Thioflavin T Fluorescence

Thioflavin T fluorescence is a widely used optical method for detecting amyloid aggregates, protein assemblies associated with several neurodegenerative disorders. The dye exhibits weak fluorescence in solution but becomes strongly fluorescent when it binds to the repetitive cross-β-sheet structures of amyloid fibrils, which restricts rotation within the molecule and enhances light emission. Researchers use this signal to monitor amyloid formation and quantify fibril growth in vitro, assess aggregation kinetics, and evaluate compounds that alter protein assembly. In neuroscience, the method supports studies of disease mechanisms involving proteins such as amyloid-β, tau, and α-synuclein.

Thioflavin T Fluorescence - Related Videos

Research

JoVE EoE - Bacterial Growth and Techniques

Quantifying Bacterial Infection-Induced Amyloids Using Thioflavin T Fluorescence

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2025

Source: Balczon, R., et al. Methods for Detecting Cytotoxic Amyloids Following Infection of Pulmonary Endothelial Cells by Pseudomonas aeruginosa. J. Vis. Exp. (2018)This video demonstrates the protocol to quantify amyloids in culture supernatants from pulmonary endothelial cells infected with virulent bacteria, using thioflavin T, a fluorescent dye that binds to amyloid beta-sheet structures. An increase in fluorescence compared to baseline indicates the presence of amyloids in the culture...

Detection of Aggregation-Prone Behavior in Mutant P53 V157F Breast Cancer Cells Using Multipoint Thioflavin T Fluorescence

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2025

Hs578T breast cancer cells harboring the p53 V157F mutation exhibit significantly higher Thioflavin T fluorescence compared to MCF7 cells, indicating enhanced protein aggregation. Multipoint fluorescence measurements improve detection accuracy and reliability in identifying β-sheet-rich aggregates, underscoring the importance of aggregation-prone p53 mutations in cancer research and the development of therapeutic strategies.

Thioflavin-S Staining of Amyloid-Beta Aggregation in Cerebral Hypoperfused Mouse Brain Tissue

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2025

MCCH is characterized by reduced blood flow to the brain. This limits oxygen and nutrient supply to the endothelial cell layer of cerebral blood vessels, damaging the cells.

Lensless Fluorescent Microscopy on a Chip

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Cited by 8 •

2011

A lensless on-chip fluorescent microscopy platform is demonstrated that can image fluorescent objects over an ultra-wide field-of-view of e.g., >0.6-8 cm2 with <4μm resolution using a compressive sampling based decoding algorithm. Such a compact and wide-field fluorescent on-chip imaging modality could be valuable for high-throughput cytometry, rare-cell research and microarray-analysis.

Education

JoVE Science Education - Basic Biology

Introduction to Fluorescence Microscopy

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2023

Fluorescence microscopy is a very powerful analytical tool that combines the magnifying properties of light microscopy with visualization of fluorescence. Fluorescence is a phenomenon that involves absorbance and emission of a small range of light wavelengths by a fluorescent molecule known as a fluorophore. Fluorescence microscopy is accomplished in conjunction with the basic light microscope by the addition of a powerful light source, specialized filters, and a means of fluorescently...

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