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Detection of Protein Aggregation using Fluorescence Correlation Spectroscopy
Published on: April 25, 2021
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Flow Cytometric Analysis of Protein Aggregates.
Sushanta Debnath1, Bikram Nath1, Abhijit Chakrabarti1
1Crystallography and Molecular Biology Division, Saha Institute of Nuclear Physics, HBNI, Kolkata. India.
Protein and Peptide Letters
|August 19, 2017
Summary
This study introduces a new flow cytometry method to characterize protein aggregates by size and composition. This technique can differentiate between amyloid and non-amyloid aggregates, aiding in understanding diseases like Alzheimer's.
Area of Science:
- Biophysical Chemistry
- Cell Biology
- Biomolecular Analysis
Background:
- Protein misfolding and aggregation are implicated in neurodegenerative diseases such as Alzheimer's and Parkinson's.
- Characterizing the diverse nature of protein aggregates is crucial for understanding their associated toxicity.
Purpose of the Study:
- To develop and present a novel flow cytometry-based method for characterizing protein aggregates.
- To differentiate protein aggregates based on size and composition, correlating with differential toxicity.
Main Methods:
- Utilized a Beckman Coulter Epics XL flow cytometer with an argon ion laser (488 nm).
- Analyzed autofluorescence, Congo red fluorescence, forward scattering (FSC), and side scattering (SSC) intensities.
- Quantified aggregates up to 20,000 events per sample, with data analyzed using Flowing software and Origin 8.0.
Main Results:
- Autofluorescence and scattering intensities effectively distinguished between amyloid and non-amyloid protein aggregates.
- Dot plots of FSC and SSC provided characteristic fingerprints for different aggregate types.
- Results were comparable to known nanoparticle standards (Fe and Cu oxides).
Conclusions:
- A novel, simple, and robust flow cytometry method for protein aggregate characterization was established.
- This method allows for differentiation based on size and composition.
- The technique has broad potential applications in biomolecular aggregate characterization.
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