The remarkable and unique characteristics of polyglycerols (PG) have made them an attractive candidate for many applications in the biomedical and pharmaceutical fields. The presence of multiple hydroxy groups on the flexible polyether backbone not only enables the further modification of the PG structure but also makes the polymer highly water-soluble and results in excellent biocompatibility. In this review, the polymerization routes leading to PG with different architectures are discussed. Moreover, we discuss the role of these polymers in different biomedical applications such as drug delivery systems, protein conjugation, and surface modification
In the rapidly changing scientific world, contributions of scientists and engineers are leading to m...
Synthetic polyesters have deeply impacted various biomedical and engineering fields, such as tissue ...
Polyglycidol (or polyglycerol) is a biocompatible polymer with a main chain structure similar to tha...
Linear polyether polyol (PEP) consisting of glycidol as repeating units is a flexible hydrophilic al...
As a most well-known synthetic biopolymer, poily(ethylene glycol) (PEG) is widely used in the food, ...
Polymer-based materials are increasingly utilized as platforms for investigating and optimizing biol...
Polyols are multifunctional alcohols, with branched structures, where each arm terminates with an -O...
In this thesis, various multifunctional polyglycidols are synthesized via post-polymerization modifi...
Poly(ethylene glycol) (PEG) is by far the most well-known synthetic biocompatible polymer for its wi...
nzymatically synthesised poly(glycerol adipate) (PGA) has shown a palette of key desirable propertie...
Polyphosphoesters (PPEs) are a class of (bio)degradable polymers with high chemical versatility and ...
The present work was aimed at the development of functional polymeric materials to be used in the ta...
The present work was aimed at the development of functional polymeric materials to be used in the ta...
Hyperbranched polyglycerols (hPGs) have a variety of biomedical applications due to their unique phy...
The work performed by our research group during the last few years in the area of bioerodible-biodeg...
In the rapidly changing scientific world, contributions of scientists and engineers are leading to m...
Synthetic polyesters have deeply impacted various biomedical and engineering fields, such as tissue ...
Polyglycidol (or polyglycerol) is a biocompatible polymer with a main chain structure similar to tha...
Linear polyether polyol (PEP) consisting of glycidol as repeating units is a flexible hydrophilic al...
As a most well-known synthetic biopolymer, poily(ethylene glycol) (PEG) is widely used in the food, ...
Polymer-based materials are increasingly utilized as platforms for investigating and optimizing biol...
Polyols are multifunctional alcohols, with branched structures, where each arm terminates with an -O...
In this thesis, various multifunctional polyglycidols are synthesized via post-polymerization modifi...
Poly(ethylene glycol) (PEG) is by far the most well-known synthetic biocompatible polymer for its wi...
nzymatically synthesised poly(glycerol adipate) (PGA) has shown a palette of key desirable propertie...
Polyphosphoesters (PPEs) are a class of (bio)degradable polymers with high chemical versatility and ...
The present work was aimed at the development of functional polymeric materials to be used in the ta...
The present work was aimed at the development of functional polymeric materials to be used in the ta...
Hyperbranched polyglycerols (hPGs) have a variety of biomedical applications due to their unique phy...
The work performed by our research group during the last few years in the area of bioerodible-biodeg...
In the rapidly changing scientific world, contributions of scientists and engineers are leading to m...
Synthetic polyesters have deeply impacted various biomedical and engineering fields, such as tissue ...
Polyglycidol (or polyglycerol) is a biocompatible polymer with a main chain structure similar to tha...