AbstractThe self-assembly and aggregation of insulin molecules has been investigated by means of nanoflow electrospray mass spectrometry. Hexamers of insulin containing predominantly two, but up to four, Zn2+ ions were observed in the gas phase when solutions at pH 4.0 were examined. At pH 3.3, in the absence of Zn2+, dimers and tetramers are observed. Spectra obtained from solutions of insulin at millimolar concentrations at pH 2.0, conditions under which insulin is known to aggregate in solution, showed signals from a range of higher oligomers. Clusters containing up to 12 molecules could be detected in the gas phase. Hydrogen exchange measurements show that in solution these higher oligomers are in rapid equilibrium with monomeric insuli...
At high temperature and low pH, the protein hormone insulin is highly prone to form amyloid fibrils,...
AbstractDynamic light scattering and Fourier transform infrared spectroscopy were used to study the ...
This thesis aims at understanding the interaction between insulin and interfaces with a multi-discip...
AbstractThe self-assembly and aggregation of insulin molecules has been investigated by means of nan...
The self-assembly and aggregation of insulin molecules has been investigated by means of nanoflow el...
AbstractThe traditional approach to investigating the partial unfolding and fibrillation of insulin,...
Human insulin is a widely used model protein for the study of amyloid formation as both associated t...
Human insulin is a widely used model protein for the study of amyloid formation as both associated t...
AbstractThe importance of understanding the mechanism of protein aggregation into insoluble amyloid ...
Engaging Raman spectroscopy as a primary tool, we investigated the early events of insulin fibriliza...
AbstractKinetics of human insulin aggregation has been studied at pH 1.6 and 60°C, when amyloid fibr...
Time-resolved emission spectra (TRES) have been used to detect conformational changes of intrinsic ...
At high temperature and low pH, the protein hormone insulin is highly prone to form amyloid fibrils,...
AbstractAs the application of high-resolution atomic force microscopy (AFM) has led us recently to t...
AbstractA technique was developed for studying the nucleation and growth of fibrillar protein aggreg...
At high temperature and low pH, the protein hormone insulin is highly prone to form amyloid fibrils,...
AbstractDynamic light scattering and Fourier transform infrared spectroscopy were used to study the ...
This thesis aims at understanding the interaction between insulin and interfaces with a multi-discip...
AbstractThe self-assembly and aggregation of insulin molecules has been investigated by means of nan...
The self-assembly and aggregation of insulin molecules has been investigated by means of nanoflow el...
AbstractThe traditional approach to investigating the partial unfolding and fibrillation of insulin,...
Human insulin is a widely used model protein for the study of amyloid formation as both associated t...
Human insulin is a widely used model protein for the study of amyloid formation as both associated t...
AbstractThe importance of understanding the mechanism of protein aggregation into insoluble amyloid ...
Engaging Raman spectroscopy as a primary tool, we investigated the early events of insulin fibriliza...
AbstractKinetics of human insulin aggregation has been studied at pH 1.6 and 60°C, when amyloid fibr...
Time-resolved emission spectra (TRES) have been used to detect conformational changes of intrinsic ...
At high temperature and low pH, the protein hormone insulin is highly prone to form amyloid fibrils,...
AbstractAs the application of high-resolution atomic force microscopy (AFM) has led us recently to t...
AbstractA technique was developed for studying the nucleation and growth of fibrillar protein aggreg...
At high temperature and low pH, the protein hormone insulin is highly prone to form amyloid fibrils,...
AbstractDynamic light scattering and Fourier transform infrared spectroscopy were used to study the ...
This thesis aims at understanding the interaction between insulin and interfaces with a multi-discip...