Tailoring Sol–Gel-Derived Silica Materials for Optical Biosensing
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John D. Brennan | J. Brennan | E. Forsberg | M. R. Monton | Maria Rowena N. Monton | Erica M. Forsberg
[1] C. Hsueh,et al. Permselectivities and ion-exchange properties of organically modified sol-gel electrodes , 1997 .
[2] J. Brennan,et al. Entrapment of horseradish peroxidase in sugar-modified silica monoliths: toward the development of a biocatalytic sensor. , 2007, Biosensors & bioelectronics.
[3] N K Chaudhury,et al. Entrapment of biomolecules in sol-gel matrix for applications in biosensors: problems and future prospects. , 2007, Biosensors & bioelectronics.
[4] J. Cabral,et al. Enhanced biocatalytic activity of ORMOSIL-encapsulated cutinase: The matrix structural perspective , 2008 .
[5] J. Brennan,et al. Sugar-modified silanes: precursors for silica monoliths , 2004 .
[6] T. Pinnavaia,et al. Mesoporous Alumina Molecular Sieves , 1996 .
[7] D. Avnir,et al. Polarities of sol-gel-derived Ormosils and of their interfaces with solvents , 2001 .
[8] Yi-Ge Zhou,et al. Simple approach for efficient encapsulation of enzyme in silica matrix with retained bioactivity. , 2009, Analytical chemistry.
[9] Fredrickson,et al. Triblock copolymer syntheses of mesoporous silica with periodic 50 to 300 angstrom pores , 1998, Science.
[10] J. Brennan,et al. Coupled enzyme reaction microarrays based on pin-printing of sol–gel derived biomaterials , 2003 .
[11] Mingjun Zhang,et al. Bio-Microarray Fabrication Techniques—A Review , 2006, Critical reviews in biotechnology.
[12] David C Schriemer,et al. Micro-Scale Frontal Affinity Chromatography with Mass Spectrometric Detection: A New Method for the Screening of Compound Libraries. , 1998, Angewandte Chemie.
[13] O. Velev,et al. Porous silica via colloidal crystallization , 1997, Nature.
[14] M. Reetz,et al. Efficient Heterogeneous Biocatalysts by Entrapment of Lipases in Hydrophobic Sol–Gel Materials , 1995 .
[15] J. Brennan,et al. Fluorescent Probes as Reporters on the Local Structure and Dynamics in Sol−Gel-Derived Nanocomposite Materials , 2001 .
[16] H. Le,et al. Progress and Trends in Ink-jet Printing Technology , 1998, Journal of Imaging Science and Technology.
[17] J. Brennan,et al. Continuous flow immobilized enzyme reactor-tandem mass spectrometry for screening of AChE inhibitors in complex mixtures. , 2011, Analytical chemistry.
[18] David Levy,et al. A Novel and Simple Alcohol-Free Sol−Gel Route for Encapsulation of Labile Proteins , 2002 .
[19] L. A. Chow,et al. Cracking behavior of xerogel silica films on silicon substrates , 1998 .
[20] W Cris Wilson,et al. Cell and organ printing 1: protein and cell printers. , 2003, The anatomical record. Part A, Discoveries in molecular, cellular, and evolutionary biology.
[21] Bradley F. Chmelka,et al. Continuous Mesoporous Silica Films with Highly Ordered Large Pore Structures , 1998 .
[22] H. Ju,et al. Preparation of porous titania sol-gel matrix for immobilization of horseradish peroxidase by a vapor deposition method. , 2002, Analytical chemistry.
[23] J. Zink,et al. Nicotinamide Adenine Dinucleotide Phosphate Fluorescence and Absorption Monitoring of Enzymic Activity in Silicate Sol-Gels for Chemical Sensing Applications , 1995 .
[24] T. Coradin,et al. Sol–gel encapsulation of bacteria: a comparison between alkoxide and aqueous routes , 2001 .
[25] Moo-Yeal Lee,et al. Metabolizing enzyme toxicology assay chip (MetaChip) for high-throughput microscale toxicity analyses. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[26] J. Brennan,et al. Macroporous Silica Monoliths Derived from Glyceroxysilanes: Controlling Gel Formation and Pore Structure , 2005 .
