In the present study, silk fibroin solution was controlled through a simple shearing to accomplish the steady and rapid gelation process and the conformational transition. Antheraea yamamai silk fibroin was formed into hydrogels quicker than Bombyx mori silk fibroin on the same condition. Comparing with Bombyx mori silk fibroin, the rapid gelation of Antheraea yamamai silk fibroin was concerned with its alternate polyalanine-containing units which are tended to form the α-helix structures spontaneously. The entropic cost during the conformational transition to β-sheet is less than that from random coil to β-sheet
The mechanism by which arthropods (e.g., spiders and many insects) can produce silk fibres from an a...
Electrochemically controlled, reversible assembly of biopolymers into hydrogel structures is a promi...
As a functional biomaterial, silk fibroin has been widely used in drug release, cell encapsulation a...
In the present study, silk fibroin solution was controlled through a simple shear-ing to accomplish ...
AbstractA novel, to our knowledge, technique was developed to control the rate of β-sheet formation ...
Silk fibroin hydrogels with tunable properties could be obtained from aqueous fibroin solutions (4.2...
Silk fibroin (SF) is a typical fibrous protein that is secreted by silkworms and spiders. It has bee...
Silk fibroin (SF) protein, produced by silkworm Bombyx mori, is a promising biomaterial, while sopho...
Mechanical properties of biomaterials play an important role in their biological performance. Among ...
We provide some new insights into the kinetics and mechanism of sol-gel transition as it pertains to...
We provide some new insights into the kinetics and mechanism of sol-gel transition as it pertains to...
The supramolecular self-assembly behavior of silk fibroin was investigated using osmotic stress tech...
In this report, a novel silk fibroin hydrogel with a reversible sol-gel transition capacity is prese...
This research involves the characterization of structure and structure formation in aqueous systems....
The mechanism by which native silk feedstocks are converted to solid fibres in nature has attracted ...
The mechanism by which arthropods (e.g., spiders and many insects) can produce silk fibres from an a...
Electrochemically controlled, reversible assembly of biopolymers into hydrogel structures is a promi...
As a functional biomaterial, silk fibroin has been widely used in drug release, cell encapsulation a...
In the present study, silk fibroin solution was controlled through a simple shear-ing to accomplish ...
AbstractA novel, to our knowledge, technique was developed to control the rate of β-sheet formation ...
Silk fibroin hydrogels with tunable properties could be obtained from aqueous fibroin solutions (4.2...
Silk fibroin (SF) is a typical fibrous protein that is secreted by silkworms and spiders. It has bee...
Silk fibroin (SF) protein, produced by silkworm Bombyx mori, is a promising biomaterial, while sopho...
Mechanical properties of biomaterials play an important role in their biological performance. Among ...
We provide some new insights into the kinetics and mechanism of sol-gel transition as it pertains to...
We provide some new insights into the kinetics and mechanism of sol-gel transition as it pertains to...
The supramolecular self-assembly behavior of silk fibroin was investigated using osmotic stress tech...
In this report, a novel silk fibroin hydrogel with a reversible sol-gel transition capacity is prese...
This research involves the characterization of structure and structure formation in aqueous systems....
The mechanism by which native silk feedstocks are converted to solid fibres in nature has attracted ...
The mechanism by which arthropods (e.g., spiders and many insects) can produce silk fibres from an a...
Electrochemically controlled, reversible assembly of biopolymers into hydrogel structures is a promi...
As a functional biomaterial, silk fibroin has been widely used in drug release, cell encapsulation a...