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Communications Chemistry|August 3, 2026
Human chaperone DNAJB6b suppresses tau fibril formation through co-aggregationAndreas Carlsson, Emil Axell, Johan Wallerstein, et al.Physical Chemistry Chemical Physics : PCCP|May 1, 2026
The chaperone DNAJB6b halts amyloid formation through association with transient Aβ oligomersJosef Getachew, Andreas Carlsson, Emil Axell, et al.ACS Chemical Neuroscience|April 19, 2024
The Ability of DNAJB6b to Suppress Amyloid Formation Depends on the Chaperone Aggregation StateAndreas Carlsson, Emil Axell, Cecilia Emanuelsson, et al.ACS Chemical Neuroscience|April 30, 2025
The Role of α-Synuclein-DNAJB6b Coaggregation in Amyloid SuppressionTinna Pálmadóttir, Josef Getachew, Dev Thacker, et al.QRB Discovery|August 18, 2023
On the micelle formation of DNAJB6bAndreas Carlsson, Ulf Olsson, Sara LinseSoft Matter|September 2, 2025
On the self-assembly of αB-crystallinEwelina Lindbladh, Marija Dubackic, Dev Thacker, et al.ACS Chemical Neuroscience|January 23, 2026
Solubility and Metastability of the Amyloidogenic Core of TauEmil Axell, Andreas Carlsson, Max Lindberg, et al.Communications Chemistry|October 1, 2025
Effects of solution conditions on the self-assembly of the chaperone protein DNAJB6bAndreas Carlsson, Victoria Maier, Celia Fricke, et al.Biophysical Chemistry|February 3, 2024
A label-free high-throughput protein solubility assay and its application to Aβ40Max Lindberg, Emil Axell, Emma Sparr, et al.Biophysics Reviews|February 20, 2025
On the reversibility of amyloid fibril formationTinna Pálmadóttir, Josef Getachew, Lei Ortigosa-Pascual, et al.Pageof 43