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Screen-printed Gold Electrode Functionalized with Deferoxamine for Iron(III) Detection. CHEMOSENSORS 2022. [DOI: 10.3390/chemosensors10060214] [Citation(s) in RCA: 1] [Impact Index Per Article: 0.5] [Reference Citation Analysis] [Abstract] [Track Full Text] [Subscribe] [Scholar Register] [Indexed: 02/06/2023]
Abstract
Deferoxamine (DFO), a hydroxamic siderophore with a high affinity for Fe(III), is immobilized as a functionalized self-assembled monolayer of a thiol (SAM) on the gold surface of a screen-printed cell to develop a voltammetric sensor for iron(III). The surface of the working electrode was characterized, before and after functionalization, by determining surface properties such as the area and the double-layer capacitance. The Fe(III) detection was performed by DPV analysis after preconcentration of the cation at the open circuit potential in solution at pH = 1 for two minutes. The method was applied to the iron(III) quantification in water samples giving promising results.
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2
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Pawlaczyk M, Schroeder G. Deferoxamine-Modified Hybrid Materials for Direct Chelation of Fe(III) Ions from Aqueous Solutions and Indication of the Competitiveness of In Vitro Complexing toward a Biological System. ACS OMEGA 2021; 6:15168-15181. [PMID: 34151096 PMCID: PMC8210399 DOI: 10.1021/acsomega.1c01411] [Citation(s) in RCA: 7] [Impact Index Per Article: 2.3] [Reference Citation Analysis] [Abstract] [Grants] [Track Full Text] [Subscribe] [Scholar Register] [Received: 03/16/2021] [Accepted: 05/24/2021] [Indexed: 05/03/2023]
Abstract
Deferoxamine (DFO) is one of the most potent iron ion complexing agent belonging to a class of trihydroxamic acids. The extremely high stability constant of the DFO-Fe complex (log β = 30.6) prompts the use of deferoxamine as a targeted receptor for scavenging Fe(III) ions. The following study aimed at deferoxamine immobilization on three different supports: poly(methyl vinyl ether-alt-maleic anhydride), silica particles, and magnetite nanoparticles, leading to a class of hybrid materials exhibiting effectiveness in ferric ion adsorption. The formed deferoxamine-loaded hybrid materials were characterized with several analytical techniques. Their adsorptive properties toward Fe(III) ions in aqueous samples, including pH-dependence, isothermal, kinetic, and thermodynamic experiments, were investigated. The materials were described with high values of maximal adsorption capacity q m, which varied between 87.41 and 140.65 mg g-1, indicating the high adsorptive potential of the DFO-functionalized materials. The adsorption processes were also described as intense, endothermic, and spontaneous. Moreover, an exemplary magnetically active deferoxamine-modified material has been proven for competitive in vitro binding of ferric ions from the biological complex protoporphyrin IX-Fe(III), which may lead to a further examination of the materials' biological or medical applicability.
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Deferoxamine B: A Natural, Excellent and Versatile Metal Chelator. Molecules 2021; 26:molecules26113255. [PMID: 34071479 PMCID: PMC8198152 DOI: 10.3390/molecules26113255] [Citation(s) in RCA: 39] [Impact Index Per Article: 13.0] [Reference Citation Analysis] [Abstract] [Key Words] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 05/07/2021] [Revised: 05/25/2021] [Accepted: 05/27/2021] [Indexed: 02/06/2023] Open
Abstract
Deferoxamine B is an outstanding molecule which has been widely studied in the past decade for its ability to bind iron and many other metal ions. The versatility of this metal chelator makes it suitable for a number of medicinal and analytical applications, from the well-known iron chelation therapy to the most recent use in sensor devices. The three bidentate hydroxamic functional groups of deferoxamine B are the centerpiece of its metal binding ability, which allows the formation of stable complexes with many transition, lanthanoid and actinoid metal ions. In addition to the ferric ion, in fact, more than 20 different metal complexes of deferoxamine b have been characterized in terms of their chemical speciation in solution. In addition, the availability of a terminal amino group, most often not involved in complexation, opens the way to deferoxamine B modification and functionalization. This review aims to collect and summarize the available data concerning the complex-formation equilibria in solutions of deferoxamine B with different metal ions. A general overview of the progress of its applications over the past decade is also discussed, including the treatment of iron overload-associated diseases, its clinical use against cancer and neurodegenerative disorders and its role as a diagnostic tool.