[27] Joseph A. Gardella,et al. Tools to Rapidly Produce and Screen Biodegradable Polymer and Sol-Gel-Derived Xerogel Formulations , 2002 .
[28] J. Kong,et al. Probing trace phenols based on mediator-free alumina sol--gel-derived tyrosinase biosensor. , 2000, Analytical chemistry.
[29] F. H. Dickey,et al. The Preparation of Specific Adsorbents. , 1949, Proceedings of the National Academy of Sciences of the United States of America.
[30] F. F. Moraes,et al. Influence of the alkyl-substituted silane precursor on sol–gel encapsulated lipase activity , 2004 .
[31] Ruey-an Doong,et al. Preparation and characterization of urease-encapsulated biosensors in poly(vinyl alcohol)-modified silica sol-gel materials. , 2007, Biosensors & bioelectronics.
[32] Eunkyung Kim,et al. A sol-gel-integrated protein array system for affinity analysis of aptamer-target protein interaction. , 2011, Nucleic acid therapeutics.
[33] David Avnir,et al. General Method for Chiral Imprinting of Sol−Gel Thin Films Exhibiting Enantioselectivity , 2003 .
[34] N. Kostić,et al. Kinetics of Photoinduced Electron-Transfer Reactions within Sol-Gel Silica Glass Doped with Zinc Cytochrome c. Study of Electrostatic Effects in Confined Liquids , 1997 .
[35] Martin Hegner,et al. Inkjet deposition of alkanethiolate monolayers and DNA oligonucleotides on gold: evaluation of spot uniformity by wet etching. , 2004, Langmuir : the ACS journal of surfaces and colloids.
[36] T. Toyo’oka,et al. Silica sol-gel/organic hybrid material for protein encapsulated column of capillary electrochromatography. , 2004, Journal of chromatography. A.
[37] L. M. Davies,et al. Development of a bioactive paper sensor for detection of neurotoxins using piezoelectric inkjet printing of sol-gel-derived bioinks. , 2009, Analytical chemistry.
[38] Ursula Bilitewski,et al. Mass Production of Biosensors , 1993 .
[39] C. Hogue,et al. Screening of antagonists based on induced dissociation of a calmodulin–melittin interaction entrapped in a sol–gel derived matrix , 2002 .
[40] Philseok Kim,et al. Improved sensitivity and physical properties of sol-gel protein chips using large-scale material screening and selection. , 2006, Analytical chemistry.
[41] P. He,et al. Highly active horseradish peroxidase immobilized in 1-butyl-3-methylimidazolium tetrafluoroborate room-temperature ionic liquid based sol-gel host materials. , 2005, Chemical communications.
[42] D. Avnir,et al. Recent bio-applications of sol–gel materials , 2006 .
[43] M. Reetz,et al. Efficient immobilization of lipases by entrapment in hydrophobic sol‐gel materials , 2000, Biotechnology and bioengineering.
[44] John D. Brennan,et al. Reagentless pH-based biosensing using a fluorescently-labelled dextran co-entrapped with a hydrolytic enzyme in sol–gel derived nanocomposite films , 2002 .
[45] D. Citterio,et al. Inkjet-printed microfluidic multianalyte chemical sensing paper. , 2008, Analytical chemistry.
[46] M. Ferrer,et al. Probing the chemical environment at the porous cage of ormosils through the fluorescence of oxazine 1 , 2001 .
[47] Martin M. F. Choi,et al. An optical glucose biosensor based on entrapped-glucose oxidase in silicate xerogel hybridised with hydroxyethyl carboxymethyl cellulose , 2004 .
[48] J. Brennan,et al. Proteins Entrapped in Silica Monoliths Prepared from Glyceroxysilanes , 2004 .
[49] A. Pierre,et al. The sol-gel encapsulation of enzymes , 2004 .
[50] W. Lee,et al. Protein array consisting of sol-gel bioactive platform for detection of E. coli O157:H7. , 2005, Biosensors & bioelectronics.
