Recent developments in bottom-up synthetic biology (e.g., lipid vesicle technology integrated with cell-free protein expression systems) allow the generation of semi-synthetic minimal cells (in short, synthetic cells, SCs) endowed with some distinctive capacities of natural cells. In particular, such approaches provide technological tools and conceptual frameworks for the design and engineering of programmable SCs capable of communicating with natural cells by exchanging chemical signals. Here we describe the generation of giant vesicle-based SCs which, via gene expression, synthesize in their aqueous lumen an enzyme that in turn produces a chemical signal. The latter is a small molecule, which is passively released in the medium and then p...
The bottom-up branch of synthetic biology includes-among others-innovative studies that combine cell...
The bottom-up branch of synthetic biology includes—among others—innovative studies that combine cell...
The components of natural quorum-sensing (QS) systems can be used to engineer synthetic communicatio...
Recent developments in bottom-up synthetic biology (e.g., lipid vesicle technology integrated with c...
Artificial cells capable of both sensing and sending chemical messages to bacteria have yet to be bu...
Artificial cells capable of both sensing and sending chemical messages to bacteria have yet to be bu...
""\\"\\\\\\"The bottom-up construction of synthetic cells is one of the most intriguing and interest...
Biological systems evolved with the ability to communicate with their biotic surroundings through ch...
The development of new synthetic biology frontiers has led to scenarios where the embodied informati...
The recent advancements in semi-synthetic minimal cell (SSMC) technology paves the way to several in...
Intercellular communication is a hallmark of living systems. As such, engineering artificial cells t...
The recent progresses in bottom-up synthetic biology allow the construction of cell-like systems (sh...
The bottom-up construction of synthetic cells is one of the most intriguing and interesting research...
The design of systems with life-like properties from simple chemical components may offer insights i...
Previous attempts to control cellular behavior were mainly based on genetic engineering. While usefu...
The bottom-up branch of synthetic biology includes-among others-innovative studies that combine cell...
The bottom-up branch of synthetic biology includes—among others—innovative studies that combine cell...
The components of natural quorum-sensing (QS) systems can be used to engineer synthetic communicatio...
Recent developments in bottom-up synthetic biology (e.g., lipid vesicle technology integrated with c...
Artificial cells capable of both sensing and sending chemical messages to bacteria have yet to be bu...
Artificial cells capable of both sensing and sending chemical messages to bacteria have yet to be bu...
""\\"\\\\\\"The bottom-up construction of synthetic cells is one of the most intriguing and interest...
Biological systems evolved with the ability to communicate with their biotic surroundings through ch...
The development of new synthetic biology frontiers has led to scenarios where the embodied informati...
The recent advancements in semi-synthetic minimal cell (SSMC) technology paves the way to several in...
Intercellular communication is a hallmark of living systems. As such, engineering artificial cells t...
The recent progresses in bottom-up synthetic biology allow the construction of cell-like systems (sh...
The bottom-up construction of synthetic cells is one of the most intriguing and interesting research...
The design of systems with life-like properties from simple chemical components may offer insights i...
Previous attempts to control cellular behavior were mainly based on genetic engineering. While usefu...
The bottom-up branch of synthetic biology includes-among others-innovative studies that combine cell...
The bottom-up branch of synthetic biology includes—among others—innovative studies that combine cell...
The components of natural quorum-sensing (QS) systems can be used to engineer synthetic communicatio...