Search Results - "Lee, C. Ted"
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Reversible control of enzyme‐inhibitor interactions with light illumination using a photoresponsive surfactant
Published in Proteins, structure, function, and bioinformatics (01-09-2019)“…The effects of a photoresponsive surfactant and light illumination on the complex formed between ribonuclease A (RNase A) and a protein ribonuclease inhibitor…”
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2
General hydrophobic interaction potential for surfactant/lipid bilayers from direct force measurements between light-modulated bilayers
Published in Proceedings of the National Academy of Sciences - PNAS (20-09-2011)“…We establish and quantify correlations among the molecular structures, interaction forces, and physical processes associated with light-responsive…”
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3
Small-Angle Neutron Scattering Study of the Micellization of Photosensitive Surfactants in Solution and in the Presence of a Hydrophobically Modified Polyelectrolyte
Published in Langmuir (15-12-2009)“…The self-assembly behavior of a light-sensitive azobenzene-based surfactant, both in pure surfactant solutions and in the presence of a hydrophobically…”
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4
Protein Secondary Structure Controlled with Light and Photoresponsive Surfactants
Published in The journal of physical chemistry. B (17-08-2006)“…The interaction of a light-responsive azobenzene surfactant with bovine serum albumin (BSA) has been investigated as a means to examine photoreversible changes…”
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5
Photo-Triggered Delivery of siRNA and Paclitaxel into Breast Cancer Cells Using Catanionic Vesicles
Published in ACS applied bio materials (16-11-2020)“…Localized drug delivery holds great promise as a means of circumventing traditional chemotherapy side effects associated with high toxicity and prolonged…”
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6
Enhanced Enzymatic Activity through Photoreversible Conformational Changes
Published in Biochemistry (Easton) (18-12-2007)“…The interaction of a light-responsive surfactant with lysozyme at pH 5.0 has been investigated as a means to control protein structure and enzymatic activity…”
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7
Photoreversible Conformational Changes in Membrane Proteins Using Light-Responsive Surfactants
Published in The journal of physical chemistry. B (25-06-2009)“…Photoreversible control of the conformation of bacteriorhodopsin in the presence of a light-responsive surfactant is demonstrated through combined UV−vis,…”
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8
Photocontrol of Protein Folding: The Interaction of Photosensitive Surfactants with Bovine Serum Albumin
Published in Biochemistry (Easton) (18-01-2005)“…The photoresponsive interaction of light-sensitive azobenzene surfactants with bovine serum albumin (BSA) at neutral pH has been investigated as a means to…”
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9
Photo-Assisted Gene Delivery Using Light-Responsive Catanionic Vesicles
Published in Langmuir (19-05-2009)“…Photoresponsive catanionic vesicles have been developed as a novel gene delivery vector combining enhanced cellular uptake with phototriggered release of…”
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10
Conformation and dynamics of DNA molecules during photoreversible condensation
Published in Biophysical chemistry (01-06-2009)“…Direct observation of the mechanism and dynamics of photo-initiated DNA compaction and re-expansion using a light-responsive cationic surfactant has been…”
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11
Light-Controlled Protein Dynamics Observed with Neutron Spin Echo Measurements
Published in Biochemistry (Easton) (27-09-2011)“…A photoresponsive surfactant has been used as a means to control protein structure and dynamics with light illumination. This cationic azobenzene surfactant,…”
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12
Photo-induced unfolding and inactivation of bovine carbonic anhydrase in the presence of a photoresponsive surfactant
Published in Biochimica et biophysica acta (01-01-2010)“…Photoreversible changes in the conformation and enzymatic activity of bovine carbonic anhydrase have been investigated as a function of photoresponsive…”
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13
Photoreversible DNA Condensation Using Light-Responsive Surfactants
Published in Journal of the American Chemical Society (17-05-2006)“…A means to control DNA compaction with light illumination has been developed using the interaction of DNA with a photoresponsive cationic surfactant. The…”
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14
Probing Lysozyme Conformation with Light Reveals a New Folding Intermediate
Published in Biochemistry (Easton) (22-11-2005)“…A means to control lysozyme conformation with light illumination has been developed using the interaction of the protein with a photoresponsive surfactant…”
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15
Solution Structure of an Amyloid-Forming Protein During Photoinitiated Hexamer−Dodecamer Transitions Revealed through Small-Angle Neutron Scattering
Published in Biochemistry (Easton) (03-07-2007)“…Shape-reconstruction analysis applied to small angle neutron scattering (SANS) data is used to determine the in vitro conformations of α-chymotrypsin oligomers…”
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16
Carbon Dioxide-in-Water Microemulsions
Published in Journal of the American Chemical Society (12-03-2003)“…Liquid and supercritical carbon dioxide swell potassium carboxylate perfluoropolyether (PFPE-K) cylindrical micelles in water to produce novel CO2-in-water…”
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17
Photoreversible Viscosity Changes and Gelation in Mixtures of Hydrophobically Modified Polyelectrolytes and Photosensitive Surfactants
Published in Macromolecules (13-07-2004)“…The viscosity and gelation of mixtures of hydrophobically modified poly(acrylic acid) (HM-PAA) and a cationic photosensitive surfactant can be controlled…”
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18
Photocontrol of β-Amyloid Peptide (1−40) Fibril Growth in the Presence of a Photosurfactant
Published in The journal of physical chemistry. B (30-04-2009)“…The effect of an azobenzene-based photoresponsive surfactant on fibril formation of β-amyloid (1−40) (Aβ40) has been studied using small-angle neutron…”
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19
Water-in-Carbon Dioxide Emulsions: Formation and Stability
Published in Langmuir (28-09-1999)“…Stable water-in-carbon dioxide (W/C) emulsions, for either liquid or supercritical CO2 containing up to 70 vol % water, are formed with various molecular…”
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Enhanced Catalyst Reactivity and Separations Using Water/Carbon Dioxide Emulsions
Published in Journal of the American Chemical Society (22-12-1999)“…The difficulty of catalyst separation and recovery continues to create economic and environmental barriers to the broader industrial application of homogeneous…”
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