We report on the biosynthesis of 65 kDa A-B-A triblock copolymers consisting of pH-responsive (acidic) silklike blocks and nonresponsive collagenlike blocks, and we show that at pH values where the silklike blocks become uncharged, these polymers form transparent high-modulus gels, that is, 7-15 kPa at 8 g • L-1, that consist of supramolecular nanotapes with a height of 2.8 nm, a width of ∼14 nm, and an average length of > 10 μm. At the concentrations employed, both of these protein triblocks essentially form the same structure, irrespective of block order. The amount of product isolated from the extracellular medium is in the gram per liter range. This high yield makes various applications of this promising class of biocompatible materi...
We report on self-healing, pH-responsive hydrogels that are entirely protein-based. The protein is a...
<p> </p> <p> <em>The aim of the project is to develop biosynthetically produced amino acid polymers ...
The central theme of this thesis work is to develop new block copolymer materials for biomedical app...
We report on the biosynthesis of 65 kDa A¿B¿A triblock copolymers consisting of pH-responsive (acidi...
We report on the biosynthesis of 65 kDa A¿B¿A triblock copolymers consisting of pH-responsive (acidi...
We produced several pH-responsive silk-collagen-like triblocks, one acidic and two alkaline. At pH v...
The research described in this thesis concerns the design, biotechnological production, and physioch...
We produced several pH-responsive silk-collagen-like triblocks, one acidic and two alkaline. At pH v...
The research described in this thesis concerns the design, biotechnological production, and physioch...
We produced several pH-responsive silk-collagen-like triblocks, one acidic and two alkaline. At pH v...
We study the self-assembly of genetically engineered protein-based triblock copolymers consisting of...
We study the self-assembly of genetically engineered protein-based triblock copolymers consisting of...
We study the self-assembly of genetically engineered protein-based triblock copolymers consisting of...
We report on self-healing, pH-responsive hydrogels that are entirely protein-based. The protein is a...
We report on self-healing, pH-responsive hydrogels that are entirely protein-based. The protein is a...
We report on self-healing, pH-responsive hydrogels that are entirely protein-based. The protein is a...
<p> </p> <p> <em>The aim of the project is to develop biosynthetically produced amino acid polymers ...
The central theme of this thesis work is to develop new block copolymer materials for biomedical app...
We report on the biosynthesis of 65 kDa A¿B¿A triblock copolymers consisting of pH-responsive (acidi...
We report on the biosynthesis of 65 kDa A¿B¿A triblock copolymers consisting of pH-responsive (acidi...
We produced several pH-responsive silk-collagen-like triblocks, one acidic and two alkaline. At pH v...
The research described in this thesis concerns the design, biotechnological production, and physioch...
We produced several pH-responsive silk-collagen-like triblocks, one acidic and two alkaline. At pH v...
The research described in this thesis concerns the design, biotechnological production, and physioch...
We produced several pH-responsive silk-collagen-like triblocks, one acidic and two alkaline. At pH v...
We study the self-assembly of genetically engineered protein-based triblock copolymers consisting of...
We study the self-assembly of genetically engineered protein-based triblock copolymers consisting of...
We study the self-assembly of genetically engineered protein-based triblock copolymers consisting of...
We report on self-healing, pH-responsive hydrogels that are entirely protein-based. The protein is a...
We report on self-healing, pH-responsive hydrogels that are entirely protein-based. The protein is a...
We report on self-healing, pH-responsive hydrogels that are entirely protein-based. The protein is a...
<p> </p> <p> <em>The aim of the project is to develop biosynthetically produced amino acid polymers ...
The central theme of this thesis work is to develop new block copolymer materials for biomedical app...