Agile Biofoundry

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The Agile BioFoundry (ABF) is a U.S. National Lab-led consortium funded by the Department of Energy that aims to advance biomanufacturing. Our goal is to develop biomanufacturing tools, processes, and partnerships that enable sustainable industrial production of renewable fuels and chemicals for the nation. ABF consortium members include Argonne National Laboratory, Lawrence Berkeley National Laboratory, Los Alamos National Laboratory, the National Renewable Energy Laboratory, Oak Ridge National Laboratory, Pacific Northwest National Laboratory, and Sandia National Laboratories. ABF has more than 30 university and industry partners.

Company Details

Employees
14
Address
5885 Hollis St, Emeryville,california 94608,united States
Industry
Biotechnology Research
NAICS
Research and Development in Biotechnology (except Nanobiotechnology)
HQ
Emeryville, California
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News

Editorial: Multi-Omics Technologies for Optimizing Synthetic Biomanufacturing - Frontiers

Editorial: Multi-Omics Technologies for Optimizing Synthetic Biomanufacturing Frontiers

Department of Energy's Agile BioFoundry and ABPDU Partner with Industrial Microbes to Successfully Scale Up Bio-Based Process - Department of Energy (.gov)

Department of Energy's Agile BioFoundry and ABPDU Partner with Industrial Microbes to Successfully Scale Up Bio-Based Process Department of Energy (.gov)

Abstraction hierarchy to define biofoundry workflows and operations for interoperable synthetic biology research and applications - Nature

Abstraction hierarchy to define biofoundry workflows and operations for interoperable synthetic biology research and applications Nature

Engineering transcriptional regulation of pentose metabolism in Rhodosporidium toruloides for improved conversion of xylose to bioproducts - Microbial Cell Factories

Engineering transcriptional regulation of pentose metabolism in Rhodosporidium toruloides for improved conversion of xylose to bioproducts Microbial Cell Factories

Opportunities at the Intersection of Synthetic Biology, Machine Learning, and Automation - ACS Publications

Opportunities at the Intersection of Synthetic Biology, Machine Learning, and Automation ACS Publications

Multiomics Data Collection, Visualization, and Utilization for Guiding Metabolic Engineering - Frontiers

Multiomics Data Collection, Visualization, and Utilization for Guiding Metabolic Engineering Frontiers

DOE’s Agile BioFoundry Selects Three Projects in Partnership with MSI STEM Research & Development Consortium - Department of Energy (.gov)

DOE’s Agile BioFoundry Selects Three Projects in Partnership with MSI STEM Research & Development Consortium Department of Energy (.gov)

Enabling malic acid production from corn-stover hydrolysate in Lipomyces starkeyi via metabolic engineering and bioprocess optimization - Microbial Cell Factories

Enabling malic acid production from corn-stover hydrolysate in Lipomyces starkeyi via metabolic engineering and bioprocess optimization Microbial Cell Factories

A machine learning Automated Recommendation Tool for synthetic biology - Nature

A machine learning Automated Recommendation Tool for synthetic biology Nature

Lighting the Way to Bioproducts: Smart Microbial Biosensors for Conversion Pathway Design - Department of Energy (.gov)

Lighting the Way to Bioproducts: Smart Microbial Biosensors for Conversion Pathway Design Department of Energy (.gov)

Building a global alliance of biofoundries - Nature

Building a global alliance of biofoundries Nature

Evaluation of engineered low-lignin poplar for conversion into advanced bioproducts - Biotechnology for Biofuels and Bioproducts

Evaluation of engineered low-lignin poplar for conversion into advanced bioproducts Biotechnology for Biofuels and Bioproducts

Integration of Proteomics and Metabolomics Into the Design, Build, Test, Learn Cycle to Improve 3-Hydroxypropionic Acid Production in Aspergillus pseudoterreus - Frontiers

Integration of Proteomics and Metabolomics Into the Design, Build, Test, Learn Cycle to Improve 3-Hydroxypropionic Acid Production in Aspergillus pseudoterreus Frontiers

Fluorescent amplification for next generation sequencing (FA-NGS) library preparation - BMC Genomics

Fluorescent amplification for next generation sequencing (FA-NGS) library preparation BMC Genomics

Multi-Omics Driven Metabolic Network Reconstruction and Analysis of Lignocellulosic Carbon Utilization in Rhodosporidium toruloides - Frontiers

Multi-Omics Driven Metabolic Network Reconstruction and Analysis of Lignocellulosic Carbon Utilization in Rhodosporidium toruloides Frontiers

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