TY - CONF A1 - Schneider, Rudolf T1 - Immunoanalytical platforms for on-site environmental health and food safety testing N2 - An overview of methods developed in the division. T2 - FoodSmartphone.eu - Online Symposium CY - Online meeting DA - 25.11.2020 KW - Umweltanalytik KW - Lebensmittelanalytik KW - Immunoassay KW - Biosensor PY - 2020 AN - OPUS4-51841 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Scala-Benuzzi, M. L. A1 - Soler-Illia, G. J. A. A. A1 - Rabia, J. A1 - Battaglini, F. A1 - Schneider, Rudolf A1 - Pereira, S. V. A1 - Messina, G. A. T1 - Immunosensor based on porous gold and reduced graphene platform for the determination of EE2 by electrochemical impedance spectroscopy N2 - In this work, we report an electrochemical immunosensor to detect ethinylestradiol in water samples, using electrochemical impedance spectroscopy (EIS) as a detection technique. For the development of this immunosensor, the direct modification of the working electrode of a screen-printed carbon electrode was carried out. First, to reduce the resistance of the electrode, electroreduced graphene was incorporated on the surface. Second, a porous gold structure was electrodeposited on reduced graphene by electrodeposition and the dynamic hydrogen bubble template assisted method. Thus, a marked increase in surface area was obtained for anti-EE2 antibodies immobilization. Subsequently, the specific anti-EE2 antibodies were covalently immobilized using α-lipoic acid for attaching them to the gold surface. The electrode modified with the antibodies was incubated for 30 min in the samples containing EE2, producing the specific Antigen antibody binding. As the charge transfer resistance of a redox probe in the electrode surface is governed by the surface blocking effects, the charge transfer resistance was related to the amount of EE2 captured to realize a quantitative determination. For this, the EIS measurements were performed in a 4 mM [Fe(CN)6]4−/3− solution in 0.1 M KCl. The obtained Nyquist diagrams were adjusted using the Randles circuit as an equivalent circuit to obtain the corresponding resistances. The developed methodology showed good selectivity, precision, and sensitivity; although the LOD obtained was higher than those presented in other published articles, it turned out to be an alternative that allows the determination of ethinylestradiol using a simple disposable electrode. KW - Ethinylestradiol KW - Biosensor KW - Elektrochemisch KW - Impedanz PY - 2021 DO - https://doi.org/10.1016/j.jelechem.2021.115604 SN - 1572-6657 VL - 897 SP - 115604 EP - 115611 PB - Elsevier B.V. CY - Amsterdam AN - OPUS4-54048 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Schneider, Rudolf T1 - Advanced materials broadening the scope of antibody-based analytical methods N2 - Immunoanalytical Techniques, i.e., antibody-based analytical methods, have been used for decades in clinical diagnostics. What makes them attractive for other fields of application is their short time-to-result and high sensitivity. Microplate-based assays such as ELISA have been adopted early in environmental and food analysis. Yet, to make immunoassays even faster, more sensitive, robust, and, most desirable, portable, advanced materials, sometimes developed for other purposes, can be profitably used to achieve these goals. Materials can be novel labels, e.g., chemical or particle labels, such as fluorophores or nanoparticles. Carrier particles, such as magnetic or polymer beads, make it possible to adopt the assays to meso- or microfluidic set-ups and encoding them opens the path to multiplex analysis. Specialty electrodes can enable for higher sensitivity in electrochemical detection. All this broadens the scope of application and lowers effort and cost for analysis at the point-of-need. T2 - ChemForum - Kolloquium des Instituts für Strukturchemie CY - Lisbon, Portugal DA - 07.09.2022 KW - Immunoassay KW - Biosensor KW - Antibody PY - 2022 AN - OPUS4-56782 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Schneider, Rudolf T1 - Anthropogenic markers quantified by rapid immunochemical methods – what can their occurrence in wastewater, surface water, and drinking water tell us? N2 - In urban waters, a multitude of organic micropollutants, often termed emerging pollutants, has been found over the last decades. Analytical methods suitable for trace