Recently, synthetic polymers have attracted great interest in the field of biomedical science. Among these, polyphosphazenes (PPZs) are regarded as one of the most promising materials, due to their structural flexibility and biodegradability compared to other materials. PPZs have been developed through numerous studies. In particular, multi-functionalized PPZs have been proven to be potential biomaterials in various forms, such as nanoparticles (NPs) and hydrogels, through the introduction of various functional groups. Thus, PPZs have been applied for the delivery of therapeutic molecules (low molecular weight drugs, genes and proteins), bioimaging, phototherapy, bone regeneration, dental liners, modifiers and medical devices. The main goal...
Degradable synthetic polymers are of great importance for many applications such as medical applicat...
© 2020 Elsevier B.V. The development of successful vaccines has been increasingly reliant on the use...
Biodegradable amino acid ester-substituted polyphosphazenes are unique biomaterials for tissue engin...
Degradable biomaterials continue to play a major role in tissue engineering and regenerative medicin...
Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, p...
This is the peer reviewed version of the following article: Hsu, W‐H., Csaba, N., Alexander, C., Gar...
Cyclic and polyphosphazenes are extremely interesting and versatile substrates characterized by the ...
At present biomedical applications are more attractive and significant due to their dire need in thi...
Since 20 years both natural and syntehtic materials had been studied and applied to bone tissue engi...
The importance of developing photoluminescent biodegradable scaffolding materials for tissue enginee...
Recently, biomedical applications gained much attention due to their application and significance fo...
The importance of developing photoluminescent biodegradable scaffolding materials for tissue enginee...
Gene therapy holds immense potential as a future therapeutic strategy for the treatment of numerous ...
Polyphosphoesters (PPEs) are a class of (bio)degradable polymers with high chemical versatility and ...
Poly(organo)phosphazenes are a family of inorganic molecular hybrid polymers with very diverse prope...
Degradable synthetic polymers are of great importance for many applications such as medical applicat...
© 2020 Elsevier B.V. The development of successful vaccines has been increasingly reliant on the use...
Biodegradable amino acid ester-substituted polyphosphazenes are unique biomaterials for tissue engin...
Degradable biomaterials continue to play a major role in tissue engineering and regenerative medicin...
Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, p...
This is the peer reviewed version of the following article: Hsu, W‐H., Csaba, N., Alexander, C., Gar...
Cyclic and polyphosphazenes are extremely interesting and versatile substrates characterized by the ...
At present biomedical applications are more attractive and significant due to their dire need in thi...
Since 20 years both natural and syntehtic materials had been studied and applied to bone tissue engi...
The importance of developing photoluminescent biodegradable scaffolding materials for tissue enginee...
Recently, biomedical applications gained much attention due to their application and significance fo...
The importance of developing photoluminescent biodegradable scaffolding materials for tissue enginee...
Gene therapy holds immense potential as a future therapeutic strategy for the treatment of numerous ...
Polyphosphoesters (PPEs) are a class of (bio)degradable polymers with high chemical versatility and ...
Poly(organo)phosphazenes are a family of inorganic molecular hybrid polymers with very diverse prope...
Degradable synthetic polymers are of great importance for many applications such as medical applicat...
© 2020 Elsevier B.V. The development of successful vaccines has been increasingly reliant on the use...
Biodegradable amino acid ester-substituted polyphosphazenes are unique biomaterials for tissue engin...