Metal ions are present in many different biological materials, and are capable of forming strong cross-links in aqueous environments. The relative contribution of different metal-based cross-links was measured in the defensive glue produced by the terrestrial slug Arion subfuscus. This glue contains calcium, magnesium, zinc, manganese, iron and copper. These metals are essential to the integrity of the glue and to gel stiffening. Removal of all metals caused at least a 15-fold decrease in the storage modulus of the glue. Selectively disrupting cross-links involving hard Lewis acids such as calcium reduced the stiffness of the glue, while disrupting cross-links involving borderline Lewis acids such as zinc did not. Calcium is the most common...
The byssus that anchors mussels to solid surfaces is a protein-based material combining strength and...
The tough, hydrogel glue produced by the slug Arion subfuscus achieves impressive performance throug...
Growing evidence supports a critical role of dynamic metal-coordination crosslinking in soft biologi...
Metal ions are present in many different biological materials, and are capable of forming strong cro...
Several gastropod molluscs produce glues that are interesting because they are dilute gels and yet t...
The cross-linking interactions that provide cohesive strength to molluscan adhesive gels were invest...
The cross-linking interactions that provide cohesive strength to molluscan adhesive gels were invest...
The terrestrial slug Arion subfuscus secretes a glue that is a dilute gel with remarkable adhesive a...
Several different types of gastropods produce tough adhesive gels. These gels consist of more than 9...
The terrestrial slug Arion subfuscus produces a defensive secretion that is sticky and tough, despit...
Marine mussel adhesion is a system that has been of interest in the field of biomimetics due to rema...
Biological organisms demonstrate remarkable abilities to affix themselves to almost any surface. Man...
The byssus that anchors mussels to solid surfaces is a protein-based material combining strength and...
The tough, hydrogel glue produced by the slug Arion subfuscus achieves impressive performance throug...
The terrestrial slug produces a defensive secretion that is sticky and tough, despite being a dilute...
The byssus that anchors mussels to solid surfaces is a protein-based material combining strength and...
The tough, hydrogel glue produced by the slug Arion subfuscus achieves impressive performance throug...
Growing evidence supports a critical role of dynamic metal-coordination crosslinking in soft biologi...
Metal ions are present in many different biological materials, and are capable of forming strong cro...
Several gastropod molluscs produce glues that are interesting because they are dilute gels and yet t...
The cross-linking interactions that provide cohesive strength to molluscan adhesive gels were invest...
The cross-linking interactions that provide cohesive strength to molluscan adhesive gels were invest...
The terrestrial slug Arion subfuscus secretes a glue that is a dilute gel with remarkable adhesive a...
Several different types of gastropods produce tough adhesive gels. These gels consist of more than 9...
The terrestrial slug Arion subfuscus produces a defensive secretion that is sticky and tough, despit...
Marine mussel adhesion is a system that has been of interest in the field of biomimetics due to rema...
Biological organisms demonstrate remarkable abilities to affix themselves to almost any surface. Man...
The byssus that anchors mussels to solid surfaces is a protein-based material combining strength and...
The tough, hydrogel glue produced by the slug Arion subfuscus achieves impressive performance throug...
The terrestrial slug produces a defensive secretion that is sticky and tough, despite being a dilute...
The byssus that anchors mussels to solid surfaces is a protein-based material combining strength and...
The tough, hydrogel glue produced by the slug Arion subfuscus achieves impressive performance throug...
Growing evidence supports a critical role of dynamic metal-coordination crosslinking in soft biologi...