Biomimetic Approach to Confer Redox Activity to Thin Chitosan Films
暂无分享,去创建一个
Gregory F. Payne | Xiaowen Shi | Yi Liu | Eunkyoung Kim | William E. Bentley | W. Bentley | Eunkyoung Kim | G. Payne | Xiaowen Shi | Yi Liu | Xiaohua Yang | Xiaohuan Yang
[1] A. Hillman,et al. Dual quartz crystal microbalance compensation using a submerged reference crystal. Effect of surface roughness and liquid properties , 1994 .
[2] E. O’Loughlin. Effects of electron transfer mediators on the bioreduction of lepidocrocite (gamma-FeOOH) by Shewanella putrefaciens CN32. , 2008, Environmental science & technology.
[3] Gregory F. Payne,et al. Mimicking Biological Phenol Reaction Cascades to Confer Mechanical Function , 2006 .
[4] V. Diculescu,et al. Electrochemical study of quercetin-DNA interactions: part I. Analysis in incubated solutions. , 2004, Bioelectrochemistry.
[5] Mark R Pederson,et al. Towards structure-property-function relationships for eumelanin. , 2005, Soft matter.
[6] D. R. Bond,et al. Shewanella secretes flavins that mediate extracellular electron transfer , 2008, Proceedings of the National Academy of Sciences.
[7] S. Yao,et al. Preparation of chitosan–dopamine-multiwalled carbon nanotubes nanocomposite for electrocatalytic oxidation and sensitive electroanalysis of NADH , 2009 .
[8] Stanley Bruckenstein,et al. Experimental aspects of use of the quartz crystal microbalance in solution , 1985 .
[9] P. Farmer,et al. Melanosomal Damage in Normal Human Melanocytes Induced by UVB and Metal Uptake—A Basis for the Pro‐oxidant State of Melanoma † , 2008, Photochemistry and photobiology.
[10] K. Kramer,et al. Model reactions for insect cuticle sclerotization: cross-linking of recombinant cuticular proteins upon their laccase-catalyzed oxidative conjugation with catechols. , 2006, Insect biochemistry and molecular biology.
[11] P. Schaaf,et al. Characterization of Dopamine−Melanin Growth on Silicon Oxide , 2009 .
[12] A. Casadevall,et al. Impact of Melanin on Microbial Virulence and Clinical Resistance to Antimicrobial Compounds , 2006, Antimicrobial Agents and Chemotherapy.
[13] L. Tisa,et al. Electron transfer from Shewanella algae BrY to hydrous ferric oxide is mediated by cell-associated melanin. , 2003, FEMS microbiology letters.
[14] E. Jacobson,et al. Redox buffering by melanin and Fe(II) in Cryptococcus neoformans , 1997, Journal of bacteriology.
[15] Jacques P. Bothma,et al. Device‐Quality Electrically Conducting Melanin Thin Films , 2008 .
[16] Gregory F. Payne,et al. Biomimetic Pattern Transfer , 2005 .
[17] Hyunmin Yi,et al. Voltage-Dependent Assembly of the Polysaccharide Chitosan onto an Electrode Surface , 2002 .
[18] Tracy K. Teal,et al. Redox-Active Antibiotics Control Gene Expression and Community Behavior in Divergent Bacteria , 2008, Science.
[19] A. Nappi,et al. Melanogenesis and associated cytotoxic reactions: applications to insect innate immunity. , 2005, Insect biochemistry and molecular biology.
[20] N. Cianciotto,et al. The Secreted Pyomelanin Pigment of Legionella pneumophila Confers Ferric Reductase Activity , 2007, Infection and Immunity.
[21] Dana N. Peles,et al. Insights into melanosomes and melanin from some interesting spatial and temporal properties. , 2008, The journal of physical chemistry. B.
[22] F. Tureček,et al. Oxidative conjugation of catechols with proteins in insect skeletal systems , 2001 .