[51] Chris W. Brown,et al. Sol-gel glass as a matrix for chemical and biochemical sensing , 1997 .
[52] R. R. Holman,et al. PEN-SIZED DIGITAL 30-SECOND BLOOD GLUCOSE METER , 1987, The Lancet.
[53] J. Brennan,et al. Monolithic membrane-receptor columns: Optimization of column performance for frontal affinity chromatography/mass spectrometry applications , 2006 .
[54] Sung-Ho Shin,et al. Sol-gel Material Optimization for Aptamer Biosensors , 2008 .
[55] Paras N. Prasad,et al. Affinity of antifluorescein antibodies encapsulated within a transparent sol-gel glass , 1993 .
[56] O. Hermanson,et al. Inkjet printing of macromolecules on hydrogels to steer neural stem cell differentiation. , 2007, Biomaterials.
[57] A. G. Oertli,et al. Alkaline Lyotropic Silicate−Surfactant Liquid Crystals , 1997 .
[58] Joseph Wang,et al. Tailoring the macroporosity and performance of sol-gel derived carbon composite glucose sensors , 1997 .
[59] D. Higgins,et al. Single-molecule studies of diffusion by oligomer-bound dyes in organically modified sol-gel-derived silicate films. , 2005, Analytical chemistry.
[60] Pamela M. Norris,et al. Selective Deposition of Biocompatible Sol-Gel Materials , 2004 .
[61] J. Brennan,et al. Measurement of intrinsic fluorescence to probe the conformational flexibility and thermodynamic stability of a single tryptophan protein entrapped in a sol–gel derived glass matrix , 1998 .
[62] Zhaohui Zhang,et al. Molecularly imprinted thin film self-assembled on piezoelectric quartz crystal surface by the sol-gel process for protein recognition. , 2006, Biosensors & bioelectronics.
[63] O. Velev,et al. Microstructured Porous Silica Obtained via Colloidal Crystal Templates , 1998 .
[64] J. Brennan,et al. Improving the Performance of a Sol−Gel-Entrapped Metal-Binding Protein by Maximizing Protein Thermal Stability before Entrapment , 1998 .
[65] S. Saavedra,et al. Spectroscopic characterization of albumin and myoglobin entrapped in bulk sol-gel glasses , 1994 .
[66] J. S. Hartman,et al. Fluorescence and NMR Characterization and Biomolecule Entrapment Studies of Sol−Gel-Derived Organic−Inorganic Composite Materials Formed by Sonication of Precursors , 1999 .
[67] J. Brennan,et al. Fluorescence and physical characterization of sol–gel-derived nanocomposite films suitable for the entrapment of biomolecules , 2002 .
[68] J. Friedman,et al. Preservation of the Native Structure in Myoglobin at Low pH by Sol−Gel Encapsulation , 1998 .
[69] J. Brennan,et al. Using Sugar and Amino Acid Additives to Stabilize Enzymes within Sol−Gel Derived Silica , 2003 .
[70] T. Coradin,et al. Aqueous silicates in biological sol-gel applications: new perspectives for old precursors. , 2007, Accounts of chemical research.
[71] J. Brennan,et al. Properties of Human Serum Albumin Entrapped in Sol−Gel-Derived Silica Bearing Covalently Tethered Sugars , 2005 .
[72] Frank V Bright,et al. Templated xerogels as platforms for biomolecule-less biomolecule sensors. , 2006, Analytica chimica acta.
[73] J. Brennan,et al. Controlling the Material Properties and Biological Activity of Lipase within Sol−Gel Derived Bioglasses via Organosilane and Polymer Doping , 2000 .
[74] F. Bright,et al. Aerosol-generated sol-gel-derived thin films as biosensing platforms , 1996 .
[75] Lee Yook Heng,et al. An optical biosensor for dichlovos using stacked sol-gel films containing acetylcholinesterase and a lipophilic chromoionophore. , 2006, Talanta.
[76] J. Brennan,et al. Non-destructive horseradish peroxidase immobilization in porous silica nanoparticles , 2007 .
[77] Brian D. MacCraith,et al. Sol–gel immobilised ruthenium(II) polypyridyl complexes as chemical transducers for optical pH sensing , 2000 .
