Accelerating Synthetic Biology Innovation

UwU7 Biofoundries pioneers rapid custom genetic engineering through an automated DBTL platform. Combining machine learning with microfluidic robotics, we transform microorganism development from years to weeks. Partner with us to revolutionize your bioengineering projects.

Our Services

3D printer

Automated DBTL Infrastructure

Leverage end-to-end design-build-test-learn pipelines featuring robotic microfluidics and AI-driven genome modeling.

Scientist examines the result of a plaque assay, which is a test that allows scientists to count how many flu virus particles (virions) are in a mixture. To perform the test, scientists must first grow host cells that attach to the bottom of the plate, and then add viruses to each well so that the attached cells may be infected. After staining the uninfected cells purple, the scientist can count the clear spots on the plate, each representing a single virus particle.

Industrial Cellular Chassis Development

Engineer robust and scalable cellular chassis tailored for industrial biotechnology applications and mass production.

Laboratory. Tube (vial) with body material being transported on a track to analyzer in large Dutch lab.

High-Throughput Strain Optimization

Utilize automated screening and machine learning to rapidly enhance microbial strains for improved performance and yield.

Engineering life, accelerating futures with precision and innovation.

Discover the power of synthetic biology today!