Issue 7, 2024

Thermodynamic characterization of amyloid polymorphism by microfluidic transient incomplete separation

Abstract

Amyloid fibrils of proteins such as α-synuclein are a hallmark of neurodegenerative diseases and much research has focused on their kinetics and mechanisms of formation. The question as to the thermodynamic stability of such structures has received much less attention. Here, we newly utilize the principle of transient incomplete separation of species in laminar flow in combination with chemical depolymerization for the quantification of amyloid fibril stability. The relative concentrations of fibrils and monomer at equilibrium are determined through an in situ separation of these species based on their different diffusivity inside a microfluidic capillary. The method is highly sample economical, using much less than a microliter of sample per data point and its only requirement is the presence of aromatic residues (W, Y) because of its label-free nature, which makes it widely applicable. Using this method, we investigate the differences in thermodynamic stability between different fibril polymorphs of α-synuclein and quantify these differences for the first time. Importantly, we show that fibril formation can be under kinetic or thermodynamic control and that a change in solution conditions can both stabilise and destabilise amyloid fibrils. Taken together, our results establish the thermodynamic stability as a well-defined and key parameter that can contribute towards a better understanding of the physiological roles of amyloid fibril polymorphism.

Graphical abstract: Thermodynamic characterization of amyloid polymorphism by microfluidic transient incomplete separation

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Article information

Article type
Edge Article
Submitted
10 Oct 2023
Accepted
05 Jan 2024
First published
08 Jan 2024
This article is Open Access

All publication charges for this article have been paid for by the Royal Society of Chemistry
Creative Commons BY-NC license

Chem. Sci., 2024,15, 2528-2544

Thermodynamic characterization of amyloid polymorphism by microfluidic transient incomplete separation

A. Farzadfard, A. Kunka, T. O. Mason, J. A. Larsen, R. K. Norrild, E. T. Dominguez, S. Ray and A. K. Buell, Chem. Sci., 2024, 15, 2528 DOI: 10.1039/D3SC05371G

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