analysis are needed that are desirably also fast, inexpensive and, if possible, robust and portable. Immunoanalytical, i.e., antibody-based, methods which are available in a broad range of formats, can be profitably used here to screen for the distribution and to monitor the trends of concentration levels of contaminants of emerging concern in the environment. Some of these formats are single-analyte but high-throughput methods. To use them wisely, indicator substances, sometimes called anthropogenic markers, should be selected and used in screening approaches, i.e., as indicators for contamination and the pre-selection of samples at which to have a closer look by multiplex methods like LC-MS/MS. Other methods are suitable to be performed on portable instrumentation in the field (on-site) or in facilities such as wastewater treatment plants for on-line monitoring of the treatment and elimination process. Furthermore, array technologies have been established that allow for parallel (multiplex) analysis of several analytes of interest. The microtiter-plate based ELISA (Enzyme-linked Immunosorbent Assay) is the method of choice for the analysis of a large number of samples [1]. ELISAs are available to monitor for anthropogenic markers such as the antiepileptic carbamazepine, the analgesic diclofenac, the antihistaminic cetirizine, the steroid hormone estrone, the antimicrobial sulfamethoxazole, psychoactive caffeine and cocaine, the priority pollutant bisphenol A, and the bile acid isolithocholic acid. For on-site screening and monitoring, simpler formats, like mix-and-read assays, e.g., the Fluorescence Polarization Immunoassay (FPIA) [2] or Lateral-flow Immunoassays (LFIA) [3] are more suitable tools, the latter based on dipsticks or little cassettes, with which users have become very familiar during the COVID-19 pandemic via rapid antigen tests. The suitability of multi-analyte formats such as immunomicroarrays depends on the choice of a signal-producing system that provides small uncertainties and good reproducibility of the measurements. Bead-based (“suspension”) arrays, read out in flow cytometers, are a powerful platform for multiplex assays [4]. Electrochemical formats, run on portable devices, provide additional advantages as no light source is required. They are most promising for stand-alone analysers and biosensors [5]. The speed, low cost and on-site capabilities of these methods allow to gather a lot more data on anthropogenic compounds which enables to quantify inputs, differences in degradation power of elimination processes, dilution phenomena and a more precise image of individual water cycles which is demonstrated by several examples. T2 - EuChemS Chemistry Congress ECC8 CY - Lisbon, Portugal DA - 28.08.2022 KW - Biosensor KW - Immunoassay KW - Antibody PY - 2022 AN - OPUS4-56783 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Schneider, Rudolf T1 - Environmental Analysis at BAM N2 - The talk is to introduce BAM, the Department of Analytical Chemistry; Reference Materials and the Division of Environmental Analysis and its works to the audience. T2 - Seminar des Centre for Environmental and Marine Studies (CESAM) der Universität Aveiro CY - Aveiro, Portugal DA - 12.09.2022 KW - Immunoassay KW - Biosensor KW - Antibody PY - 2022 AN - OPUS4-56784 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Schneider, Rudolf T1 - Field Analysis by Antibody-based Analytical Methods: The Importance of Advanced Materials N2 - Analytical methods based on the selectivity of antibodies, often called immunoassays, are a back-bone of clinical laboratory diagnostics. To bring them to the field, i.e., to make immunoanalytical methods portable, hopefully even faster, more sensitive, and robust, advanced materials are re-quired. Materials can be novel labels, e.g., chemical or particle labels, such as fluorophores or na-noparticles. Carrier particles, such as magnetic or polymer beads, make it possible to adopt the as-says to meso- or microfluidic set-ups and encoding them opens the path to multiplex analysis. Spe-cialty electrodes can enable for higher sensitivity in electrochemical detection. Without research into better materials, efforts to bring analysis to the point-of-need will not bear fruit. T2 - Kolloquium des Aveiro Institut of Materials (CICECO) der Universität Aveiro CY - Aveiro, Portugal DA - 