Self assembling protein nanofibres have great potential within the nanotechnology industry. To realise this potential, nanofibres need to be manufactured on a commercial scale. To date, amyloid fibrils, a form of protein nanofibre with desirable bionanotechnological properties, have only been produced using expensive and time-costly, small-scale methods. This paper describes the production of protein nanofibres from semi-pure and crude mixtures of bovine crystallin proteins, currently a waste product in the meat industry. These nanofibres displayed amyloid fibril characteristics. Moreover, distinct fibre morphologies were observed dependent upon the formation conditions adopted. This research shows that amyloid fibrils can be inexpensively ...
Protein self-assembly offers key strategies for nature to generate high-performance and multifunctio...
While conventional organic polymers and plastics have served various needs of our society for decade...
Proteins in solution can form objects of various shapes. One fascinating possibility is the formatio...
Self assembling protein nanofibres have great potential within the nanotechnology industry. To reali...
Protein nanofibres, commonly known as amyloid fibrils, are emerging as potential biological nanomate...
Amyloid fibrils are a type of protein nanofibres that form when a normally soluble protein aggregate...
Amyloid fibrils are highly ordered β-sheet structures that are formed from a variety of proteins in ...
Amyloid fibrils are a class of insoluble protein nanofibers that are formed via the self-assembly of...
This chapter deals with protein nanofibrils (PNFs), also referred to as amyloid fibrils. This is an ...
The development towards a sustainable society requires a radical change of many of the materials we ...
Self-assembly of biomolecules into beta-sheet structures can be applied in the creation of nano-mate...
This thesis explores the potential of protein nanofibrils (PNFs) as an ingredient to generate struct...
Recently, it has been reported that the increasing number of plastic are significantly floated in th...
The development of new functional ingredients is important for future food products. This PhD resear...
As interest in using proteins to assemble functional, biocompatible, and environmentally friendly ma...
Protein self-assembly offers key strategies for nature to generate high-performance and multifunctio...
While conventional organic polymers and plastics have served various needs of our society for decade...
Proteins in solution can form objects of various shapes. One fascinating possibility is the formatio...
Self assembling protein nanofibres have great potential within the nanotechnology industry. To reali...
Protein nanofibres, commonly known as amyloid fibrils, are emerging as potential biological nanomate...
Amyloid fibrils are a type of protein nanofibres that form when a normally soluble protein aggregate...
Amyloid fibrils are highly ordered β-sheet structures that are formed from a variety of proteins in ...
Amyloid fibrils are a class of insoluble protein nanofibers that are formed via the self-assembly of...
This chapter deals with protein nanofibrils (PNFs), also referred to as amyloid fibrils. This is an ...
The development towards a sustainable society requires a radical change of many of the materials we ...
Self-assembly of biomolecules into beta-sheet structures can be applied in the creation of nano-mate...
This thesis explores the potential of protein nanofibrils (PNFs) as an ingredient to generate struct...
Recently, it has been reported that the increasing number of plastic are significantly floated in th...
The development of new functional ingredients is important for future food products. This PhD resear...
As interest in using proteins to assemble functional, biocompatible, and environmentally friendly ma...
Protein self-assembly offers key strategies for nature to generate high-performance and multifunctio...
While conventional organic polymers and plastics have served various needs of our society for decade...
Proteins in solution can form objects of various shapes. One fascinating possibility is the formatio...