How We can revolutionized our research by SGI-DNA
Codex, former SGI-DNA, Inc. introduces the world’s first DNA printer, a fully automated system that allows every scientist to rapidly synthesize high-quality DNA Libraries, Tiles and Clones hands-free starting with electronically transmitted sequence data. The BioXptm 3200 System dramatically improves workflow productivity for a variety of applications such as protein production, antibody library generation and cell engineering giving you full control over your genomic discoveries.
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Why scientists are making the switch to BioXptm automation
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Obtain High-Quality DNA Overnight
The BioXp™ 3200 System’s versatile design supports multiple genomic applications transforming scientists’ ability to design genes to answer key questions in their role in gene function, control and optimization on the laboratory benchtop.
Generating high-quality DNA has never been easier. In a matter of hours and with a simple click of a button, scientists can now program and automate DNA synthesis in their own labs while gaining full control over their project timelines. DNA fragments of 400 bp to 1.8 kb can be assembled and cloned into any custom vector using Gibson Assembly technology.
Streamline Clinical Research
The BioXp™ 3200 System revolutionizing capabilities streamlines clinical research discoveries, decreasing turnaround time by up to 80% while reducing tedious manual laboratory labor and reagent cost. Scientists no longer need a template to obtain their gene of interest; the gene is designed with sequence modifications to address specific clinical research and then built in silico.
Second product: The Gibson Assembly® Method Overview
The Gibson Assembly method is an efficient and robust cloning procedure that allows the seamless joining of two or more fragments without the need for restriction enzyme digestion or compatible restriction sites. Through a series of enzymatic steps, overlapping regions are created, annealed, and ligated over the course of an hour, resulting in a final covalently-joined, double-stranded DNA construct.
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