20.09.2022 KW - Immunoassay KW - Biosensor KW - Antibody PY - 2022 AN - OPUS4-56785 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Konthur, Zoltán T1 - Utilizing Aspergillus niger Fumonisin Amine Oxidase for the Electrochemical Detection of Fumonisin N2 - Fumonisins are a class of toxic secondary metabolites produced by various Fusarium species. The two most important producers of fumonisins are F. verticillioides and F. proliferatum but also Aspergillus niger is known to produce fumonisins. Most frequently they occur on maize, but also other grains can be contaminated with this group of mycotoxins. Exposure to fumonisins by dietary intake can have serious health effects on farm animals and also within humans. Thus, the European Commission sets legal limits for fumonisins in feed and foodstuffs. The detection of fumonisins is frequently performed in laboratories by chromatographic methods, which are costly and require trained personnel. Simplifying the analysis is therefore a major goal using portable detection systems. Electrochemical enzymatic biosensors offer great promise to meet this demand. Here we report for the first time an enzymatic fumonisin sensing approach with amperometric detection. For this purpose, an Aspergillus niger fumonisin amine oxidase (AnFAO) catalyzing the oxidative deamination of fumonisins, producing hydrogen peroxide, was recombinantly produced in E. coli. It was found that the specific activity of AnFAO using 20 μM Fumonisin B1 as substrate is higher than for 20 μM Fumonisin B2 with 0.122 U mg-1 and 0.058 U mg-1, respectively. It was possible to show a dependence of enzyme activity with enzyme – and substrate-concentration. For fumonisin B1 detection, the enzyme was coupled covalently to magnetic particles and the enzymatically produced H2O2 was detected amperometrically in a flow injection system using Prussian blue carbon electrodes. The developed method allows to quantify fumonisin B1 concentrations down to 1.5 µM and demonstrates that the recombinantly produced AnFAO was able to deaminate different concentrations of fumonisin even in immobilized form. Thus, this enzyme is well suited to develop an enzyme based electrochemical biosensor for fumonisin contaminated food and feed. T2 - Affinity 2023 - the 25th meeting of the International Society for Molecular Recognition CY - Lisbon, Portugal DA - 05.06.2023 KW - Mycotoxin KW - Amperometry KW - Biosensor KW - Food analysis PY - 2023 N1 - Geburtsname von Riedel, Soraya: Höfs, S. - Birth name of Riedel, Soraya: Höfs, S. AN - OPUS4-57717 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - THES A1 - Riedel, Soraya T1 - Development of electrochemical antibody-based and enzymatic assays for mycotoxin analysis in food N2 - Electrochemical methods are promising to meet the demand for easy-to-use devices monitoring key parameters in the food industry. Many companies run own lab procedures for mycotoxin analysis, but it is a major goal to simplify the analysis. The enzyme-linked immunosorbent assay using horseradish peroxidase as enzymatic label, together with 3,3',5,5' tetramethylbenzidine (TMB)/H2O2 as substrates allows sensitive mycotoxin detection with optical detection methods. For the miniaturization of the detection step, an electrochemical system for mycotoxin analysis was developed. To this end, the electrochemical detection of TMB was studied by cyclic voltammetry on different screen-printed electrodes (carbon and gold) and at different pH values (pH 1 and pH 4). A stable electrode reaction, which is the basis for the further construction of the electrochemical detection system, could be achieved at pH 1 on gold electrodes. An amperometric detection method for oxidized TMB, using a custom-made flow cell for screen-printed electrodes, was established and applied for a competitive magnetic bead-based immunoassay for the mycotoxin ochratoxin A. A limit of detection of 150 pM (60 ng/L) could be obtained and the results were verified with optical detection. The applicability of the magnetic bead-based immunoassay was tested in spiked beer using a handheld potentiostat connected via Bluetooth to a smartphone for amperometric detection allowing to quantify ochratoxin A down to 1.2 nM (0.5 µg/L). Based on the developed electrochemical detection system for TMB, the applicability of the approach was demonstrated with a magnetic