The catechol plays a variety of important roles in biological processes, prompting researchers to include them in the design of biomimetic biomedical materials. The low molecular weight and good water solubility of the catechol group (or its derivatives) make it a good candidate for functionalizing biomaterials that can be typically achieved by grafting it onto a polymer chain. To fully harness the powerful capabilities of catechols, one can think beyond grafting to linear polymer chains, towards hyperbranched polymers, wherein at least one of the branches comprises at least one catechol moiety. In recent years, a number of approaches have been developed to synthesize multifunctional hyperbranched polymers with catechol functionalities for ...
Marine mussels secrete adhesive proteins that enable these organisms to bind tenaciously to surfaces...
Application of surface chemistry using bioactive compounds enables simple functionalization of tissu...
In this work, we combine nature’s amazing bioadhesive catechol with the excellent bioinert synthetic...
The catechol plays a variety of important roles in biological processes, prompting researchers to in...
Catechols represent an important and versatile building block for the design of mussel-inspired synt...
The discovery of 3,4-dihydroxyphenyl-L-alanine (L-DOPA), a catechol-functionalized amino acid as maj...
The effective treatment of chronic wounds constitutes one of the most common worldwide healthcare pr...
The effective treatment of chronic wounds constitutes one of the most common worldwide healthcare pr...
In nature, phenolic biopolymers are utilized as functional tools and molecular crosslinkers to contr...
In this study, we proposed a catechol chemistry inspired approach to construct surface self-cross-li...
Biomaterials play pivotal roles in tissue engineering, as they can be used to produce scaffolds for ...
Nature has developed materials that are integrated and effective at controlling their properties of ...
Biomaterials have long been explored in regenerative medicine strategies for the repair or replaceme...
The development of self-healing materials represents an ongoing paradigm shift in materials science ...
Optimization of cell-material interactions is crucial for the success of synthetic biomaterials in g...
Marine mussels secrete adhesive proteins that enable these organisms to bind tenaciously to surfaces...
Application of surface chemistry using bioactive compounds enables simple functionalization of tissu...
In this work, we combine nature’s amazing bioadhesive catechol with the excellent bioinert synthetic...
The catechol plays a variety of important roles in biological processes, prompting researchers to in...
Catechols represent an important and versatile building block for the design of mussel-inspired synt...
The discovery of 3,4-dihydroxyphenyl-L-alanine (L-DOPA), a catechol-functionalized amino acid as maj...
The effective treatment of chronic wounds constitutes one of the most common worldwide healthcare pr...
The effective treatment of chronic wounds constitutes one of the most common worldwide healthcare pr...
In nature, phenolic biopolymers are utilized as functional tools and molecular crosslinkers to contr...
In this study, we proposed a catechol chemistry inspired approach to construct surface self-cross-li...
Biomaterials play pivotal roles in tissue engineering, as they can be used to produce scaffolds for ...
Nature has developed materials that are integrated and effective at controlling their properties of ...
Biomaterials have long been explored in regenerative medicine strategies for the repair or replaceme...
The development of self-healing materials represents an ongoing paradigm shift in materials science ...
Optimization of cell-material interactions is crucial for the success of synthetic biomaterials in g...
Marine mussels secrete adhesive proteins that enable these organisms to bind tenaciously to surfaces...
Application of surface chemistry using bioactive compounds enables simple functionalization of tissu...
In this work, we combine nature’s amazing bioadhesive catechol with the excellent bioinert synthetic...