[23] P. Farmer,et al. Redox behavior of melanins: direct electrochemistry of dihydroxyindole-melanin and its Cu and Zn adducts. , 2002, Journal of inorganic biochemistry.
[24] R. Murray,et al. Electroactive Polymers and Macromolecular Electronics , 1986, Science.
[25] S. Creager,et al. Electrochemical Rectification at a Monolayer-Modified Electrode , 1996 .
[26] Yingchun Fu,et al. Electrodeposition of carbon nanotubes-chitosan-glucose oxidase biosensing composite films triggered by reduction of p-benzoquinone or H2O2. , 2007, The journal of physical chemistry. B.
[27] J McGinness,et al. Amorphous Semiconductor Switching in Melanins , 1974, Science.
[28] Dianne K. Newman,et al. A role for excreted quinones in extracellular electron transfer , 2000, Nature.
[29] Derek R. Lovley,et al. Evidence for Involvement of an Electron Shuttle in Electricity Generation by Geothrix fermentans , 2005, Applied and Environmental Microbiology.
[30] Michael J. Tarlov,et al. Electrochemical study of chitosan films deposited from solution at reducing potentials , 2006 .
[31] E. Jacobson. Pathogenic roles for fungal melanins. , 2000, Clinical microbiology reviews.
[32] Paul Meredith,et al. The physical and chemical properties of eumelanin. , 2006, Pigment cell research.
[33] C. R. Raj,et al. Electrochemical Functionalization of a Gold Electrode with Redox-Active Self-Assembled Monolayer for Electroanalytical Application , 2008 .
[34] J. Lodge,et al. Mechanisms of Resistance to Oxidative and Nitrosative Stress: Implications for Fungal Survival in Mammalian Hosts , 2004, Eukaryotic Cell.
[35] Haeshin Lee,et al. Mussel-Inspired Surface Chemistry for Multifunctional Coatings , 2007, Science.
[36] I. Zhitomirsky,et al. Electrophoretic deposition of composite hydroxyapatite–silica–chitosan coatings , 2007 .
[37] J. McGinness. Mobility Gaps: A Mechanism for Band Gaps in Melanins , 1972, Science.
[38] Michael D. Ward,et al. Measurement of interfacial processes at electrode surfaces with the electrochemical quartz crystal microbalance , 1992 .
[39] W. Knoll,et al. Electrochemical rectification by redox-labeled bioconjugates: molecular building blocks for the construction of biodiodes. , 2008, Langmuir : the ACS journal of surfaces and colloids.
[40] R. Prior,et al. Standardized methods for the determination of antioxidant capacity and phenolics in foods and dietary supplements. , 2005, Journal of agricultural and food chemistry.
[41] F. P. van der Zee,et al. Impact and application of electron shuttles on the redox (bio)transformation of contaminants: a review. , 2009, Biotechnology advances.
[42] Hyunmin Yi,et al. Electrochemically Induced Deposition of a Polysaccharide Hydrogel onto a Patterned Surface , 2003 .
[43] J. Waite,et al. Cross-linking in adhesive quinoproteins: studies with model decapeptides. , 2000, Biochemistry.
[44] Carlos Frederico de Oliveira Graeff,et al. Effects of hydrogen on the electronic properties of synthetic melanin , 2006 .
[45] G. Williamson,et al. Dietary intake and bioavailability of polyphenols. , 2000, The Journal of nutrition.
[46] S. Reis,et al. Structure-property studies on the antioxidant activity of flavonoids present in diet. , 2005, Free radical biology & medicine.
[47] M. Passacantando,et al. Structural, electrical, electronic and optical properties of melanin films , 2009, The European physical journal. E, Soft matter.
[48] M. Wrighton,et al. Surface Functionalization of Electrodes with Molecular Reagents , 1986, Science.
[49] G. Payne,et al. Chitosan-coated electrodes for bimodal sensing: selective post-electrode film reaction for spectroelectrochemical analysis. , 2008, Langmuir : the ACS journal of surfaces and colloids.
