Expertises
Medicine & Life Sciences
# Coronavirus Nucleocapsid Protein
# Liquid Crystals
# Sars Virus
# Synucleins
Chemistry
# Amyloid Fibril
Physics & Astronomy
# Lysozyme
# Proteins
# Stiffening
Publicaties
Recent
Semerdzhiev, S. A.
, Segers-Nolten, I., van der Schoot, P.
, Blum, C.
, & Claessens, M. M. A. E. (2023).
SARS-CoV-2 N-protein induces the formation of composite α-synuclein/N-protein fibrils that transform into a strain of α-synuclein fibrils.
Nanoscale,
15(45), 18337-18346.
https://doi.org/10.1039/d3nr03556e
Semerdzhiev, S. A.
, Fakhree, M. A. A.
, Segers-Nolten, I.
, Blum, C.
, & Claessens, M. M. A. E. (2022).
Interactions between SARS-CoV-2 N-Protein and α-Synuclein Accelerate Amyloid Formation.
ACS chemical neuroscience,
13(1), 143-150.
https://doi.org/10.1021/acschemneuro.1c00666
Marczynski, M., Rickert, C. A.
, Semerdzhiev, S. A., Van Dijk, W. R.
, Segers-Nolten, I. M. J.
, Claessens, M. M. A. E., & Lieleg, O. (2019).
α-Synuclein Penetrates Mucin Hydrogels despite Its Mucoadhesive Properties.
Biomacromolecules,
20(12), 4332-4344.
https://doi.org/10.1021/acs.biomac.9b00905
van der Kooij, H. M.
, Semerdzhiev, S. A., Buijs, J., Broer, D. J., Liu, D., & Sprakel, J. (2019).
Morphing of liquid crystal surfaces by emergent collectivity.
Nature communications,
10(1), Article 3501.
https://doi.org/10.1038/s41467-019-11501-5
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