AbstractA high-throughput cell-free protein synthesis method has been described. The methodology is based on a bilayer diffusion system that enables the continuous supply of substrates, together with the continuous removal of small byproducts, through a phase between the translation mixture and substrate mixture. With the use of a multititer plate the system was functional for a prolonged time, and as a consequence yielded more than 10 times that of the similar batch-mode reaction. Combining this method with a wheat germ cell-free translation system developed by us, the system could produce a large amount of protein sufficient for carrying out functional analyses. This novel bilayer-based cell-free protein synthesis system with its simplici...
In this study, we present a novel technique for the synthesis of complex prokaryotic and eukaryotic ...
The technology provided herein relates to novel methods and systems for cell-free protein synthesis,...
In this study, we present a novel technique for the synthesis of complex prokaryotic and eukaryotic ...
AbstractA high-throughput cell-free protein synthesis method has been described. The methodology is ...
Cell-free protein expression promises to narrow the technological gap between DNA and protein techno...
Cell-free protein synthesis (CFPS) has become an established tool for rapid protein synthesis in ord...
We present a technology for the production of target proteins using novel cell-free systems derived ...
The idea that in vitro protein synthesis should be performed under conditions of continuous inflow o...
Cell-free protein synthesis systems have become an attractive alternative to cell-based methods for ...
Cell-free protein synthesis (CFPS) systems are important laboratory tools that are used for various ...
We present an alternative production platform for the synthesis of complex proteins. Apart from conv...
Advances in metabolic engineering and synthetic biology have facilitated the manufacturing of many v...
As a fast and reliable technology with applications in diverse biological studies, cell-free protein...
Abstract Cell-free protein synthesis (CFPS) systems have become an ideal choice for pathway prototyp...
The field of mammalian synthetic biology is expanding quickly, and technologies for engineering larg...
In this study, we present a novel technique for the synthesis of complex prokaryotic and eukaryotic ...
The technology provided herein relates to novel methods and systems for cell-free protein synthesis,...
In this study, we present a novel technique for the synthesis of complex prokaryotic and eukaryotic ...
AbstractA high-throughput cell-free protein synthesis method has been described. The methodology is ...
Cell-free protein expression promises to narrow the technological gap between DNA and protein techno...
Cell-free protein synthesis (CFPS) has become an established tool for rapid protein synthesis in ord...
We present a technology for the production of target proteins using novel cell-free systems derived ...
The idea that in vitro protein synthesis should be performed under conditions of continuous inflow o...
Cell-free protein synthesis systems have become an attractive alternative to cell-based methods for ...
Cell-free protein synthesis (CFPS) systems are important laboratory tools that are used for various ...
We present an alternative production platform for the synthesis of complex proteins. Apart from conv...
Advances in metabolic engineering and synthetic biology have facilitated the manufacturing of many v...
As a fast and reliable technology with applications in diverse biological studies, cell-free protein...
Abstract Cell-free protein synthesis (CFPS) systems have become an ideal choice for pathway prototyp...
The field of mammalian synthetic biology is expanding quickly, and technologies for engineering larg...
In this study, we present a novel technique for the synthesis of complex prokaryotic and eukaryotic ...
The technology provided herein relates to novel methods and systems for cell-free protein synthesis,...
In this study, we present a novel technique for the synthesis of complex prokaryotic and eukaryotic ...