bead-based immunoassay for the ergot alkaloid, ergometrine. Under optimized assay conditions a limit of detection of 3 nM (1 µg/L) was achieved and in spiked rye flour samples ergometrine levels in a range from 25 to 250 µg/kg could be quantified. All results were verified with optical detection. The developed electrochemical detection method for TMB gives great promise for the detection of TMB in many other HRP-based assays. A new sensing approach, based on an enzymatic electrochemical detection system for the mycotoxin fumonisin B1 was established using an Aspergillus niger fumonisin amine oxidase (AnFAO). AnFAO was produced recombinantly in E. coli as maltose-binding protein fusion protein and catalyzes the oxidative deamination of fumonisins, producing hydrogen peroxide. It was found that AnFAO has a high storage and temperature stability. The enzyme was coupled covalently to magnetic particles, and the enzymatically produced H2O2 in the reaction with fumonisin B1 was detected amperometrically in a flow injection system using Prussian blue/carbon electrodes and the custom-made wall-jet flow cell. Fumonisin B1 could be quantified down to 1.5 µM (≈ 1 mg/L). The developed system represents a new approach to detect mycotoxins using enzymes and electrochemical methods. N2 - Zur Entwicklung von einfach zu bedienenden Vor-Ort-Geräten, welche für die Analytik von wichtigen Parametern in der Lebensmittelindustrie eingesetzt werden können, sind elektrochemische Methoden besonders vielversprechend. Viele Unternehmen führen bereits Mykotoxinanalytik in eigenen Laboren am Produktionsstandort durch, dennoch gibt es große Bestrebungen Analysenmethoden weiter zu vereinfachen. Der Enzyme-linked Immunosorbent Assay (ELISA), welcher häufig mit der Meerrettichperoxidase als enzymatischem Label und 3,3',5,5'-Tetramethylbenzidine (TMB)/H2O2 als Enzymsubstraten arbeitet, ermöglicht den sensitiven Mykotoxinnachweis mithilfe optischer Detektionsmethoden. Zur Miniaturisierung des Detektionsschrittes wurde in dieser Arbeit der Aufbau von elektrochemischen Detektionssystemen für die Mykotoxinanalytik untersucht. Dazu wurde zunächst die elektrochemische Reaktion von TMB an verschiedenen Materialien siebgedruckter Elektroden (Kohlenstoff und Gold) sowie bei verschiedenen pH-Werten (pH 1 und pH 4) untersucht. Eine stabile Elektrodenreaktion, welche die Grundlage für den weiteren Aufbau des elektrochemischen Detektionssystems darstellt, konnte bei pH 1 an Goldelektroden erzielt werden. Basierend darauf wurde eine amperometrische Detektionsmethode für oxidiertes TMB entwickelt, wofür eine maßgefertigte Durchflusszelle verwendet wurde. Die amperometrische TMB-Detektion wurde für einen kompetitiven Magnetpartikel-basierten Immunoassay für Ochratoxin A eingesetzt. Mit diesem Assay wurde eine Nachweisgrenze von 150 pM (60 ng L-1) erreicht und die Ergebnisse konnten durch optische Detektion verifiziert werden. Die Anwendbarkeit des Assays konnte in Ochratoxin A dotiertem Bier demonstriert werden, wobei für die Detektion ein tragbarer Potentiostat verwendet wurde, welcher über Bluetooth mit einem Smartphone verbunden war. Hiermit konnten niedrige Ochratoxin A Konzentration von bis zu 1.2 nM (0.5 µg L-1) bestimmt werden. Aufbauend auf dem entwickelten elektrochemischen Detektionssystem für TMB wurde die Anwendbarkeit des Ansatzes auf einen Magnetpartikel-basierten Immunoassay für das Ergotalkaloid Ergometrine, evaluiert. Unter optimierten Bedingungen konnte mit dem Assay eine Nachweisgrenze von 3 nM (1 µg L-1) erreicht werden. In mit Ergometrin versetztem Roggenmehl konnten Konzentrationen von 25 bis 250 µg kg-1 nachgewiesen werden. Die entwickelte elektrochemische Nachweismethode für TMB bietet einen vielversprechenden Ansatz für den Einsatz in vielen anderen Meerrettichperoxidase-basierten Assays. Für das Mykotoxin Fumonisin B1, wurde ein neues sensorisches System entwickelt, welches auf einem enzymatischen elektrochemischen Nachweis basiert. Hierfür wurde eine Aspergillus niger Fumonisin Aminoxidase (AnFAO) rekombinant als Fusionsprotein mit dem Maltose-bindenden Protein exprimiert. AnFAO katalysiert die oxidative Deaminierung von Fumonisinen, wobei H2O2 gebildet wird. Es konnte gezeigt werden, dass AnFAO eine hohe Lagerungs- und Temperaturstabilität hat. Für den Nachweis von Fumonisin B1 wurde das Enzym kovalent an Magnetpartikel gekoppelt. Das