Publication | Open Access
Multiplexed Digital Characterization of Misfolded Protein Oligomers via Solid-State Nanopores
21
Citations
49
References
2023
Year
EngineeringOligomeric SpeciesMolecular BiologyNeurochemical BiomarkersAnalytical UltracentrifugationSmall MoleculesSingle Molecule BiophysicsProtein FoldingProtein MisfoldingSingle MoleculeMolecular DiagnosticsBiophysicsOligomer PopulationsBiomedical AnalysisSolution Nmr SpectroscopyBiomolecular ScienceNanodiscBiomolecular EngineeringSingle-molecule DetectionNeurodegenerative DiseasesNatural SciencesSelf-assemblyMolecular BiophysicsMultiplexed Digital CharacterizationProtein OligomersNanopores
Misfolded protein oligomers are of central importance in both the diagnosis and treatment of Alzheimer's and Parkinson's diseases. However, accurate high-throughput methods to detect and quantify oligomer populations are still needed. We present here a single-molecule approach for the detection and quantification of oligomeric species. The approach is based on the use of solid-state nanopores and multiplexed DNA barcoding to identify and characterize oligomers from multiple samples. We study α-synuclein oligomers in the presence of several small-molecule inhibitors of α-synuclein aggregation as an illustration of the potential applicability of this method to the development of diagnostic and therapeutic methods for Parkinson's disease.
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