| Name and position | Projects | Techniques | |
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Ove
Lillelund Lab technician |
Running the lab | A mixture of gentle persuasion and brute force |
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Brian
Vad Post-doc |
Biophysical analysis of
anti-microbial peptides Fibrillation of bacterial amyloid Aggregation of SerADan |
Membrane permeabilization assays
(calcein release) Atomic Force Microscopy Confocal Laser Scanning Microscopy Circular dichroism |
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Søren Bang
Nielsen Post-doc |
Aggregation of α-synuclein
and related proteins Aggregation of whey proteins |
Asymmetrical Field-Flow
Fractionation FTIR Quartz Crystal Microbalance ITC |
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Christine Schar Post-doc |
Membrane interactions of CLIC1 protein | ITC Fluorescence |
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Nikolai
Lorenzen Ph.D. student |
α-synuclein aggregation | Plate reader assays Thermophoresis Fluorescence Circular dichroism Calcein release assays |
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Maria Andreasen Ph.D. Student |
Fibrillation of NFGAIL
peptides Aggregation of Fas4 mutants |
Stopped-flow kinetics Fluorescence Circular dichroism FTIR Plate reader assays |
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Wojciech Paslawski Ph.D. Student |
Aggregation of α-synuclein | Plate reader assays Thermophoresis Fluorescence Circular dichroism Calcein release assays |
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Jon Gade Hansted Ph.D. Student |
Aggregation of whey proteins BAMLET |
Light scattering Circular dichroism ITC Fluorescence |
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Carina
Lyngsgaard Ph.D. Student |
Functional bacterial amyloid | Protein
expression and purification Plate reader assays Circular dichroism |
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Marcel Stenvang Ph.D. Student |
Inhibiting aggregation of Fas4 | In silico design Thermophoresis Circular dichroism Real time PCR |
| Sahar Omer M.Sc. student |
Binding of small molecules to fibrils | Fluorescence Stopped-flow kinetics |