Tomas Sneideris
Tomas Sneideris
Yusuf Hamied Department of Chemistry, University of Cambridge
Verified email at
Cited by
Cited by
Atomic force microscopy for single molecule characterisation of protein aggregation
FS Ruggeri, T Šneideris, M Vendruscolo, TPJ Knowles
Archives of biochemistry and biophysics 664, 134-148, 2019
pH-Driven polymorphism of insulin amyloid-like fibrils
T Sneideris, D Darguzis, A Botyriute, M Grigaliunas, R Winter, ...
PLoS One 10 (8), e0136602, 2015
Rational design of a conformation-specific antibody for the quantification of Aβ oligomers
FA Aprile, P Sormanni, M Podpolny, S Chhangur, LM Needham, ...
Proceedings of the National Academy of Sciences 117 (24), 13509-13518, 2020
The environment is a key factor in determining the anti-amyloid efficacy of EGCG
T Sneideris, A Sakalauskas, R Sternke-Hoffmann, A Peduzzo, M Ziaunys, ...
Biomolecules 9 (12), 855, 2019
Looking for a generic inhibitor of amyloid-like fibril formation among flavone derivatives
T Šneideris, L Baranauskienė, JG Cannon, R Rutkienė, R Meškys, ...
PeerJ 3, e1271, 2015
Extracellular tau induces microglial phagocytosis of living neurons in cell cultures
K Pampuscenko, R Morkuniene, T Sneideris, V Smirnovas, R Budvytyte, ...
Journal of Neurochemistry 154 (3), 316-329, 2020
Self-inhibition of insulin amyloid-like aggregation
M Ziaunys, T Sneideris, V Smirnovas
Physical Chemistry Chemical Physics 20 (43), 27638-27645, 2018
Structure Determination of Hen Egg-White Lysozyme Aggregates Adsorbed to Lipid/Water and Air/Water Interfaces
S Strazdaite, E Navakauskas, J Kirschner, T Sneideris, G Niaura
Langmuir 36 (17), 4766-4775, 2020
Formation of distinct prion protein amyloid fibrils under identical experimental conditions
M Ziaunys, T Sneideris, V Smirnovas
Scientific reports 10 (1), 1-7, 2020
Polymorphism of amyloid-like fibrils can be defined by the concentration of seeds
T Sneideris, K Milto, V Smirnovas
PeerJ 3, e1207, 2015
Effect of ionic strength on thioflavin-T affinity to amyloid fibrils and its fluorescence intensity
K Mikalauskaite, M Ziaunys, T Sneideris, V Smirnovas
International journal of molecular sciences 21 (23), 8916, 2020
A dopamine metabolite stabilizes neurotoxic amyloid-β oligomers
R Cataldi, S Chia, K Pisani, FS Ruggeri, CK Xu, T Šneideris, M Perni, ...
Communications biology 4 (1), 1-10, 2021
Sequence‐Optimized Peptide Nanofibers as Growth Stimulators for Regeneration of Peripheral Neurons
C Schilling, T Mack, S Lickfett, S Sieste, FS Ruggeri, T Sneideris, A Dutta, ...
Advanced Functional Materials 29 (24), 1809112, 2019
Characterizing individual protein aggregates by infrared nanospectroscopy and atomic force microscopy
FS Ruggeri, T Šneideris, S Chia, M Vendruscolo, TPJ Knowles
JoVE (Journal of Visualized Experiments), e60108, 2019
Exploring the potential of deep-blue autofluorescence for monitoring amyloid fibril formation and dissociation
M Ziaunys, T Sneideris, V Smirnovas
PeerJ 7, e7554, 2019
Interaction of Amyloid-β-(1–42) Peptide and Its Aggregates with Lipid/Water Interfaces Probed by Vibrational Sum-Frequency Generation Spectroscopy
S Strazdaite, SJ Roeters, A Sakalauskas, T Sneideris, J Kirschner, ...
The Journal of Physical Chemistry B 125 (40), 11208-11218, 2021
Multiphase condensates from a kinetically arrested phase transition
NA Erkamp, T Sneideris, H Ausserwoger, D Qian, S Qamar, J Nixon-Abell, ...
bioRxiv, 2022
Self-Replication of Prion Protein Fragment 89-230 Amyloid Fibrils Accelerated by Prion Protein Fragment 107-143 Aggregates
T Sneideris, M Ziaunys, BKY Chu, RPY Chen, V Smirnovas
International journal of molecular sciences 21 (19), 7410, 2020
Aggregation Condition–Structure Relationship of Mouse Prion Protein Fibrils
J Fridmanis, Z Toleikis, T Sneideris, M Ziaunys, R Bobrovs, V Smirnovas, ...
International journal of molecular sciences 22 (17), 9635, 2021
Bioinformatics methods for identification of amyloidogenic peptides show robustness to misannotated training data
N Szulc, M Burdukiewicz, M Gąsior-Głogowska, JW Wojciechowski, ...
Scientific reports 11 (1), 1-11, 2021
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