enzymatisch produzierte H2O2 konnte anschließend amperometrisch mithilfe von Preußisch Blau/Kohlenstoff-Elektroden in der maßgefertigten Durchflusszelle detektiert werden. Fumonisin B1 konnte bis zu einer Konzentration von 1,5 µM (≈ 1 mg L-1) quantifiziert werden. Das entwickelte System stellt einen neuen Ansatz dar, um Mykotoxine unter Nutzung von Enzymen und elektrochemischen Methoden zu detektieren. KW - Mycotoxins KW - Biosensor KW - Antibodies KW - Electrochemical detection PY - 2023 UR - https://nbn-resolving.org/urn:nbn:de:kobv:517-opus4-607477 DO - https://doi.org/10.25932/publishup-60747 SP - 1 EP - 96 PB - Universität Potsdam CY - Potsdam AN - OPUS4-59189 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Schneider, Rudolf T1 - Expression of Aspergillus niger Fumonisin Amine Oxidase (AnFAO) for an Electrochemical Detection of the Mycotoxin N2 - The poster describes how molecular biology, especially recombinant expression of proteins, in this case, an enzyme, can underpin developments of biosensors. The fumonisin oxidase produced by the fungus Aspergillus niger (AnFAO) is highly selective for the toxic mycotoxin fumonisin. Its structure and sequence has been published before. We took this information and expressed the enzyme in E. coli. The enzyme proved active and could be employed in an amperometric biosensor for the detection of the mycotoxin. T2 - 30. Leibniz Conference of Advanced Science CY - Berlin, Germany DA - 06.10.2023 KW - Biosensor KW - Enyzme KW - Recombinant KW - Electrochemical detection PY - 2023 AN - OPUS4-59241 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Riedel, Soraya T1 - Tracing toxic fumonisins - Fumonisin sensing by Aspergillus niger Fumonisin Amine Oxidase (AnFAO) and amperometric hydrogen peroxide detection N2 - Fumonisins are a class of toxic secondary metabolites produced by various Fusarium species. The two most important producers of fumonisins are F. verticillioides and F. proliferatum but also Aspergillus niger is known to produce fumonisins. Most frequently they occur on maize, but also other grains can be contaminated with this group of mycotoxins. Exposure to fumonisins by dietary intake can have serious health effects on farm animals such as equine leukoencephalomalacia and porcine pulmonary oedema and is associated with neural tube defects and esophageal cancer in humans. Thus, the European Commission sets legal limits for fumonisins in foodstuffs. The detection of fumonisins is frequently performed in laboratories by chromatographic methods, which are costly and require trained personnel. Simplifying the analysis is therefore a major goal using portable detection systems. Electrochemical enzymatic biosensors offer great promise to meet this demand. Here we report for the first time an enzymatic fumonisin sensing approach with amperometric detection. For this purpose, an Aspergillus niger fumonisin amine oxidase (AnFAO) catalyzing the oxidative deamination of fumonisins, producing hydrogen peroxide, was recombinantly produced in E. coli. For the first time, the specific enzyme activity of AnFAO was determined using a horseradish peroxidase-based fluorescence assay. It was found that the specific activity of AnFAO using 20 μM Fumonisin B1 as substrate is higher than for 20 μM Fumonisin B2 with 0.122 U mg-1 and 0.058 U mg-1, respectively. It was possible to show a dependence of enzyme activity with enzyme – and substrate-concentration. For fumonisin B1 detection, the enzyme was coupled covalently to magnetic particles and the enzymatically produced H2O2 was detected amperometrically in a flow injection system using Prussian blue carbon electrodes. The developed method allows to quantify fumonisin B1 concentrations down to 1.5 µM and demonstrates that the recombinantly produced AnFAO was able to deaminate different concentrations of fumonisin even in immobilized form. Thus, this enzyme is well suited to develop an enzyme based electrochemical biosensor for fumonisin contaminated food and feed. T2 - Posterschau Adlershofer Forschungsforum CY - Berlin, Germany DA - 11.11.2022 KW - Biosensor KW - Amperometry KW - Mycotoxins KW - Electrochemical sensor KW - Recombinant protein expression PY - 2022 N1 - Geburtsname von Riedel, Soraya: Höfs, S. - Birth name of Riedel, Soraya: Höfs, S. AN - OPUS4-56248 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER -