N,N-Dimethyl-6-propionyl-2-naphthylamine (Prodan), a membrane surface probe, may be used as a fluorescence probe in non-cell based in vitro assay for the determination of drug-phospholipid complex formation and to study membrane surface properties.
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Biochemical and biophysical research communications, 226(2), 495-497 (1996-09-13)
A large blue-shift (delta lambda max = 87 nm) in the fluorescence emission maximum and 2-fold enhancement in the emission intensity of PRODAN in the presence of 1.5 microM dimeric spectrin from the same aqueous buffer was observed. Binding of
This paper describes for the first time, a high-throughput fluorescence noncell based assay to screen for the drug-phospholipid interaction, which correlates to phospholipidosis. Anionic amphiphilic phospholipids can form complexes in aqueous solution, and its critical micelle concentration (CMC) can be
Noncovalent interactions between the fluorescent probe 6-propionyl-2-dimethylaminonaphthalene (PRODAN) and dissolved Norman Landfill leachate fulvic acid, Suwannee River fulvic acid, Suwannee River humic acid, and Leonardite humic acid were examined as a function of pH, fulvic and humic acid (FA and
Journal of the American Chemical Society, 129(15), 4776-4784 (2007-03-24)
A solvatochromic fluorophore, PRODAN, has been used as a microenvironment-sensitive reporter. Based on the chemistry of PRODAN, we designed and synthesized four novel fluorescent nucleosides, PDNX (X = U, C, A, and G), to which a PRODAN fluorophore was attached
The journal of physical chemistry. B, 111(28), 8269-8276 (2007-06-27)
Proteins respond to electrostatic perturbations through complex reorganizations of their charged and polar groups, as well as those of the surrounding media. These solvation responses occur both in the protein interior and on its surface, though the exact mechanisms of
Nitric oxide (NO) as a signal transporter in neurons, endothelial cells and in the immune system.
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