Degradable biomaterials continue to play a major role in tissue engineering and regenerative medicine as well as for delivering therapeutic agents. Although the chemistry of polyphosphazenes has been studied extensively, a systematic review of their applications for a wide range of biomedical applications is lacking. Polyphosphazenes are synthesized through a relatively well-known two-step reaction scheme which involves the substitution of the initial linear precursor with a wide range of nucleophiles. The ease of substitution has led to the development of a broad class of materials that have been studied for numerous biomedical applications including as scaffold materials for tissue engineering and regenerative medicine. The objective of t...
This is the peer reviewed version of the following article: Hsu, W‐H., Csaba, N., Alexander, C., Gar...
The importance of developing photoluminescent biodegradable scaffolding materials for tissue enginee...
Biodegradable amino acid ester-substituted polyphosphazenes are unique biomaterials for tissue engin...
Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, p...
Polyphosphazene derivatives having amino acid ester side groups were prepared by reaction of poly(di...
Recently, synthetic polymers have attracted great interest in the field of biomedical science. Among...
The development of new and improved biomaterials is essential for tissue engineering and regenerativ...
Degradable synthetic polymers are of great importance for many applications such as medical applicat...
Recently, biomedical applications gained much attention due to their application and significance fo...
The importance of developing photoluminescent biodegradable scaffolding materials for tissue enginee...
We report the synthesis and physicochemical analysis of mixed-substituent dipeptide-based polyphosph...
The synthesis of a series of novel, water-soluble poly(organophosphazenes) prepared via living catio...
Cyclic and polyphosphazenes are extremely interesting and versatile substrates characterized by the ...
Since 20 years both natural and syntehtic materials had been studied and applied to bone tissue engi...
At present biomedical applications are more attractive and significant due to their dire need in thi...
This is the peer reviewed version of the following article: Hsu, W‐H., Csaba, N., Alexander, C., Gar...
The importance of developing photoluminescent biodegradable scaffolding materials for tissue enginee...
Biodegradable amino acid ester-substituted polyphosphazenes are unique biomaterials for tissue engin...
Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, p...
Polyphosphazene derivatives having amino acid ester side groups were prepared by reaction of poly(di...
Recently, synthetic polymers have attracted great interest in the field of biomedical science. Among...
The development of new and improved biomaterials is essential for tissue engineering and regenerativ...
Degradable synthetic polymers are of great importance for many applications such as medical applicat...
Recently, biomedical applications gained much attention due to their application and significance fo...
The importance of developing photoluminescent biodegradable scaffolding materials for tissue enginee...
We report the synthesis and physicochemical analysis of mixed-substituent dipeptide-based polyphosph...
The synthesis of a series of novel, water-soluble poly(organophosphazenes) prepared via living catio...
Cyclic and polyphosphazenes are extremely interesting and versatile substrates characterized by the ...
Since 20 years both natural and syntehtic materials had been studied and applied to bone tissue engi...
At present biomedical applications are more attractive and significant due to their dire need in thi...
This is the peer reviewed version of the following article: Hsu, W‐H., Csaba, N., Alexander, C., Gar...
The importance of developing photoluminescent biodegradable scaffolding materials for tissue enginee...
Biodegradable amino acid ester-substituted polyphosphazenes are unique biomaterials for tissue engin...