Complex recombinant biomaterials that merge the self-assembling properties of different (poly)peptides provide a powerful tool for the achievement of specific structures, such as hydrogel networks, by tuning the thermodynamics and kinetics of the system through a tailored molecular design. In this work, elastin-like (EL) and silk-like (SL) polypeptides are combined to obtain a silk-elastin-like recombinamer (SELR) with dual selfassembly. First, EL domains force the molecule to undergo a phase transition above a precise temperature, which is driven by entropy and occurs very fast. Then, SL motifs interact through the slow formation of β-sheets, stabilized by H-bonds, creating an energy barrier that opposes phase separation. Both eve...
The fabrication of three dimensional "bead-string" microstructured hydrogels is rationally achieved ...
<p> A key part of the growing field of biomedical sciences deals with the development of new, contro...
Recombinant protein polymers, which can combine different bioinspired self-assembly motifs in a well...
Adaptive hydrogels tailor-made from silk-elastin-like proteins (SELPs) possess excellent biocompatib...
Producción CientíficaIn the last decades, recombinant structural proteins have become very promising...
The biofabrication of structural proteins with controllable properties via amino acid sequence desig...
The biofabrication of structural proteins with controllable properties via amino acid sequence desig...
Recombinant protein polymers, which can combine different bioinspired self-assembly motifs in a well...
The biofabrication of structural proteins with controllable properties via amino acid sequence desig...
Natural occurring elastomeric proteins occur in a wide range of biological systems, fulfilling preci...
<p> </p> <p> <em>The aim of the project is to develop biosynthetically produced amino acid polymers ...
Although significant progress has been made in the area of injectable hydrogels for biomedical appli...
The aim of the project is to develop biosynthetically produced amino acid polymers which are...
Production of brand new protein-based materials with precise control over the amino acid sequences a...
A key part of the growing field of biomedical sciences deals with the development of new, controlled...
The fabrication of three dimensional "bead-string" microstructured hydrogels is rationally achieved ...
<p> A key part of the growing field of biomedical sciences deals with the development of new, contro...
Recombinant protein polymers, which can combine different bioinspired self-assembly motifs in a well...
Adaptive hydrogels tailor-made from silk-elastin-like proteins (SELPs) possess excellent biocompatib...
Producción CientíficaIn the last decades, recombinant structural proteins have become very promising...
The biofabrication of structural proteins with controllable properties via amino acid sequence desig...
The biofabrication of structural proteins with controllable properties via amino acid sequence desig...
Recombinant protein polymers, which can combine different bioinspired self-assembly motifs in a well...
The biofabrication of structural proteins with controllable properties via amino acid sequence desig...
Natural occurring elastomeric proteins occur in a wide range of biological systems, fulfilling preci...
<p> </p> <p> <em>The aim of the project is to develop biosynthetically produced amino acid polymers ...
Although significant progress has been made in the area of injectable hydrogels for biomedical appli...
The aim of the project is to develop biosynthetically produced amino acid polymers which are...
Production of brand new protein-based materials with precise control over the amino acid sequences a...
A key part of the growing field of biomedical sciences deals with the development of new, controlled...
The fabrication of three dimensional "bead-string" microstructured hydrogels is rationally achieved ...
<p> A key part of the growing field of biomedical sciences deals with the development of new, contro...
Recombinant protein polymers, which can combine different bioinspired self-assembly motifs in a well...