The last decades have witnessed significant and rapid progress in polymer chemistry and molecular biology. The invention of PCR and advances in automated solid phase synthesis of DNA have made this biological entity broadly available to all researchers across biological and chemical sciences. Thanks to the development of a variety of polymerization techniques, macromolecules can be synthesized with predetermined molecular weights and excellent structural control. In recent years these two exciting areas of research converged to generate a new type of nucleic acid hybrid material, consisting of oligodeoxynucleotides and organic polymers. By conjugating these two classes of materials, DNA block copolymers are generated exhibiting engineered m...
A novel class of cationic block copolymers constituted by a neutral hydrophilic poly(ethylene glycol...
Gene therapy is an attractive therapeutic method for the treatment of genetic disorders for which th...
A novel class of cationic block copolymers constituted by a neutral hydrophilic poly(ethylene glycol...
The last decades have witnessed significant and rapid progress in polymer chemistry and molecular bi...
We live in a world full of synthetic materials, and the development of new technologies builds on th...
We live in a world full of synthetic materials, and the development of new technologies builds on th...
The combination of synthetic polymers and DNA has provided biologists, chemists and materials scient...
Ring opening metathesis polymerization (ROMP) was used to generate a variety of self-assembled nanos...
PCR was successfully implemented into polymer chemistry to produce linear multiblock structures up t...
The combination of synthetic polymers and DNA has provided biologists, chemists and materials scient...
The synthesis of well-defined multifunctional polymers is of great importance for the development of...
DNA-mediated self-assembly of colloidal particles is one of the most promising approaches for constr...
Well-defined oligo(ethylene glycol) methyl ether methacrylate (OEOMA) based block copolymers with ca...
Ultra-high molecular weight DNA/polymer hybrid materials were prepared employing molecular biology t...
A novel class of cationic block copolymers constituted by a neutral hydrophilic poly(ethylene glycol...
Gene therapy is an attractive therapeutic method for the treatment of genetic disorders for which th...
A novel class of cationic block copolymers constituted by a neutral hydrophilic poly(ethylene glycol...
The last decades have witnessed significant and rapid progress in polymer chemistry and molecular bi...
We live in a world full of synthetic materials, and the development of new technologies builds on th...
We live in a world full of synthetic materials, and the development of new technologies builds on th...
The combination of synthetic polymers and DNA has provided biologists, chemists and materials scient...
Ring opening metathesis polymerization (ROMP) was used to generate a variety of self-assembled nanos...
PCR was successfully implemented into polymer chemistry to produce linear multiblock structures up t...
The combination of synthetic polymers and DNA has provided biologists, chemists and materials scient...
The synthesis of well-defined multifunctional polymers is of great importance for the development of...
DNA-mediated self-assembly of colloidal particles is one of the most promising approaches for constr...
Well-defined oligo(ethylene glycol) methyl ether methacrylate (OEOMA) based block copolymers with ca...
Ultra-high molecular weight DNA/polymer hybrid materials were prepared employing molecular biology t...
A novel class of cationic block copolymers constituted by a neutral hydrophilic poly(ethylene glycol...
Gene therapy is an attractive therapeutic method for the treatment of genetic disorders for which th...
A novel class of cationic block copolymers constituted by a neutral hydrophilic poly(ethylene glycol...