Synthetic nanocarriers are a promising therapeutic delivery strategy. However, these systems are often hampered by inherent disadvantages such as strong biotoxicity and poor biocompatibility. To overcome these issues, biological carriers with commonly used chemotherapy drugs have been developed. In this work, engineered bacterial ghosts (BGs) originated from probiotic Escherichia coli Nissle 1917 (EcN) were devised to specifically target acidic extracellular environments of tumor tissue. To improve the production efficiency and safety, a novel lysis protein E from phage α3 was applied to produce EcN BGs under high growth densities in high quality. In addition, the acidity-triggered rational membrane (ATRAM) peptides were displayed in EcN BG...
Cancer, especially the solid tumor sub-set, poses considerable challenges to modern medicine owing t...
To effectively treat cancer, therapeutics must target tumor tissue and be minimally toxic to healthy...
Abstract Synthetic biology enables the engineering of bacteria to safely deliver potent payloads to ...
Microbiome research in the past decade has revealed an astounding prevalence of bacteria in various ...
Bacterial ghosts (BGs) are empty cell envelopes of nonliving evacuated bacterial cells. They are fre...
Summary Bacterial vectors can be engineered to generate microscopic living therapeutics to produce a...
To target chronic inflammatory ocular surface diseases, a drug delivery platform is needed that is s...
The first reports of bacteria as a cancer therapy date back to the pioneering work of Dr. William Co...
The components and hospitable properties of tumor microenvironment (TME) are associated with tumor p...
Current cancer therapies have limited efficacy because they are highly toxic, ineffectively target t...
The aim of this work is to engineer a bacteriophage-based platform to specifically target, invade an...
Summary: Delivery of cancer therapeutics to non-specific sites decreases treatment efficacy while in...
Failure in enhancing antigen immunogenicity has limited the development of cancer vaccine. Inspired ...
Engineered Salmonella possess unique capabilities that make them ideal drug delivery vectors for tum...
Despite recent preclinical progress with oncolytic bacteria in cancer therapy, dose-limiting toxicit...
Cancer, especially the solid tumor sub-set, poses considerable challenges to modern medicine owing t...
To effectively treat cancer, therapeutics must target tumor tissue and be minimally toxic to healthy...
Abstract Synthetic biology enables the engineering of bacteria to safely deliver potent payloads to ...
Microbiome research in the past decade has revealed an astounding prevalence of bacteria in various ...
Bacterial ghosts (BGs) are empty cell envelopes of nonliving evacuated bacterial cells. They are fre...
Summary Bacterial vectors can be engineered to generate microscopic living therapeutics to produce a...
To target chronic inflammatory ocular surface diseases, a drug delivery platform is needed that is s...
The first reports of bacteria as a cancer therapy date back to the pioneering work of Dr. William Co...
The components and hospitable properties of tumor microenvironment (TME) are associated with tumor p...
Current cancer therapies have limited efficacy because they are highly toxic, ineffectively target t...
The aim of this work is to engineer a bacteriophage-based platform to specifically target, invade an...
Summary: Delivery of cancer therapeutics to non-specific sites decreases treatment efficacy while in...
Failure in enhancing antigen immunogenicity has limited the development of cancer vaccine. Inspired ...
Engineered Salmonella possess unique capabilities that make them ideal drug delivery vectors for tum...
Despite recent preclinical progress with oncolytic bacteria in cancer therapy, dose-limiting toxicit...
Cancer, especially the solid tumor sub-set, poses considerable challenges to modern medicine owing t...
To effectively treat cancer, therapeutics must target tumor tissue and be minimally toxic to healthy...
Abstract Synthetic biology enables the engineering of bacteria to safely deliver potent payloads to ...