Mussels strongly adhere to a variety of surfaces by secreting byssal threads that contain mussel foot proteins (Mfps). Recombinant production of Mfps presents an attractive route for preparing advanced adhesive materials. Using synthetic biology strategies, we synthesized Mfp5 together with Mfp5 oligomers containing two or three consecutive, covalently-linked Mfp5 sequences named Mfp5(2) and Mfp5(3). The force and work of adhesion of these proteins were measured underwater with a colloidal probe mounted on an atomic force microscope and the adsorption was measured with a quartz crystal microbalance. We found positive correlations between Mfp5 molecular weight and underwater adhesive properties, including force of adhesion, work of adhesion,...
Sessile marine mussels must "dry" underwater surfaces before adhering to them. Synthetic adhesives h...
Translating sticky biological molecules-such as mussel foot proteins (MFPs)-into synthetic, cost-eff...
The underwater adhesion of marine mussels is a fascinating example of how proteinaceous adhesives, a...
Production of novel protein-based materials has become a widespread and valuable field of research w...
Bio-adhesives play a pivotal role in a wide range of medical applications. However, there are some p...
Using a surface forces apparatus and an atomic force microscope, we characterized the adhesive prope...
Adhesive proteins from marine mussels have long been studied for their potential biomedical applicat...
Mussel adhesive proteins, including the 20-plus variants of foot protein type 3 (fp-3), have been su...
Adhesive proteins from marine mussels have long been studied for their potential biomedical applicat...
Mussel adhesive proteins have been suggested as a basis for environmentally friendly adhesives for u...
Biological organisms demonstrate remarkable abilities to affix themselves to almost any surface. Man...
Sessile marine mussels must "dry" underwater surfaces before adhering to them. Synthetic adhesives h...
Adhesion represents a key joining technology and nature has been developing adhesives for millions o...
Nature has evolved several molecular strategies to ensure adhesion in aqueous environments, where ar...
Marine biology is continually producing materials with properties unmatched by human technology. The...
Sessile marine mussels must "dry" underwater surfaces before adhering to them. Synthetic adhesives h...
Translating sticky biological molecules-such as mussel foot proteins (MFPs)-into synthetic, cost-eff...
The underwater adhesion of marine mussels is a fascinating example of how proteinaceous adhesives, a...
Production of novel protein-based materials has become a widespread and valuable field of research w...
Bio-adhesives play a pivotal role in a wide range of medical applications. However, there are some p...
Using a surface forces apparatus and an atomic force microscope, we characterized the adhesive prope...
Adhesive proteins from marine mussels have long been studied for their potential biomedical applicat...
Mussel adhesive proteins, including the 20-plus variants of foot protein type 3 (fp-3), have been su...
Adhesive proteins from marine mussels have long been studied for their potential biomedical applicat...
Mussel adhesive proteins have been suggested as a basis for environmentally friendly adhesives for u...
Biological organisms demonstrate remarkable abilities to affix themselves to almost any surface. Man...
Sessile marine mussels must "dry" underwater surfaces before adhering to them. Synthetic adhesives h...
Adhesion represents a key joining technology and nature has been developing adhesives for millions o...
Nature has evolved several molecular strategies to ensure adhesion in aqueous environments, where ar...
Marine biology is continually producing materials with properties unmatched by human technology. The...
Sessile marine mussels must "dry" underwater surfaces before adhering to them. Synthetic adhesives h...
Translating sticky biological molecules-such as mussel foot proteins (MFPs)-into synthetic, cost-eff...
The underwater adhesion of marine mussels is a fascinating example of how proteinaceous adhesives, a...