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Various chassis cells 90+
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Through a highly efficient genome-editing technique, our platform uses a bottom-up strategy to design and rewrite the metabolic regulatory networks of chassis cells. The current biosynthetic pathway of the product and the metabolic pathway of the chassis cells are unified at the material and energy level. By forming the ideal metabolic pathway through the repetitive closed-loop strategy consisting of Design-Build-Test-Learn (DBTL), we can break the boundary between the natural and the unnatural, thus building a new generation of Bio-Foundry.
Chassis cells are the core of green biological manufacturing and the bottleneck for the application of industrial biotechnology. Our cell engineering platform focuses on the development of various chassis cells and uses microorganisms to build high-end chemicals. Carbon neutrality and carbon peaking can be achieved by pushing forward the change of traditional lifestyle to save energy and reduce emissions.
Genome editing is the key tool used during the construction of strains. Our platform has developed a gene delivery and editing system for various chassis cells to perform accurate knock-out and directional insertion on the target gene. We can optimize genetic circuits continuously and accelerate the performance optimization of strains with the help of AI-assisted design and an automated screening platform.
Various chassis cells 90+
High effective genome editing tool - Crisper-Cas9
Intelligent, efficient, and precise AI-assisted design
Automated screening platform, reducing the development cycle by 60%