The chemical signal communication among organelles in the cell is extremely important for life. We demonstrate here the chemical signal communication between two protoorganelles using cascade enzyme reactions in a lipid-based artificial cell. Two protoorganelles inside the artificial cell are large unilamellar vesicles containing glucose oxidase (GOx-LUVs) and a vesicle containing horseradish peroxidase (HRP) and Amplex red, respectively. The glucose molecules outside the artificial cell penetrate the lipid bilayer through mellitin pores and enter into one protoroganelle (GOx-LUV) to produce H2O2, which subsequently is transported to the other protoorganelle to oxidize Amplex red into red resorufin catalyzed by HRP. The number of GOx-LUVs i...
The bottom-up construction of synthetic cells is one of the most intriguing and interesting research...
The development of new synthetic biology frontiers has led to scenarios where the embodied informati...
As the basic unit of life, cells are compartmentalized microreactors with molecularly crowded microe...
Artificial cells capable of both sensing and sending chemical messages to bacteria have yet to be bu...
The recent progresses in bottom-up synthetic biology allow the construction of cell-like systems (sh...
Multicellular organisms rely on intercellular communication to coordinate the behaviour of individua...
Artificial cells capable of both sensing and sending chemical messages to bacteria have yet to be bu...
A gene-directed chemical communication pathway between synthetic protocell signaling transmitters (l...
Recent developments in bottom-up synthetic biology (e.g., lipid vesicle technology integrated with c...
Genetic engineering has been widely used to reprogram cells for a variety of purposes, suggesting a ...
Transmission and amplification of chemical signals across lipid bilayer membranes is of profound sig...
Intercellular communication is a hallmark of living systems. As such, engineering artificial cells t...
Cell membranes coordinate a large variety of biological processes by selectively recognising and res...
A key goal of drug delivery and bottom-up synthetic biology is to construct structures that interact...
The design of systems with life-like properties from simple chemical components may offer insights i...
The bottom-up construction of synthetic cells is one of the most intriguing and interesting research...
The development of new synthetic biology frontiers has led to scenarios where the embodied informati...
As the basic unit of life, cells are compartmentalized microreactors with molecularly crowded microe...
Artificial cells capable of both sensing and sending chemical messages to bacteria have yet to be bu...
The recent progresses in bottom-up synthetic biology allow the construction of cell-like systems (sh...
Multicellular organisms rely on intercellular communication to coordinate the behaviour of individua...
Artificial cells capable of both sensing and sending chemical messages to bacteria have yet to be bu...
A gene-directed chemical communication pathway between synthetic protocell signaling transmitters (l...
Recent developments in bottom-up synthetic biology (e.g., lipid vesicle technology integrated with c...
Genetic engineering has been widely used to reprogram cells for a variety of purposes, suggesting a ...
Transmission and amplification of chemical signals across lipid bilayer membranes is of profound sig...
Intercellular communication is a hallmark of living systems. As such, engineering artificial cells t...
Cell membranes coordinate a large variety of biological processes by selectively recognising and res...
A key goal of drug delivery and bottom-up synthetic biology is to construct structures that interact...
The design of systems with life-like properties from simple chemical components may offer insights i...
The bottom-up construction of synthetic cells is one of the most intriguing and interesting research...
The development of new synthetic biology frontiers has led to scenarios where the embodied informati...
As the basic unit of life, cells are compartmentalized microreactors with molecularly crowded microe...