2015
DOI: 10.1007/s00249-015-1019-8
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Effect of acidic and basic pH on Thioflavin T absorbance and fluorescence

Abstract: Thioflavin T (ThT) is a fluorescent dye able to enhance significantly its fluorescence quantum yield upon binding to protein amyloids. ThT assay is widely used to detect and quantify amyloids in a variety of conditions, including solutions with different pH levels. In the present work, the effect of acidic and basic pH on the conformation of the ThT molecule and its absorption and fluorescence properties was studied. The results show that both acidic and basic pH decrease significantly the intensity of ThT abs… Show more

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Cited by 56 publications
(55 citation statements)
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“…Below pH 3, protonation of the tertiary amine (Atom c in Figure 5(A)) leads to a decrease in ThT absorption and emission [94]. Caution should be exercised when comparing in situ ThT intensities at acidic and neutral pH values, since the lower emission of protonated ThT can be mistaken for lower fibril load.…”
Section: Extreme Ph Affects Thtmentioning
confidence: 99%
“…Below pH 3, protonation of the tertiary amine (Atom c in Figure 5(A)) leads to a decrease in ThT absorption and emission [94]. Caution should be exercised when comparing in situ ThT intensities at acidic and neutral pH values, since the lower emission of protonated ThT can be mistaken for lower fibril load.…”
Section: Extreme Ph Affects Thtmentioning
confidence: 99%
“…Complexes with certain macrocycles, oligonucleotides, and other non‐amyloid‐forming proteins also show substantial turn‐on responses. Fluorescence of ThT is also sensitive to other environmental factors including temperature, pressure, solvent viscosity, and pH . A better understanding of how these various factors affect ThT photophysics will improve design and utility of solution assays involving ThT.…”
Section: Methodsmentioning
confidence: 99%
“…Fluorescence of ThT is also sensitivet oo ther environmentalf actors including temperature, pressure, solventv iscosity,a nd pH. [10][11][12][13][14][15] Ab etter understanding of how these various factors affect ThT photophysics will improve designa nd utility of solution assays involving ThT.F or example, it is not clear whether ThT can be used to distinguish between prefibrillar toxic oligomers of amyloidogenic peptidesa nd proteins or their fibril forms.T he ability to selectively sense oligomerso fa certain size or conformation may be important as these may represent an important therapeutic target. Here, we study the photophysics of ThT with and without individual binding part-ners inside am ass spectrometer, an environmentt hat is free of interactions with solventm olecules, andw here the presence of binding partners( e.g.,T hT dimers) is readily identifiable from the mass spectrum.…”
mentioning
confidence: 99%
“…The aliquots were diluted in 10 mM phosphate buffer (pH 7.4) with 100 mM NaCl. 16,64 The ThT fluorescence was measured in a quartz cuvette; the spectrofluorometer (PTI) was set at an excitation wavelength of 450 nm, and the emission was observed at 482 nm.…”
Section: Tht Fluorescence Assaymentioning
confidence: 99%