Disulfide exchange reaction has emerged as a powerful tool for reversible conjugation of proteins, peptides and thiol containing molecules to polymeric supports. In particular, the pyridyl disulfide group provides an efficient handle for the site-specific conjugation of therapeutic peptides and proteins bearing cysteine moieties. In this study, novel biodegradable dendritic platforms containing a pyridyl disulfide unit at their focal point were designed. Presence of hydroxyl groups at the periphery of these dendrons allows their elaboration to multivalent initiators that yield poly(ethylene glycol) based multiarm star polymers via controlled radical polymerization. The pyridyl disulfide unit at the core of these star polymers undergoes eff...
A synthetic protocol for the preparation of hetero-biofunctional protein-polymer conjugates is descr...
A novel platform of dendritic nanogels is herein presented, capitalizing on the self-assembly of all...
Intracellular delivery is an essential challenge for drug development, as low membrane permeability...
Herein, we report the synthesis of a series of novel pyridyl disulfide (PDS)-functionalized statisti...
Well-defined polymer scaffolds convertible to (multi)functional polymer structures via selective and...
Well-defined reactive polymer scaffolds are useful building blocks for a wide variety of application...
Biodegradable aliphatic polyesters such as poly(lactide) and poly(ε-caprolactone), largely used in...
Discovery and use of biocompatible polymers offers great promise in the pharmaceutical field, partic...
We employ water-soluble organic phosphines as key reagents in a one-pot synthetic protocol where a (...
Previously we reported emulsion polymerization of propylene sulfide with Pluronic F127 as an emulsif...
Biohybrid materials involving the chemical fusion of biomolecules with synthetic entities have recei...
We report the formation of dynamic, reversible cross-linked dendritic megamers and their dissociatio...
Advancements in the biomedical field are driven by the design of novel materials with controlled phy...
We report the formation of dynamic, reversible cross-linked dendritic megamers and their dissociatio...
Peptides derived from the third B-cell lymphoma 2 (Bcl-2) homology domain (BH3) can heterodimerize w...
A synthetic protocol for the preparation of hetero-biofunctional protein-polymer conjugates is descr...
A novel platform of dendritic nanogels is herein presented, capitalizing on the self-assembly of all...
Intracellular delivery is an essential challenge for drug development, as low membrane permeability...
Herein, we report the synthesis of a series of novel pyridyl disulfide (PDS)-functionalized statisti...
Well-defined polymer scaffolds convertible to (multi)functional polymer structures via selective and...
Well-defined reactive polymer scaffolds are useful building blocks for a wide variety of application...
Biodegradable aliphatic polyesters such as poly(lactide) and poly(ε-caprolactone), largely used in...
Discovery and use of biocompatible polymers offers great promise in the pharmaceutical field, partic...
We employ water-soluble organic phosphines as key reagents in a one-pot synthetic protocol where a (...
Previously we reported emulsion polymerization of propylene sulfide with Pluronic F127 as an emulsif...
Biohybrid materials involving the chemical fusion of biomolecules with synthetic entities have recei...
We report the formation of dynamic, reversible cross-linked dendritic megamers and their dissociatio...
Advancements in the biomedical field are driven by the design of novel materials with controlled phy...
We report the formation of dynamic, reversible cross-linked dendritic megamers and their dissociatio...
Peptides derived from the third B-cell lymphoma 2 (Bcl-2) homology domain (BH3) can heterodimerize w...
A synthetic protocol for the preparation of hetero-biofunctional protein-polymer conjugates is descr...
A novel platform of dendritic nanogels is herein presented, capitalizing on the self-assembly of all...
Intracellular delivery is an essential challenge for drug development, as low membrane permeability...