In this study, we demonstrate the low toxicity and highly efficient and spatially improved transfection of plasmid DNA (pDNA) with liposomal nanobubbles (bubble liposomes [BLs]) using ultrasound (US) irradiation in mice. Naked pDNA with BLs was intraperitoneally injected, followed by US irradiation. The injection volume, the duration of US irradiation, and the dose of BLs were optimized. Both BLs and US irradiation were essential to achieve high transgene expression from naked pDNA. We observed transgene expression in the entire peritoneal tissues, including the peritoneal wall, liver, spleen, stomach and small and large intestines. The area of transfection could be controlled with focused US irradiation. There were few changes in the morph...
Localized gene delivery has many potential clinical applications. However, the nucleic acids (e.g. p...
Congrès sous l’égide de la Société Française de Génie Biologique et Médical (SFGBM).National audienc...
The blood–brain barrier (BBB) is a major obstacle that prevents therapeutic drugs or genes from bein...
In this study, we demonstrate the low toxicity and highly efficient and spatially improved transfect...
In this study, we demonstrate the low toxicity and highly efficient and spatially improved transfect...
Gene transfer into the peritoneal cavity by nonviral methods may provide an effective therapeutic ap...
In the present study, we developed a sonoporation system, namely “direct sonoporation”, for transfec...
In this study, stable nano-sized bubbles (nanobubbles [NBs]) were produced using the mechanical agit...
Gene therapy has great potential for human diseases. Development of efficient delivery systems is cr...
Anionic bubble lipopolyplexes have been developed as anionic ultrasound (US)-responsive gene deliver...
International audienceDespite the increasing number of clinical trials in gene therapy, no ideal met...
We previously developed novel liposomal nanobubbles (Bubble liposomes [BL]) that oscillate and colla...
Koki Ogawa,1,* Yuki Fuchigami,1,* Masayori Hagimori,1 Shintaro Fumoto,2 Yusuke Miura,1 Shigeru Kawak...
This Invention Provides A Method For Delivery Of Agents Such As Genes, Plasmids, And Other Active Dn...
Localized gene delivery has many potential clinical applications. However, the nucleic acids (e.g. p...
Congrès sous l’égide de la Société Française de Génie Biologique et Médical (SFGBM).National audienc...
The blood–brain barrier (BBB) is a major obstacle that prevents therapeutic drugs or genes from bein...
In this study, we demonstrate the low toxicity and highly efficient and spatially improved transfect...
In this study, we demonstrate the low toxicity and highly efficient and spatially improved transfect...
Gene transfer into the peritoneal cavity by nonviral methods may provide an effective therapeutic ap...
In the present study, we developed a sonoporation system, namely “direct sonoporation”, for transfec...
In this study, stable nano-sized bubbles (nanobubbles [NBs]) were produced using the mechanical agit...
Gene therapy has great potential for human diseases. Development of efficient delivery systems is cr...
Anionic bubble lipopolyplexes have been developed as anionic ultrasound (US)-responsive gene deliver...
International audienceDespite the increasing number of clinical trials in gene therapy, no ideal met...
We previously developed novel liposomal nanobubbles (Bubble liposomes [BL]) that oscillate and colla...
Koki Ogawa,1,* Yuki Fuchigami,1,* Masayori Hagimori,1 Shintaro Fumoto,2 Yusuke Miura,1 Shigeru Kawak...
This Invention Provides A Method For Delivery Of Agents Such As Genes, Plasmids, And Other Active Dn...
Localized gene delivery has many potential clinical applications. However, the nucleic acids (e.g. p...
Congrès sous l’égide de la Société Française de Génie Biologique et Médical (SFGBM).National audienc...
The blood–brain barrier (BBB) is a major obstacle that prevents therapeutic drugs or genes from bein...