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Journal ArticleDOI

Thioflavin T as a molecular rotor: fluorescent properties of thioflavin T in solvents with different viscosity.

TLDR
The photophysical model successfully explains the fluorescent properties of ThT in solvents with different viscosities and supports the idea that the reason for the characteristic increase in the ThT fluorescence intensity accompanying its incorporation into the amyloid fibrils is determined by the rigidity of the dye environment.
Abstract
The effect of solvent viscosity on thioflavin T (ThT) fluorescent properties is analyzed to understand the molecular mechanisms of the characteristic increase in ThT fluorescence intensity accompanying its incorporation into the amyloid-like fibrils. To this end, the dependencies of the ThT quantum yield and fluorescence lifetime on temperature and glycerol content in the water−glycerol mixtures are studied. It has been found that fluorescent properties of ThT are typical for the specific class of fluorophores known as molecular rotors. It has been established that the low ThT fluorescence intensity in the solvents with low viscosity is caused by the nonradiative deactivation of the excited state associated with the torsional motion of the ThT benzthiazole and aminobenzene rings relative to each other, which results in the transition of ThT molecule to nonfluorescent twisted internal charge transfer (TICT) state. The rate of this process is determined by the solvent viscosity, whereas the emission does oc...

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Citations
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Journal ArticleDOI

A General Strategy to Control Viscosity Sensitivity of Molecular Rotor-Based Fluorophores

TL;DR: In this article, an extended π-rich alternating carbon-carbon linkages between the rotational electron donors and acceptors of rotational rotor-based fluorophores (RBFs) have been used to detect misfolded protein oligomers and insoluble aggregates.
Journal ArticleDOI

Ultrafast Torsional Dynamics of Protein Binding Dye Thioflavin-T in Nanoconfined Water Pool

TL;DR: It is seen that due to the confined environment in the reverse micelle, the fluorescence yield of Thioflavin-T is dramatically enhanced approximately 250-fold as compared to that in bulk water.
Journal ArticleDOI

Steady-state and time-resolved Thioflavin-T fluorescence can report on morphological differences in amyloid fibrils formed by Aβ(1-40) and Aβ(1-42).

TL;DR: It is proposed that the fluorescence lifetime is inherent to each isoform and sensitively reports on fibril microstructure in the protofilament whereas the total fluorescence intensity relates to the amount of exposed β-sheet in the mature Aβ fibrils and hence to differences in their morphology.
Journal ArticleDOI

Supramolecular Self-Assembly To Control Structural and Biological Properties of Multicomponent Hydrogels.

TL;DR: The synergistic multicomponent self-assembly involving a peptide amphiphile (PA) and a 1,3:2,4-dibenzylidene-d-sorbitol (DBS) gelator to generate hydrogels with tunable nanoscale morphology, improved stiffness, enhanced self-healing, and stability to enzymatic degradation is reported on.
Journal ArticleDOI

Control of the supramolecular excimer formation of thioflavin T within a cucurbit[8]uril host: a fluorescence on/off mechanism.

TL;DR: A new excimer band at lambda = 570 nm was visualized during the noncovalent host-guest interaction between thioflavin T and cucurbit[8]uril (CB8).
References
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Journal ArticleDOI

General atomic and molecular electronic structure system

TL;DR: A description of the ab initio quantum chemistry package GAMESS, which can be treated with wave functions ranging from the simplest closed‐shell case up to a general MCSCF case, permitting calculations at the necessary level of sophistication.
BookDOI

Molecular fluorescence : principles and applications

TL;DR: In this article, the effects of intermolecular photophysical processes on fluorescence emission are discussed and an analysis of the effect of polarity of fluorescence emissions is presented.
Journal ArticleDOI

Thioflavine T interaction with synthetic Alzheimer's disease beta-amyloid peptides: detection of amyloid aggregation in solution.

TL;DR: Thioflavine T associates rapidly with aggregated fibrils of the synthetic β/A4‐derived peptides β( 1–28) and β(1–40), giving rise to a new excitation maximum at 450 nm and enhanced emission at 482 nm, as opposed to the 385 nm and 445 nm of the free dye.
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