[78] S. Upadhyay,et al. A New Glucose Biosensor Based on Sandwich Configuration of Organically Modified Sol-Gel Glass , 1999 .
[79] Huangxian Ju,et al. Immobilization of Biomolecules in Sol–Gels: Biological and Analytical Applications , 2006 .
[80] Iqbal Gill,et al. Bio-doped Nanocomposite Polymers: Sol-Gel Bioencapsulates , 2001 .
[81] D. Higgins,et al. Phase separation in class II organically modified silicate films as probed by phase-imaging atomic force microscopy. , 2005, Langmuir.
[82] J Wang,et al. Screen-printable sol-gel enzyme-containing carbon inks. , 1996, Analytical chemistry.
[83] Katsuya Kato,et al. Enzyme encapsulation in silica particles prepared using enzyme-assisted sol-gel reactions in ionic liquids , 2011 .
[84] J. Brennan,et al. Measurement of Fluorescence from Tryptophan To Probe the Environment and Reaction Kinetics within Protein-Doped Sol-Gel-Derived Glass Monoliths. , 1997, Analytical chemistry.
[85] S. Saavedra,et al. Iodide fluorescence quenching of sol-gel immobilized BSA , 1996 .
[86] J. Brennan,et al. Monitoring the Distribution of Covalently Tethered Sugar Moieties in Sol−Gel-Based Silica Monoliths with Fluorescence Anisotropy: Implications for Entrapped Enzyme Activity , 2006 .
[87] Bruce Dunn,et al. Enzymatic activity of glucose oxidase encapsulated in transparent glass by the sol-gel method , 1992 .
[88] M. Power,et al. Cells in Sol-Gels I: A Cytocompatible Route for the Production of Macroporous Silica Gels , 2000 .
[89] J D Brennan,et al. Comparison of formats for the development of fiber-optic biosensors utilizing sol-gel derived materials entrapping fluorescently-labelled protein. , 1999, The Analyst.
[90] Larry L. Hench,et al. Gel-silica hybrid optics , 1990, Optics & Photonics.
[91] Stephen A. Bagshaw,et al. Templating of Mesoporous Molecular Sieves by Nonionic Polyethylene Oxide Surfactants , 1995, Science.
[92] Jean-Louis Marty,et al. Biosensors based on highly sensitive acetylcholinesterases for enhanced carbamate insecticides detection , 2006 .
[93] Frank V Bright,et al. Pin-printed chemical sensor arrays for simultaneous multianalyte quantification. , 2002, Analytical chemistry.
[94] V. Rives,et al. Favourable influence of hydrophobic surfaces on protein structure in porous organically-modified silica glasses. , 2008, Biomaterials.
[95] D. Eggers,et al. Hydrophobic, organically-modified silica gels enhance the secondary structure of encapsulated apomyoglobin. , 2007, Chemical communications.
[96] John D Brennan,et al. Reagentless bidirectional lateral flow bioactive paper sensors for detection of pesticides in beverage and food samples. , 2009, Analytical chemistry.
[97] Y. Cohen,et al. The structure of submicron polyethylene/silica composite particles† , 2007 .
[98] Alan J. Hurd,et al. Review of sol-gel thin film formation , 1992 .
[99] M. Collinson,et al. The effects of drying time and relative humidity on the stability of sol–gel derived silicate films in solution , 2002 .
[100] J. Brennan,et al. Development of Macroporous Titania Monoliths Using a Biocompatible Method. Part 1: Material Fabrication and Characterization , 2006 .
[101] G. Stucky,et al. Manipulation of pore size distributions in silica and ormosil gels dried under ambient pressure conditions , 2002 .
[102] John D Brennan,et al. Nanovolume kinase inhibition assay using a sol-gel-derived multicomponent microarray. , 2005, Analytical chemistry.
[103] Chang-Qing Xu,et al. Enhancing sensitivity and selectivity of long-period grating sensors using structure-switching aptamers bound to gold-doped macroporous silica coatings. , 2011, Analytical chemistry.
