Live attenuated bacteria are of increasing importance in biotechnology and medicine in the emerging field of cancer immunotherapy. Oral DNA vaccination mediated by live attenuated bacteria often suffers from low infection efficiency due to various biological barriers during the infection process. To this end, we herein report, for the first time, a new strategy to engineer cationic nanoparticle-coated bacterial vectors that can efficiently deliver oral DNA vaccine for efficacious cancer immunotherapy. By coating live attenuated bacteria with synthetic nanoparticles self-assembled from cationic polymers and plasmid DNA, the protective nanoparticle coating layer is able to facilitate bacteria to effectively escape phagosomes, significantly en...
Genetically attenuated microorganisms, pathogens, and some commensal bacteria can be engineered to d...
The first reports of bacteria as a cancer therapy date back to the pioneering work of Dr. William Co...
Advancement in the understanding of tumor immunology has led to the development of novel therapies t...
Nanoparticle-formulated DNA vaccines hold promise for the design of in vivo vaccination platforms th...
Drug delivery is a rapidly growing area of research motivated by the nanotechnology revolution, the ...
DNA vaccination has emerged as a promising alternative to traditional protein-based vaccines for the...
Cell membrane coating technology is a technique that strips plasma membrane from intact cells and fa...
A major biotechnological revolution of the last two decades has resulted in the novel application of...
Synthetic nanoparticles coated with cellular membranes have been increasingly explored to harness na...
A major biotechnological revolution of the last two decades has resulted in the novel application of...
Developing nanomaterials that are effective, safe, and selective for gene transfer applications is c...
Nanoparticles have demonstrated unique advantages in enhancing immunotherapy potency and have drawn ...
Failure in enhancing antigen immunogenicity has limited the development of cancer vaccine. Inspired ...
While traditional approaches for disease management in the era of modern medicine have saved countle...
Through introduction of antigenic materials into hosts, vaccines can elicit adaptive immunity which ...
Genetically attenuated microorganisms, pathogens, and some commensal bacteria can be engineered to d...
The first reports of bacteria as a cancer therapy date back to the pioneering work of Dr. William Co...
Advancement in the understanding of tumor immunology has led to the development of novel therapies t...
Nanoparticle-formulated DNA vaccines hold promise for the design of in vivo vaccination platforms th...
Drug delivery is a rapidly growing area of research motivated by the nanotechnology revolution, the ...
DNA vaccination has emerged as a promising alternative to traditional protein-based vaccines for the...
Cell membrane coating technology is a technique that strips plasma membrane from intact cells and fa...
A major biotechnological revolution of the last two decades has resulted in the novel application of...
Synthetic nanoparticles coated with cellular membranes have been increasingly explored to harness na...
A major biotechnological revolution of the last two decades has resulted in the novel application of...
Developing nanomaterials that are effective, safe, and selective for gene transfer applications is c...
Nanoparticles have demonstrated unique advantages in enhancing immunotherapy potency and have drawn ...
Failure in enhancing antigen immunogenicity has limited the development of cancer vaccine. Inspired ...
While traditional approaches for disease management in the era of modern medicine have saved countle...
Through introduction of antigenic materials into hosts, vaccines can elicit adaptive immunity which ...
Genetically attenuated microorganisms, pathogens, and some commensal bacteria can be engineered to d...
The first reports of bacteria as a cancer therapy date back to the pioneering work of Dr. William Co...
Advancement in the understanding of tumor immunology has led to the development of novel therapies t...