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Nurchi VM, Cappai R, Spano N, Sanna G. A Friendly Complexing Agent for Spectrophotometric Determination of Total Iron. Molecules 2021; 26:3071. [PMID: 34063849 PMCID: PMC8196596 DOI: 10.3390/molecules26113071] [Citation(s) in RCA: 6] [Impact Index Per Article: 2.0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 04/27/2021] [Revised: 05/18/2021] [Accepted: 05/19/2021] [Indexed: 11/16/2022] Open
Abstract
Iron, one of the most common metals in the environment, plays a fundamental role in many biological as well as biogeochemical processes, which determine its availability in different oxidation states. Its relevance in environmental and industrial chemistry, human physiology, and many other fields has made it necessary to develop and optimize analysis techniques for accurate determination. Spectrophotometric methods are the most frequently applied in the analytical determination of iron in real samples. Taking advantage of the fact that desferrioxamine B, a trihydroxamic acid used since the 1970s in chelation therapy for iron overload treatment, forms a single stable 1:1 complex with iron in whichever oxidation state it can be found, a smart spectrophotometric method for the analytical determination of iron concentration was developed. In particular, the full compliance with the Lambert-Beer law, the range of iron concentration, the influence of pH, and the interference of other metal ions have been taken into account. The proposed method was validated in terms of LoD, LoQ, linearity, precision, and trueness, and has been applied for total iron determination in natural water certified material and in biological reference materials such as control human urine and control serum.
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Affiliation(s)
- Valeria M. Nurchi
- Dipartimento di Scienze della Vita e dell’Ambiente, Università di Cagliari, Cittadella Universitaria, 09042 Cagliari, Italy;
| | - Rosita Cappai
- Dipartimento di Scienze della Vita e dell’Ambiente, Università di Cagliari, Cittadella Universitaria, 09042 Cagliari, Italy;
| | - Nadia Spano
- Dipartimento di Chimica e Farmacia, University of Sassari, Via Vienna 2, 07100 Sassari, Italy;
| | - Gavino Sanna
- Dipartimento di Chimica e Farmacia, University of Sassari, Via Vienna 2, 07100 Sassari, Italy;
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5
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Abstract
The paper presents the synthesis and preliminary characterization of two novel solid-phase sorbents for iron(III), resulting from the functionalization of ethylene-vinyl alcohol copolymer (EVOH) with deferoxamine, DFO (DFO@EVOH), and a novel tripodal 3-hydroxy-4-pyridinone, named 3,4-HP (3,4-HP@EVOH). DFO and 3,4-HP have been covalently bonded to EVOH, using carbonyldiimidazole as a coupling agent. Before their use as Fe(III) sorbents, they were warm-pressed to obtain a thin film. Polymers have been characterized by conventional physico-chemical techniques; furthermore, the sorption properties towards Fe(III) were investigated. The physico-chemical characterization of the new solid-state devices demonstrates the effective linkage of the two receptors on the polymeric support. Despite a relatively low sorption capacity for both materials, the stoichiometry and the complexation constants of Fe(III)/DFO@EVOH and Fe(III)/3,4-HP@EVOH are in pretty good agreement with those obtained for the same ligands in aqueous solutions.