[104] Mark B. Frampton,et al. Enzyme-mediated sol-gel processing of alkoxysilanes. , 2008, Chemical communications.
[105] J S Valentine,et al. Encapsulation of proteins in transparent porous silicate glasses prepared by the sol-gel method. , 1992, Science.
[106] Razvan Nutiu,et al. Entrapment of fluorescent signaling DNA aptamers in sol-gel-derived silica. , 2005, Analytical chemistry.
[107] Soyoun Kim,et al. High diagnostic accuracy of antigen microarray for sensitive detection of hepatitis C virus infection. , 2008, Clinical chemistry.
[108] Butrus T. Khuri-Yakub,et al. Piezoelectric droplet ejector for ink-jet printing of fluids and solid particles , 2003 .
[109] Frank V. Bright,et al. Integrated chemical sensor array platform based on a light emitting diode, xerogel-derived sensor elements, and high-speed pin printing , 2002 .
[110] Ulrich S. Schubert,et al. Hybrid Inorganic-Organic Materials by Sol-Gel Processing of Organofunctional Metal Alkoxides , 1995 .
[111] J. Friedman,et al. Temperature dependent quaternary state relaxation in sol-gel encapsulated hemoglobin. , 1999, Biospectroscopy.
[112] J. Brennan,et al. Immobilized enzyme reactor chromatography: optimization of protein retention and enzyme activity in monolithic silica stationary phases. , 2006, Analytica chimica acta.
[113] M. Smyth,et al. Sol-gel based amperometric biosensor incorporating an osmium redox polymer as mediator for detection of L-lactate. , 1997, Talanta.
[114] Jiadong Huang,et al. Electrochemical sensor based on imprinted sol–gel and nanomaterials for sensitive determination of bisphenol A , 2011 .
[115] A. Ballesteros,et al. Bioencapsulation within synthetic polymers (Part 1): sol-gel encapsulated biologicals. , 2000, Trends in biotechnology.
[116] D. Avnir,et al. Sol-gel-entrapped cholinesterases: a microtiter plate method for monitoring anti-cholinesterase compounds , 1998 .
[117] John D Brennan,et al. Surface immobilization of structure-switching DNA aptamers on macroporous sol-gel-derived films for solid-phase biosensing applications. , 2011, Analytical chemistry.
[118] E. Wachtel,et al. Microstructure and nematic transition in thermotropic liquid crystalline fibers and their single polymer composites , 2007 .
[119] D. Avnir,et al. Sol-gel materials as efficient enzyme protectors: preserving the activity of phosphatases under extreme ph conditions. , 2005, Journal of the American Chemical Society.
[120] Michel A. Aegerter,et al. Deposition of micropatterned coating using an ink-jet technique , 1999 .
[121] A. Heller,et al. Loss of Activity or Gain in Stability of Oxidases upon Their Immobilization in Hydrated Silica: Significance of the Electrostatic Interactions of Surface Arginine Residues at the Entrances of the Reaction Channels , 1998 .
[122] Thomas J. Pinnavaia,et al. Mesoporous silica molecular sieves prepared by ionic and neutral surfactant templating : A comparison of physical properties , 1996 .
[123] Colette McDonagh,et al. Sol-gel coatings for optical chemical sensors and biosensors , 1995 .
[124] T. Toyo’oka,et al. Screening of inhibitors of uridine diphosphate glucuronosyltransferase with a miniaturized on-line drug-metabolism system. , 2004, Journal of chromatography. A.
[125] B. Boury,et al. Hybrid organic-inorganic xerogel access to meso- and microporous silica by thermal and chemical treatment , 1999 .
[126] N. Kostić,et al. Unexpected Interactions between Sol−Gel Silica Glass and Guest Molecules. Extraction of Aromatic Hydrocarbons into Polar Silica from Hydrophobic Solvents , 2000 .
[127] Ruey-an Doong,et al. Simultaneous determination of pH, urea, acetylcholine and heavy metals using array-based enzymatic optical biosensor. , 2005, Biosensors & bioelectronics.
[128] Bruce Dunn,et al. Probes of Pore Environment and Molecule-Matrix Interactions in Sol-Gel Materials , 1997 .
