Successful gene therapy necessitates safe and efficient gene transfer. This article describes the use of a cationic polymer, which was synthesized by cross-linking low molecular weight branched poly(ethylenimine) (PEI) with both β-cyclodextrin and propane-1,2,3-triol, for efficient and safe non-viral gene delivery. Experimentation demonstrated that the polymer had a pH buffering capacity and DNA condensing ability comparable to those of PEI 25 kDa. In B16-F0 cells, the polymer increased the transfection efficiency of naked DNA by 700-fold and yielded better transfection efficiencies than Fugene HD (threefold higher) and PEI 25 kDa (fivefold higher). The high transfection efficiency of the polymer was not affected by the presence of serum du...
Nucleic acid delivery has many applications in basic science, biotechnology, agriculture, and medici...
Highly efficient gene delivery vehicles are pursued to progress gene therapy. In this study, we deve...
Nucleic acid delivery has many applications in basic science, biotechnology, agriculture, and medici...
Successful gene therapy necessitates safe and efficient gene transfer. This article describes the us...
Successful gene therapy necessitates safe and efficient gene transfer. This article describes the us...
Successful gene therapy necessitates safe and efficient gene transfer. This article describes the us...
The success of gene therapy relies on a safe and effective gene delivery system. In this communicati...
Gene therapy is a modern technology applied by using therapeutic nucleic acids to treat or prevent d...
A novel co-polymer based on 2-hydroxypropyl-α-cyclodextrin cross-linked by low molecular weight poly...
Poly(ethylenimine) (PEI) is a cationic polymer extensively exploited for non-viral gene delivery; ho...
Gene transfection mediated by the cationic polymer polyethylenimine (PEI) is considered a standard m...
Abstract Polyethylenimine (PEI) has been known as an efficient gene carrier with the highest cationi...
With recent advances in molecular biology and the sequencing of the human genome, nucleic acids are ...
Abstract Polyethylenimine (PEI) has been known as an efficient gene carrier with the highest cationi...
The delivery of genetic material to cells offers the potential to treat many genetic diseases. Catio...
Nucleic acid delivery has many applications in basic science, biotechnology, agriculture, and medici...
Highly efficient gene delivery vehicles are pursued to progress gene therapy. In this study, we deve...
Nucleic acid delivery has many applications in basic science, biotechnology, agriculture, and medici...
Successful gene therapy necessitates safe and efficient gene transfer. This article describes the us...
Successful gene therapy necessitates safe and efficient gene transfer. This article describes the us...
Successful gene therapy necessitates safe and efficient gene transfer. This article describes the us...
The success of gene therapy relies on a safe and effective gene delivery system. In this communicati...
Gene therapy is a modern technology applied by using therapeutic nucleic acids to treat or prevent d...
A novel co-polymer based on 2-hydroxypropyl-α-cyclodextrin cross-linked by low molecular weight poly...
Poly(ethylenimine) (PEI) is a cationic polymer extensively exploited for non-viral gene delivery; ho...
Gene transfection mediated by the cationic polymer polyethylenimine (PEI) is considered a standard m...
Abstract Polyethylenimine (PEI) has been known as an efficient gene carrier with the highest cationi...
With recent advances in molecular biology and the sequencing of the human genome, nucleic acids are ...
Abstract Polyethylenimine (PEI) has been known as an efficient gene carrier with the highest cationi...
The delivery of genetic material to cells offers the potential to treat many genetic diseases. Catio...
Nucleic acid delivery has many applications in basic science, biotechnology, agriculture, and medici...
Highly efficient gene delivery vehicles are pursued to progress gene therapy. In this study, we deve...
Nucleic acid delivery has many applications in basic science, biotechnology, agriculture, and medici...