Characterization of changes in the viscosity of lipid membranes with the molecular rotor FCVJ.
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Mapping microbubble viscosity using fluorescence lifetime imaging of molecular rotorsPush-pull dioxaborine as fluorescent molecular rotor: far-red fluorogenic probe for ligand-receptor interactions.Secretory phospholipase A2 type III enhances alpha-secretase-dependent amyloid precursor protein processing through alterations in membrane fluidity.Molecular rotors: Synthesis and evaluation as viscosity sensors.Environment-sensitive behavior of fluorescent molecular rotors.Effects of fatty acid unsaturation numbers on membrane fluidity and α-secretase-dependent amyloid precursor protein processing.Detection of liposome membrane viscosity perturbations with ratiometric molecular rotors.Applications of biological pores in nanomedicine, sensing, and nanoelectronicsSynthesis and evaluation of self-calibrating ratiometric viscosity sensors.Intrinsic and extrinsic temperature-dependency of viscosity-sensitive fluorescent molecular rotors.Astrocytes regulate α-secretase-cleaved soluble amyloid precursor protein secretion in neuronal cells: Involvement of group IIA secretory phospholipase A2Discerning the Chemistry in Individual Organelles with Small-Molecule Fluorescent Probes.Ratiometric mechanosensitive fluorescent dyes: Design and applications.Films of agarose enable rapid formation of giant liposomes in solutions of physiologic ionic strength.Comparison of viscoelastic properties of cancer and normal thyroid cells on different stiffness substrates.Potential applications of luminescent molecular rotors in food science and engineering.Rational design of amyloid binding agents based on the molecular rotor motif.Interface-mediation of lipid bilayer organization and dynamics.Cholesterol modulates CFTR confinement in the plasma membrane of primary epithelial cells.Fluorescence anisotropy of molecular rotors.Cholesterol Regulates Monocyte Rolling through CD44 Distribution.Molecular rotors confined at an ordered 2D interface.Protein Rotational Dynamics in Aligned Lipid Membranes Probed by Anisotropic T1ρ NMR Relaxation.Monitoring drug-lipid membrane interactions via a molecular rotor probe.A novel molecular rotor facilitates detection of p53-DNA interactions using the Fluorescent Intercalator Displacement Assay
P2860
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P2860
Characterization of changes in the viscosity of lipid membranes with the molecular rotor FCVJ.
description
2008 nî lūn-bûn
@nan
2008年の論文
@ja
2008年学术文章
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2008年学术文章
@zh
2008年学术文章
@zh-cn
2008年学术文章
@zh-hans
2008年学术文章
@zh-my
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@zh-sg
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2008年學術文章
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name
Characterization of changes in ...... with the molecular rotor FCVJ.
@en
Characterization of changes in ...... with the molecular rotor FCVJ.
@nl
type
label
Characterization of changes in ...... with the molecular rotor FCVJ.
@en
Characterization of changes in ...... with the molecular rotor FCVJ.
@nl
prefLabel
Characterization of changes in ...... with the molecular rotor FCVJ.
@en
Characterization of changes in ...... with the molecular rotor FCVJ.
@nl
P2093
P1476
Characterization of changes in ...... with the molecular rotor FCVJ
@en
P2093
Emmanuel A Theodorakis
James C-M Lee
Mark A Haidekker
Matthew E Nipper
Sheereen Majd
P304
P356
10.1016/J.BBAMEM.2008.01.005
P577
2008-01-16T00:00:00Z