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Duenas-Ramirez P, Bertagnolli C, Müller R, Sartori K, Boos A, Elhabiri M, Bégin-Colin S, Mertz D. Highly chelating stellate mesoporous silica nanoparticles for specific iron removal from biological media. J Colloid Interface Sci 2020; 579:140-151. [PMID: 32580084 DOI: 10.1016/j.jcis.2020.06.013] [Citation(s) in RCA: 15] [Impact Index Per Article: 3.8] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 03/17/2020] [Revised: 05/22/2020] [Accepted: 06/02/2020] [Indexed: 12/19/2022]
Abstract
In this work, the design of a new generation of functionalized large pore silica nanoparticles is addressed for the specific removal of iron from biological environments. Herein, mesoporous silica with a large pore stellate morphology, denoted STMS, were grafted with the highly specific iron chelating agent desferrioxamine B, DFoB. The challenge of this work was the step by step elaboration of the nanoplatform and the evaluation of its chelating efficiency and selectivity. Hence, the controlled covalent grafting of DFoB specific iron chelator, was successfully achieved ensuring a high grafting rate of chelating ligand of 730 nmol·mg-1 (i.e., 0.85 ligand·nm-2). Furthermore, these highly chelating STMS silica were able to capture iron(III) stabilized with nitrilotriacetic acid (NTA) in solution at physiological pH with a fast kinetics (less than 30 min). For a stoichiometry 0.85:1 (FeNTA : DFoB), the STMS-DFoB nanoparticles allowed reaching capture capacity and efficiency of 480 nmolFe3+/mg SiO2 and 78%, respectively. Regarding the selectivity features of the removal process, studies were performed with two different media composed of various metal ions: (i) an equimolar solution of various metal cations and (ii) a Barth's buffer mimicking the brain solution composition. In both cases, the chelating STMS-DFoB showed a high selectivity for iron versus other ions at the same (Al3+) or different valency (Na+, K+…). Finally, this work paves the way for new nanosystems for metal overload treatments as well as for future highly chelating nanoplatforms that can be used at the interface between depollution and nanomedecine.
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Affiliation(s)
- Paula Duenas-Ramirez
- Institut de Physique et Chimie des Matériaux de Strasbourg (IPCMS), UMR-7504 CNRS-Université de Strasbourg, 23 rue du Lœss, BP 34 67034 Strasbourg Cedex 2, France
| | - Caroline Bertagnolli
- Equipe de Reconnaissance et Procédés pour la Séparation Moléculaire (RePSeM), IPHC, UMR 7178 CNRS, Université de Strasbourg, ECPM, 25 rue Becquerel, 67087 Strasbourg Cedex 2, France
| | - Roxane Müller
- Institut de Physique et Chimie des Matériaux de Strasbourg (IPCMS), UMR-7504 CNRS-Université de Strasbourg, 23 rue du Lœss, BP 34 67034 Strasbourg Cedex 2, France
| | - Kevin Sartori
- Institut de Physique et Chimie des Matériaux de Strasbourg (IPCMS), UMR-7504 CNRS-Université de Strasbourg, 23 rue du Lœss, BP 34 67034 Strasbourg Cedex 2, France
| | - Anne Boos
- Equipe de Reconnaissance et Procédés pour la Séparation Moléculaire (RePSeM), IPHC, UMR 7178 CNRS, Université de Strasbourg, ECPM, 25 rue Becquerel, 67087 Strasbourg Cedex 2, France
| | - Mourad Elhabiri
- Equipe de Chimie Bioorganique et Médicinale, Laboratoire d'Innovation Moléculaire et Applications (LIMA), UMR 7042, CNRS-ECPM-Université de Strasbourg-Université de Haute Alsace, 25 rue Becquerel, 67087 Strasbourg Cedex, France
| | - Sylvie Bégin-Colin
- Institut de Physique et Chimie des Matériaux de Strasbourg (IPCMS), UMR-7504 CNRS-Université de Strasbourg, 23 rue du Lœss, BP 34 67034 Strasbourg Cedex 2, France
| | - Damien Mertz
- Institut de Physique et Chimie des Matériaux de Strasbourg (IPCMS), UMR-7504 CNRS-Université de Strasbourg, 23 rue du Lœss, BP 34 67034 Strasbourg Cedex 2, France.
