6533b85dfe1ef96bd12bded2

RESEARCH PRODUCT

Beyond Poly(ethylene glycol): Linear Polyglycerol as a Multifunctional Polyether for Biomedical and Pharmaceutical Applications

Holger FreyAnja ThomasSophie S. Müller

subject

Glycerolchemistry.chemical_classificationPolymers and PlasticsPolymersGlycidolBiocompatible MaterialsBioengineeringPolymerPolyethylene GlycolsBiomaterialschemistry.chemical_compoundMonomerPharmaceutical PreparationschemistryPolymerizationPEG ratioMaterials ChemistryAnimalsHumansSurface modificationOrganic chemistryEthylene glycolDerivative (chemistry)Ethers

description

Polyglycerols (sometimes also called "polyglycidols") represent a class of highly biocompatible and multihydroxy-functional polymers that may be considered as a multifunctional analogue of poly(ethylene glycol) (PEG). Various architectures based on a polyglycerol scaffold are feasible depending on the monomer employed. While polymerization of glycidol leads to hyperbranched polyglycerols, the precisely defined linear analogue is obtained by using suitably protected glycidol as a monomer, followed by removal of the protective group in a postpolymerization step. This review summarizes the properties and synthetic approaches toward linear polyglycerols (linPG), which are at present mainly based on the application of ethoxyethyl glycidyl ether (EEGE) as an acetal-protected glycidol derivative. Particular emphasis is placed on the manifold functionalization strategies including, e.g., the synthesis of end-functional linPGs or multiheterofunctional modifications at the polyether backbone. Potential applications like bioconjugation and utilization as a component in degradable biomaterials or for diagnostics, in which polyglycerol acts as a promising PEG substitute are discussed. In the last section, the important role of linear polyglycerol as a macroinitiator or as a highly hydrophilic segment in block co- or terpolymers is highlighted.

https://doi.org/10.1021/bm5002608