors for quinoxyfen determination in environmental samples.


Subject(s)
Enzyme-Linked Immunosorbent Assay/methods , Fungicides, Industrial/analysis , Immunoassay/methods , Quinolines/analysis , Water Pollutants, Chemical/analysis , Haptens/chemistry , Mass Spectrometry
17.
Analyst ; 143(17): 4057-4066, 2018 Aug 20.
Article in English | MEDLINE | ID: mdl-30059081

ABSTRACT

Immunochemical methods have been consolidated during the last few years as complementary analytical strategies for chemical contaminant and residue determination. However, generation of suitable immunoreagents for small organic molecules demands adequate hapten design. In this study, fenhexamid was considered as a model compound and novel haptens were designed and synthesized in order to evaluate the influence of the linker tethering site on antibody binding properties and immunoassay parameters. Haptens were conceived with the spacer arm at different positions, while the more antigenic aromatic moiety was kept free. The synthesis of these functionalized compounds was accomplished by total construction of the molecule through several steps. This strategy afforded very high-affinity monoclonal antibodies specific of fenhexamid, with IC50 values around or below 0.1 nM. Using these novel immunoreagents, a direct competitive enzyme-linked immunosorbent assay with a remarkably low limit of detection (4 ng L-1) was developed for the determination of fenhexamid residues. The selected immunoassay was investigated in terms of trueness, precision, repeatability, and robustness. The QuEChERS extraction methodology was applied to fortified samples and recoveries between 83% and 113%, with relative standard deviations below 20%, were observed. Moreover, contaminated and blind spiked samples were measured by the developed immunoassay and by ultra-performance liquid chromatography coupled to tandem mass spectrometry, showing statistically comparable results.


Subject(s)
Amides/analysis , Antibodies, Monoclonal/chemistry , Enzyme-Linked Immunosorbent Assay , Fungicides, Industrial/analysis , Haptens/chemistry , Limit of Detection
18.
Sci Rep ; 8(1): 9761, 2018 06 27.
Article in English | MEDLINE | ID: mdl-29950703

ABSTRACT

Ochratoxin A is a potent toxic fungal metabolite whose undesirable presence in food commodities constitutes a problem of public health, so it is strictly regulated and controlled. For the first time, two derivatives of ochratoxin A (OTAb and OTAd) functionalized through positions other than the native carboxyl group of the mycotoxin, have been synthesized in order to better mimic, during the immunization process, the steric and conformational properties of the target analyte. Additionally, two conventional haptens making use of that native carboxyl group for protein coupling (OTAe and OTAf) were also prepared as controls for the purpose of comparison. The immunological performance in rabbits of protein conjugates based on OTAb and OTAd overcome that of conjugates employing OTAe and OTAf as haptens. After immunization of mice with OTAb and OTAd conjugates, a collection of high-affinity monoclonal antibodies to ochratoxin A was generated. In particular, one of those antibodies, the so-called OTAb#311, is very likely the best antibody produced so far in terms of selectivity and affinity to ochratoxin A.


Subject(s)
Antibodies, Monoclonal/chemistry , Haptens/chemistry , Ochratoxins/chemistry , Enzyme-Linked Immunosorbent Assay , Molecular Structure
19.
Food Chem ; 267: 2-9, 2018 Nov 30.
Article in English | MEDLINE | ID: mdl-29934157

ABSTRACT

Boscalid is an agrochemical recently developed for crop protection and the most significant member of the succinate dehydrogenase inhibitor group of fungicides. In this study, a collection of high-affinity monoclonal antibodies was generated to boscalid. By using a series of haptens with a linker at alternative tethering sites of the boscalid framework, specific antibodies were isolated as well as antibodies that also recognized the main boscalid metabolite. Two immunoassays were developed using different ELISA formats. Optimized assays displayed very high sensitivities (limits of detection were near 0.01µg/L). Trueness and precision for the determination of the target analyte in strawberry samples was evaluated. Moreover, immunoassay performance was validated with a reference chromatographic method using QuEChERS extracts of fruits from fungicide-treated crops. A monitoring study with strawberry samples from local markets was carried out by immunoassay, showing an occurrence of boscalid of 15% with a maximum residue concentration of 43µg/kg.


Subject(s)
Antibodies, Monoclonal/immunology , Biphenyl Compounds/analysis , Enzyme-Linked Immunosorbent Assay/methods , Fragaria/chemistry , Fungicides, Industrial/analysis , Niacinamide/analogs & derivatives , Biphenyl Compounds/chemistry , Biphenyl Compounds/metabolism , Fragaria/metabolism , Fruit/chemistry , Fruit/metabolism , Fungicides, Industrial/chemistry , Fungicides, Industrial/metabolism , Haptens/chemistry , Haptens/immunology , Limit of Detection , Niacinamide/analysis , Niacinamide/chemistry , Niacinamide/metabolism
20.
J Agric Food Chem ; 65(42): 9333-9341, 2017 Oct 25.
Article in English | MEDLINE | ID: mdl-28974098

ABSTRACT

Fluxapyroxad is a new-generation carboxamide fungicide, with residues increasingly being found in food samples. Immunochemical assays have gained acceptance in food quality control as rapid, cost-effective, sensitive, and selective methods for large sample throughput and in situ applications. In the present study, immunoreagents to fluxapyroxad were obtained for the first time, and competitive immunoassays were developed for the sensitive and specific determination of fluxapyroxad residues in food samples. Two carboxyl-functionalized analogues of fluxapyroxad were prepared, and antibodies with IC50 values in the low nanomolar range were generated from both haptens, though a dissimilar response was observed concerning specificity. A robust direct assay was set up, with a calibration curve exhibiting a limit of detection of 0.05 nM (0.02 µg/L). Limits of quantitation of 5 µg/L were obtained for peach, apple, and grape juices using samples diluted in water. The direct immunoassay was also successfully applied to the determination of fluxapyroxad in grapes from in-field treated grapevines.


Subject(s)
Amides/analysis , Enzyme-Linked Immunosorbent Assay/methods , Fungicides, Industrial/analysis , Haptens/analysis , Antibodies/analysis , Food Contamination/analysis , Fruit/chemistry , Fruit and Vegetable Juices/analysis , Malus/chemistry , Prunus persica/chemistry , Sensitivity and Specificity
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