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7
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Rasheed A, Carvalho AAC, de Carvalho GGA, Ghous T, Nomura CS, Esposito BP. Chromium removal from aqueous solutions using new silica gel conjugates of desferrioxamine or diethylenetriaminepentaacetic acid. ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH INTERNATIONAL 2020; 27:15635-15644. [PMID: 32078726 DOI: 10.1007/s11356-020-08097-5] [Citation(s) in RCA: 1] [Impact Index Per Article: 0.3] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Subscribe] [Scholar Register] [Received: 11/25/2019] [Accepted: 02/12/2020] [Indexed: 06/10/2023]
Abstract
Desferrioxamine (DFO) and diethylenetriaminepentaacetic acid (DTPA) conjugated with silica gel (IDFOSG and IDTPASG, respectively) were evaluated as adsorbents for chromium in aqueous solutions. Different parameters affecting adsorption such as pH, sorbent dosage, contact time, sample volume and potential of interfering ions have been optimized. The optimum pH for chromium binding was 4 for 100 mg of adsorbents at 5 min of table shaking with 5 mL sample volume of chromium solutions. Langmuir adsorption model described the removal of chromium ions. The adsorption capacity for chromium was 90% for IDFOSG and 83% for IDTPASG in single solutions, and at least 75% in multielemental solutions. Considering the removal efficacy, regeneration and stability, DFO-grafted silica gel was generally superior to its DTPA counterpart and may be applied to the removal of traces of chromium species from natural waters.
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Affiliation(s)
- Aamir Rasheed
- Department of Chemistry, University of Azad Jammu and Kashmir, Muzaffarabad, Azad Kashmir, 13100, Pakistan
| | | | | | - Tahseen Ghous
- Department of Chemistry, Mirpur University of Science & Technology (MUST), Mirpur, Azad Jammu and Kashmir, 10250, Pakistan
| | - Cassiana Seimi Nomura
- Department of Fundamental Chemistry, University of São Paulo, Av. Prof. Lineu Prestes, 748, São Paulo, SP, 05508-000, Brazil
| | - Breno Pannia Esposito
- Department of Fundamental Chemistry, University of São Paulo, Av. Prof. Lineu Prestes, 748, São Paulo, SP, 05508-000, Brazil.
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8
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A nanocellulose-based colorimetric assay kit for smartphone sensing of iron and iron-chelating deferoxamine drug in biofluids. Anal Chim Acta 2019; 1087:104-112. [DOI: 10.1016/j.aca.2019.08.056] [Citation(s) in RCA: 25] [Impact Index Per Article: 5.0] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 07/13/2019] [Revised: 08/19/2019] [Accepted: 08/20/2019] [Indexed: 12/28/2022]
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9
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Alberti G, Emma G, Colleoni R, Nurchi VM, Pesavento M, Biesuz R. Simple solid-phase spectrophotometric method for free iron(III) determination. ARAB J CHEM 2019. [DOI: 10.1016/j.arabjc.2014.08.017] [Citation(s) in RCA: 3] [Impact Index Per Article: 0.6] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 10/24/2022] Open
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10
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Biesuz R, Santos MA, Nurchi VM, Alberti G. Development of a sensor for trivalent iron: AHP fixed on mesoporous silica. NEW J CHEM 2018. [DOI: 10.1039/c8nj00869h] [Citation(s) in RCA: 8] [Impact Index Per Article: 1.3] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 12/30/2022]
Abstract
Optical sensor for iron(iii) detection via Fe(iii) complexation in the solid phase.
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Affiliation(s)
- Raffaela Biesuz
- Dipartimento di Chimica
- Università degli Studi di Pavia
- Pavia 27100
- Italy
| | - Maria Amelia Santos
- Centro de Quimica Estrutural – Istituto Superior Técnico, Universidade de Lisboa
- Lisboa 1049-001
- Portugal
| | - Valeria M. Nurchi
- Dipartimento di Sc. Chimiche e Geologiche
- Università di Cagliari
- Cittadella Universitaria
- Monserrato 09042
- Italy
| | - Giancarla Alberti
- Dipartimento di Chimica
- Università degli Studi di Pavia
- Pavia 27100
- Italy
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11
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Chatterjee S, Gohil H, Paital AR. Dual Functions of Selective Ferric Ion Detection and Removal by a Recyclable Fluorescence Active Multifunctional Silica Material and Toxic Dye Removal from Aqueous Solution. ChemistrySelect 2017. [DOI: 10.1002/slct.201700813] [Citation(s) in RCA: 18] [Impact Index Per Article: 2.6] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 12/14/2022]
Affiliation(s)
- Sobhan Chatterjee