[129] George W. Scherer,et al. Theory of Drying , 1990 .
[130] Y. Chen-Yang,et al. A novel method for preparing a protein-encapsulated bioaerogel: using a red fluorescent protein as a model. , 2008, Acta biomaterialia.
[131] M. Prieto,et al. Effect of sol-gel confinement on the structural dynamics of the enzyme bovine Cu,Zn superoxide dismutase. , 2008, The journal of physical chemistry. B.
[132] D. A. Russell,et al. Sol–gel encapsulation of metalloproteins for the development of optical biosensors for nitrogen monoxide and carbon monoxide , 1995 .
[133] J. Bartlett,et al. Encapsulation of sulfate-reducing bacteria in a silica host , 2000 .
[134] J. Brennan,et al. Inhibitor screening using immobilized enzyme reactor chromatography/mass spectrometry. , 2005, Analytical chemistry.
[135] R. Caruso,et al. Pore size and volume effects on the incorporation of polymer into macro- and mesoporous zirconium titanium oxide membranes. , 2009, ACS applied materials & interfaces.
[136] A. Kucernak,et al. Sol-Gel Formation of Reticular Methyl-Silicate Materials by Hydrogen Peroxide Decomposition , 1998 .
[137] Daniel Mandler,et al. Parathion Sensor Based on Molecularly Imprinted Sol−Gel Films , 2004 .
[138] J. Brennan. Biofriendly sol-gel processing for the entrapment of soluble and membrane-bound proteins: toward novel solid-phase assays for high-throughput screening. , 2007, Accounts of chemical research.
[139] A. Araújo,et al. Optical sensors and biosensors based on sol-gel films. , 2007, Talanta.
[140] G. S. Wilson,et al. Glucose microbiosensor based on alumina sol-gel matrix/electropolymerized composite membrane. , 2002, Biosensors & bioelectronics.
[141] T. W. Żerda,et al. Diffusion of Simple Liquids in Porous Sol-Gel Glass , 1995 .
[142] P. Colombo,et al. Dependence of thickness on the withdrawal speed for SiO2 and TiO2 coatings obtained by the dipping method , 1992 .
[143] P. Calvert. Inkjet Printing for Materials and Devices , 2001 .
[144] J. Brennan,et al. Effect of Ormosil and Polymer Doping on the Morphology of Separately and Co-hydrolyzed Silica Films Formed by a Two-Step Aqueous Processing Method , 2007 .
[145] F. Bright,et al. Effects of Poly(ethylene glycol) Doping on the Behavior of Pyrene, Rhodamine 6G, and Acrylodan-Labeled Bovine Serum Albumin Sequestered within Tetramethylorthosilane-Derived Sol-Gel-Processed Composites , 1998 .
[146] J. Zink,et al. Synthesis of Protein-Doped Sol-Gel SiO2 Thin Films: Evidence for Rotational Mobility of Encapsulated Cytochrome c , 1995 .
[147] †‡§ and Iqbal Gill,et al. Encapsulation of Biologicals within Silicate, Siloxane, and Hybrid Sol−Gel Polymers: An Efficient and Generic Approach , 1998 .
[148] David Avnir,et al. Chiral electrochemical recognition by very thin molecularly imprinted sol-gel films. , 2005, Langmuir : the ACS journal of surfaces and colloids.
[149] J. Zink,et al. Encapsulation of proteins in bulk and thin film sol-gel matrices , 1997 .
[150] Modeeparampil N. Kamalasanan,et al. A novel protocol to entrap active urease in a tetraethoxysilane-derived sol-gel thin-film architecture , 1994 .
[151] J. Badjić,et al. Behavior of organic compounds confined in monoliths of sol–gel silica glass. Effects of guest–host hydrogen bonding on uptake, release, and isomerization of the guest compounds , 2001 .
[152] M. Antonietti,et al. Synthesis of mesoporous silica with large pores and bimodal pore size distribution by templating of polymer latices. , 1998 .
[153] Q. Huo,et al. Cooperative Formation of Inorganic-Organic Interfaces in the Synthesis of Silicate Mesostructures , 1993, Science.