[50] Kevin T. Finneran,et al. Influence of Reduced Electron Shuttling Compounds on Biological H2 Production in the Fermentative Pure Culture Clostridium beijerinckii , 2007, Current Microbiology.
[51] J. O'Brien,et al. Tyrosinase catalyzed protein polymerization as an in vitro model for quinone tanning of insect cuticle , 1987 .
[52] J. Gordon,et al. Frequency of a quartz microbalance in contact with liquid , 1985 .
[53] Xin Pang,et al. Electrodeposition of composite hydroxyapatite–chitosan films , 2005 .
[54] E. Ainsworth,et al. Estimation of total phenolic content and other oxidation substrates in plant tissues using Folin–Ciocalteu reagent , 2007, Nature Protocols.
[55] A. Nappi,et al. Melanization immune responses in mosquito vectors. , 2005, Trends in parasitology.
[56] J. Dolfing,et al. Exocellular electron transfer in anaerobic microbial communities. , 2006, Environmental microbiology.
[57] D. Lowy,et al. The role of 4-hydroxyphenylpyruvate dioxygenase in enhancement of solid-phase electron transfer by Shewanella oneidensis MR-1. , 2007, FEMS microbiology ecology.
[58] Jeffrey A. Gralnick,et al. Shewanella oneidensis MR-1 Uses Overlapping Pathways for Iron Reduction at a Distance and by Direct Contact under Conditions Relevant for Biofilms , 2005, Applied and Environmental Microbiology.
[59] Hyunmin Yi,et al. Biofabrication with chitosan. , 2005, Biomacromolecules.
[60] P. Schmitt‐Kopplin,et al. Design of quinonoid-enriched humic materials with enhanced redox properties. , 2005, Environmental science & technology.
[61] Dejian Huang,et al. The chemistry behind antioxidant capacity assays. , 2005, Journal of agricultural and food chemistry.
[62] L. Tisa,et al. Melanin Production and Use as a Soluble Electron Shuttle for Fe(III) Oxide Reduction and as a Terminal Electron Acceptor by Shewanella algae BrY , 2002, Applied and Environmental Microbiology.
[63] Reinhard Neumann,et al. Single conical nanopores displaying pH-tunable rectifying characteristics. manipulating ionic transport with zwitterionic polymer brushes. , 2009, Journal of the American Chemical Society.
[64] H. Ohshima,et al. Antioxidant and pro-oxidant actions of flavonoids: effects on DNA damage induced by nitric oxide, peroxynitrite and nitroxyl anion. , 1998, Free radical biology & medicine.
[65] Stephen J. Martin,et al. Characterization of a quartz crystal microbalance with simultaneous mass and liquid loading , 1991 .
[66] T. Sarna,et al. Chemical and structural diversity in eumelanins: unexplored bio-optoelectronic materials. , 2009, Angewandte Chemie.
[67] R. Hozalski,et al. Microbial Biofilm Voltammetry: Direct Electrochemical Characterization of Catalytic Electrode-Attached Biofilms , 2008, Applied and Environmental Microbiology.
[68] Hyunmin Yi,et al. Spatially Selective Deposition of a Reactive Polysaccharide Layer onto a Patterned Template , 2003 .
[69] Derek R Lovley,et al. Extracellular electron transfer: wires, capacitors, iron lungs, and more , 2008, Geobiology.
[70] R. Tucceri. Redox mediation and permeation processes at deactivated poly(o-aminophenol) films. A study applying rotating disc electrode voltammetry and electrochemical impedance spectroscopy , 2009 .
[71] N. Trinajstic,et al. SAR and QSAR of the antioxidant activity of flavonoids. , 2007, Current medicinal chemistry.
[72] D. Lovley. The microbe electric: conversion of organic matter to electricity. , 2008, Current opinion in biotechnology.
[73] W. Knoll,et al. Tuning the Unidirectional Electron Transfer at Interfaces with Multilayered Redox‐active Supramolecular Bionanoassemblies , 2008 .