- Sobhan Chatterjee, Hardipsinh Gohil, Dr. Alok R. Paital, Salt and Marine Chemicals Division & Academy of Scientific and Innovative Research (AcSIR); CSIR-Central Salt & Marine Chemicals Research Institute, G.B. Marg; Bhavnagar- 364002, Gujarat India
| | - Hardipsinh Gohil
- Sobhan Chatterjee, Hardipsinh Gohil, Dr. Alok R. Paital, Salt and Marine Chemicals Division & Academy of Scientific and Innovative Research (AcSIR); CSIR-Central Salt & Marine Chemicals Research Institute, G.B. Marg; Bhavnagar- 364002, Gujarat India
| | - Alok Ranjan Paital
- Sobhan Chatterjee, Hardipsinh Gohil, Dr. Alok R. Paital, Salt and Marine Chemicals Division & Academy of Scientific and Innovative Research (AcSIR); CSIR-Central Salt & Marine Chemicals Research Institute, G.B. Marg; Bhavnagar- 364002, Gujarat India
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12
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Alberti G, Re S, Tivelli AMC, Biesuz R. Smart sensory materials for divalent cations: a dithizone immobilized membrane for optical analysis. Analyst 2016; 141:6140-6148. [DOI: 10.1039/c6an01560c] [Citation(s) in RCA: 10] [Impact Index Per Article: 1.3] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/21/2022]
Abstract
Mem-DTZ for Cu(ii), Cd(ii), Zn(ii) and Hg(ii). Single analyte and simultaneous two cation determinations by RGB and PLS methods.
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Affiliation(s)
| | - Silvia Re
- Dipartimento di Chimica
- University of Pavia
- 27100 Pavia
- Italy
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13
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Sundramoorthy AK, Premkumar BS, Gunasekaran S. Reduced Graphene Oxide-Poly(3,4-ethylenedioxythiophene) Polystyrenesulfonate Based Dual-Selective Sensor for Iron in Different Oxidation States. ACS Sens 2015. [DOI: 10.1021/acssensors.5b00172] [Citation(s) in RCA: 24] [Impact Index Per Article: 2.7] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 12/22/2022]
Affiliation(s)
- Ashok K. Sundramoorthy
- Department of Biological
Systems Engineering, University of Wisconsin-Madison, 460 Henry Mall, Madison, Wisconsin 53706, United States
| | - Bhagya S. Premkumar
- Department of Biological
Systems Engineering, University of Wisconsin-Madison, 460 Henry Mall, Madison, Wisconsin 53706, United States
| | - Sundaram Gunasekaran
- Department of Biological
Systems Engineering, University of Wisconsin-Madison, 460 Henry Mall, Madison, Wisconsin 53706, United States
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14
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Li W, Tian Y, Zhang B, Tian L, Li X, Zhang H, Ali N, Zhang Q. Fabrication of a Fe3O4@SiO2@mSiO2-HPG-COOH-Pd(0) supported catalyst and its performance in catalyzing the Suzuki cross-coupling reaction. NEW J CHEM 2015. [DOI: 10.1039/c4nj02407a] [Citation(s) in RCA: 20] [Impact Index Per Article: 2.2] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/21/2022]
Abstract
A novel Fe3O4@SiO2@mSiO2-HPG-COOH-Pd(0) catalyst with high catalytic activity and stability was successfully synthesized.
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Affiliation(s)
- Wei Li
- Department of Applied Chemistry
- College of Science
- Northwestern Polytechnical University
- Xi'an 710072
- China
| | - Yi Tian
- Department of Applied Chemistry
- College of Science
- Northwestern Polytechnical University
- Xi'an 710072
- China
| | - Baoliang Zhang
- Department of Applied Chemistry
- College of Science
- Northwestern Polytechnical University
- Xi'an 710072
- China
| | - Lei Tian
- Department of Applied Chemistry
- College of Science
- Northwestern Polytechnical University
- Xi'an 710072
- China
| | - Xiangjie Li
- Department of Applied Chemistry
- College of Science
- Northwestern Polytechnical University
- Xi'an 710072
- China
| | - Hepeng Zhang
- Department of Applied Chemistry
- College of Science
- Northwestern Polytechnical University
- Xi'an 710072
- China
| | - Nisar Ali
- Department of Applied Chemistry
- College of Science
- Northwestern Polytechnical University
- Xi'an 710072
- China
| | - Qiuyu Zhang
- Department of Applied Chemistry
- College of Science
- Northwestern Polytechnical University
- Xi'an 710072
- China
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15
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An X, Zhuo S, Zhang P, Zhu C. Carbon dots based turn-on fluorescent probes for oxytetracycline hydrochloride sensing. RSC Adv 2015. [DOI: 10.1039/c4ra16456c] [Citation(s) in RCA: 41] [Impact Index Per Article: 4.6] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/21/2022] Open
Abstract
A well-designed turn-on sensor has been constructed and used for the assay of oxytetracycline hydrochloride in real milk samples.