[154] Omer Van der Biest,et al. ELECTROPHORETIC DEPOSITION OF MATERIALS , 1999 .
[155] Deng Shi,et al. PEOPLES REPUBLIC OF CHINA , 2012 .
[156] T. Boland,et al. Inkjet printing of viable mammalian cells. , 2005, Biomaterials.
[157] L. Hench,et al. The sol-gel process , 1990 .
[158] Entrapment of fluorescence signaling DNA enzymes in sol-gel-derived materials for metal ion sensing. , 2007, Analytical chemistry.
[159] J. Zink,et al. In Situ Fluorescence Probing of the Chemical Changes during Sol–Gel Thin Film Formation , 1995 .
[160] D. Higgins,et al. Nanoscale Properties and Matrix−Dopant Interactions in Dye-Doped Organically Modified Silicate Thin Films , 2001 .
[161] J. Valentine,et al. Crowding and hydration effects on protein conformation: a study with sol-gel encapsulated proteins. , 2001, Journal of molecular biology.
[162] Giovanna Carturan,et al. Encapsulation of functional cells by sol–gel silica: actual progress and perspectives for cell therapy , 2004 .
[163] C. J. Brinker,et al. Hydrolysis and condensation of silicates: Effects on structure , 1988 .
[164] Frank V Bright,et al. Multianalyte pin-printed biosensor arrays based on protein-doped xerogels. , 2002, Analytical chemistry.
[165] Ruey-an Doong,et al. Sol-gel-derived array DNA biosensor for the detection of polycyclic aromatic hydrocarbons in water and biological samples , 2005 .
[166] G. M. Jamison,et al. Alkylene-bridged polysilsesquioxane aerogels: highly porous hybrid organic-inorganic materials , 1995 .
[167] Sol-gel thin film formation , 1990 .
[168] H. Böttcher. Bioactive Sol-Gel Coatings , 2000 .
[169] Yen Wei,et al. Encapsulation of enzymes in mesoporous host materials via the nonsurfactant-templated sol–gel process , 2000 .
[170] S. Mozumdar,et al. Effect of ethanol variation on the internal environment of sol-gel bulk and thin films with aging. , 2005, Biosensors & bioelectronics.
[171] Joseph A. Gardella,et al. Production, Characterization, and Utilization of Aerosol-Deposited Sol - Gel-Derived Films , 1998 .
[172] C. McNeil,et al. Avidin-Biotin Based Electrochemical Immunoassay for Thyrotropin , 1993, Annals of clinical biochemistry.
[173] David Avnir,et al. Organic Chemistry within Ceramic Matrixes: Doped Sol-Gel Materials , 1995 .
[174] Ellen L. Holthoff,et al. Molecularly templated materials in chemical sensing. , 2007, Analytica chimica acta.
[175] N. Kostić,et al. Effects of Encapsulation in Sol−Gel Silica Glass on Esterase Activity, Conformational Stability, and Unfolding of Bovine Carbonic Anhydrase II , 1999 .
[176] John D. Brennan,et al. Properties and applications of proteins encapsulated within sol–gel derived materials , 2002 .
[177] David Avnir,et al. Enzymes and Other Proteins Entrapped in Sol-Gel Materials , 1994 .
[178] H. Schmidt. Multifunctional inorganic-organic composite sol-gel coatings for glass surfaces , 1994 .
[179] I. Chen,et al. Encapsulation of protein molecules in transparent porous silica matrices via an aqueous colloidal sol–gel process , 1999 .
[180] H. Ju,et al. Preparation of ormosil and its applications in the immobilizing biomolecules , 2006 .
[181] E. Matijević,et al. Monodispersed metal (hydrous) oxides - a fascinating field of colloid science , 1981 .
[182] S. Schreiber,et al. Printing proteins as microarrays for high-throughput function determination. , 2000, Science.
[183] P. Tanev,et al. A Neutral Templating Route to Mesoporous Molecular Sieves , 1995, Science.
[184] J. Brennan,et al. A sol-gel-derived acetylcholinesterase microarray for nanovolume small-molecule screening. , 2010, Analytical chemistry.
[185] Brian J. Birch,et al. Voltammetric and amperometric behaviour of uric acid at bare and surface-modified screen-printed electrodes: studies towards a disposable uric acid sensor , 1992 .
[186] Bruce Dunn,et al. Sol-gel encapsulation methods for biosensors , 1994 .
[187] Alan J. Hurd,et al. Fundamentals of sol-gel dip coating , 1991 .
[188] J. Brennan,et al. Materials Screening for Sol–Gel-Derived High-Density Multi-Kinase Microarrays , 2011 .
[189] J. Brennan,et al. Entrapment of Src protein tyrosine kinase in sugar-modified silica. , 2004, Analytical chemistry.
[190] A. Walcarius,et al. Analytical chemistry with silica sol-gels: traditional routes to new materials for chemical analysis. , 2009, Annual review of analytical chemistry.
[191] Bradley F. Chmelka,et al. Nonionic Triblock and Star Diblock Copolymer and Oligomeric Surfactant Syntheses of Highly Ordered, Hydrothermally Stable, Mesoporous Silica Structures , 1998 .
[192] F. Dickert,et al. Bioimprinting of polymers and sol-gel phases. Selective detection of yeasts with imprinted polymers. , 2002, Analytical chemistry.
[193] Rimple B. Bhatia,et al. Aqueous Sol−Gel Process for Protein Encapsulation , 2000 .
[194] N. Nassif,et al. A sol–gel matrix to preserve the viability of encapsulated bacteria , 2003 .
[195] R. Mandelbaum,et al. Entrapment of atrazine chlorohydrolase in sol-gel glass matrix , 1998 .
[196] T. Toyo’oka,et al. Silica sol‐gel monolithic materials and their use in a variety of applications , 2005 .
[197] Y. Xi,et al. Pore size and pore-size distribution control of porous silica , 1995 .
[198] Lee Yook Heng,et al. A Urea Biosensor from Stacked Sol-Gel Films with Immobilized Nile Blue Chromoionophore and Urease Enzyme , 2007, Sensors.
[199] A. Heller,et al. Stability of oxidases immobilized in silica gels , 1998 .
[200] Frank V Bright,et al. Sol-gel-derived sensor materials that yield linear calibration plots, high sensitivity, and long-term stability. , 2003, Analytical chemistry.
[201] U. Schubert,et al. Inkjet Printing of Polymers: State of the Art and Future Developments , 2004 .
[202] John D Brennan,et al. Screening of inhibitors using enzymes entrapped in sol-gel-derived materials. , 2003, Analytical chemistry.
[203] Ye Li,et al. Liposomes as protective capsules for active silica sol-gel biocomposite synthesis. , 2005, Journal of the American Chemical Society.
[204] M. Collinson,et al. Functional-group effects on the ion-exchange properties of organically modified silicates , 1999 .
[205] M. Collinson. Recent trends in analytical applications of organically modified silicate materials , 2002 .
[206] Jiang Chang,et al. Preparation of Macroporous Sol-Gel Bioglass Using PVA Particles as Pore Former , 2004 .
[207] Bin Hu,et al. Sol-gel zirconia coating capillary microextraction on-line hyphenated with inductively coupled plasma mass spectrometry for the determination of Cr, Cu, Cd and Pb in biological samples. , 2006, Rapid communications in mass spectrometry : RCM.
[208] J. S. Beck,et al. Ordered mesoporous molecular sieves synthesized by a liquid-crystal template mechanism , 1992, Nature.
[209] David Avnir,et al. Biochemically active sol-gel glasses: The trapping of enzymes ☆ , 1990 .
[210] Jianhui Jiang,et al. Molecularly imprinted TiO(2) thin film using stable ground-state complex as template as applied to selective electrochemical determination of mercury. , 2006, Talanta.
[211] Ning Yan,et al. Piezoelectric Ink‐Jet Printing of Horseradish Peroxidase: Effect of Ink Viscosity Modifiers on Activity , 2007 .
[212] Yen Wei,et al. Preparation and Physisorption Characterization of d-Glucose-Templated Mesoporous Silica Sol−Gel Materials , 1999 .