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Affiliation(s)
- Xuting An
- Key Laboratory of Functional Molecular Solids
- Ministry of Education
- Anhui Key Laboratory of Chemo-Biosensing
- College of Chemistry and Materials Science
- Anhui Normal University
| | - Shujuan Zhuo
- Key Laboratory of Functional Molecular Solids
- Ministry of Education
- Anhui Key Laboratory of Chemo-Biosensing
- College of Chemistry and Materials Science
- Anhui Normal University
| | - Ping Zhang
- Key Laboratory of Functional Molecular Solids
- Ministry of Education
- Anhui Key Laboratory of Chemo-Biosensing
- College of Chemistry and Materials Science
- Anhui Normal University
| | - Changqing Zhu
- Key Laboratory of Functional Molecular Solids
- Ministry of Education
- Anhui Key Laboratory of Chemo-Biosensing
- College of Chemistry and Materials Science
- Anhui Normal University
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16
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Cennamo N, Alberti G, Pesavento M, D'Agostino G, Quattrini F, Biesuz R, Zeni L. A simple small size and low cost sensor based on surface plasmon resonance for selective detection of Fe(III). SENSORS 2014; 14:4657-71. [PMID: 24608007 PMCID: PMC4003962 DOI: 10.3390/s140304657] [Citation(s) in RCA: 43] [Impact Index Per Article: 4.3] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Download PDF] [Figures] [Subscribe] [Scholar Register] [Received: 01/16/2014] [Revised: 02/28/2014] [Accepted: 03/04/2014] [Indexed: 11/16/2022]
Abstract
A simple, small size, and low cost sensor based on a Deferoxamine Self Assembled Monolayer (DFO-SAM) and Surface Plasmon Resonance (SPR) transduction, in connection with a Plastic Optical Fiber (POF), has been developed for the selective detection of Fe(III). DFO-SAM sensors based on appropriate electrochemical techniques can be frequently found in the scientific literature. In this work, we present the first example of a DFO-SAM sensor based on SPR in an optical fiber. The SPR sensing platform was realized by removing the cladding of a plastic optical fiber along half the circumference, spin coating a buffer of Microposit S1813 photoresist on the exposed core, and finally sputtering a thin gold film. The hydroxamate siderophore deferoxamine (DFO), having high binding affinity for Fe(III), is then used in its immobilized form, as self-assembled monolayer on the gold layer surface of the POF sensor. The results showed that the DFO-SAM-POF-sensor was able to sense the formation of the Fe(III)/DFO complex in the range of concentrations between 1 μm and 50 μm with a linearity range from 0 to 30 μm of Fe(III). The selectivity of the sensor was also proved by interference tests.
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Affiliation(s)
- Nunzio Cennamo
- Department of Industrial and Information Engineering, Second University of Naples, Via Roma 29, Aversa 81031, Italy.
| | - Giancarla Alberti
- Department of Chemistry, University of Pavia, Via Taramelli 12, Pavia 27100, Italy.
| | - Maria Pesavento
- Department of Chemistry, University of Pavia, Via Taramelli 12, Pavia 27100, Italy.
| | - Girolamo D'Agostino
- Department of Chemistry, University of Pavia, Via Taramelli 12, Pavia 27100, Italy.
| | - Federico Quattrini
- Department of Chemistry, University of Pavia, Via Taramelli 12, Pavia 27100, Italy.
| | - Raffaela Biesuz
- Department of Chemistry, University of Pavia, Via Taramelli 12, Pavia 27100, Italy.
| | - Luigi Zeni
- Department of Industrial and Information Engineering, Second University of Naples, Via Roma 29, Aversa 81031, Italy.
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