Active Materials & Manufacturing Chemistry

Future Biomanufacturing Research Hub

In plain English

AI plain-English summary

The UK’s manufacturing sector currently depends on petrochemicals, consuming vast energy and generating toxic waste—this hub aims to replace those processes with biological ones. Industrial biotechnology uses living cells or enzymes to make products, from medicines to plastics. The problem is that most manufacturing still relies on fossil fuels, which drive climate change and pollution. The Future Biomanufacturing Research Hub (FBRH) will accelerate the shift to a bioeconomy by developing scalable, cost-effective bioprocesses that can compete with traditional chemical manufacturing. It brings together seven leading UK research centres and industry partners to tackle the entire production pipeline—from discovering new biocatalysts to running continuous, automated manufacturing lines. If successful, the FBRH could make everyday goods—pharmaceuticals, chemicals, engineering materials—cheaper, cleaner, and less dependent on oil. This would reduce carbon emissions, cut toxic waste streams, and conserve scarce resources. The hub explicitly targets the UK’s Clean Growth strategy, aiming to secure economic advantage while lowering environmental harm. The work is applied, not fundamental science: it focuses on deploying existing biological tools at industrial scale, using AI and automation to make biomanufacturing predictable and robust.

View original technical description
Industrial Biotechnology (IB) is entering a golden age of opportunity. Technological and scientific advances in biotechnology have revolutionised our ability to synthesise molecules of choice, giving access to novel chemistries that enable tuneable selectivity and the use of benign reaction conditions. These developments can now be coupled to advances in the industrialisation of biology to generate innovative manufacturing routes, supported by high throughput and real-time analytics, process automation, artificial intelligence and data-driven science. The current excess energy demands of manufacturing and its use of expensive and resource intensive materials can no longer be tolerated. Impacts on climate change (carbon emissions), societal health (toxic waste streams, pollution) and the environment (depletion of precious resources, waste accumulation) are well documented and unsustainable. What is clear is that a petrochemical-dependent economy cannot support the rate at which we consume goods and the demand we place on cheap and easily accessible materials. The emergent bioeconomy, which fosters resource efficiency and reduced reliance on fossil resources, promises to free society from many of the shortcomings of current manufacturing practices. By harnessing the power of biology through innovative IB, the FBRH will support the development of safer, cleaner and greener manufacturing supply chains. This is at the core of the UKs Clean Growth strategy. The EPSRC Future Biomanufacturing Research Hub (FBRH) will deliver biomanufacturing processes to support the rapid emergence of the bioeconomy and to place the UK at the forefront of global economic Clean Growth in key manufacturing sectors - pharmaceuticals; value-added chemicals; engineering materials. The FBRH will be a biomanufacturing accelerator, coordinating UK academic, HVM catapult, and industrial capabilities to enable the complete biomanufacturing innovation pipeline to deliver economic, robust and scalable bioprocesses to meet societal and commercial demand. The FBRH has developed a clear strategy to achieve this vision. This strategy addresses the need to change the economic reality of biomanufacturing by addressing the entire manufacturing lifecycle, by considering aspects such as scale-up, process intensification, continuous manufacturing, integrated and whole-process modelling. The FBRH will address the urgent need to quickly deliver new biocatalysts, robust industrial hosts and novel production technologies that will enable rapid transition from proof-of-concept to manufacturing at scale. The emphasis is on predictable deployment of sustainable and innovative biomanufacturing technologies through integrated technology development at all scales of production, harnessing UK-wide world-leading research expertise and frontier science and technology, including data-driven AI approaches, automation and new technologies emerging from the 'engineering of biology'. The FBRH will have its Hub at the Manchester Institute of Biotechnology at The University of Manchester, with Spokes at the Innovation and Knowledge Centre for Synthetic Biology (Imperial College London), Advanced Centre for Biochemical Engineering (University College London), the Bioprocess, Environmental and Chemical Technologies Group (Nottingham University), the UK Catalysis Hub (Harwell), the Industrial Biotechnology Innovation Centre (Glasgow) and the Centre for Process Innovation (Wilton). This collaborative approach of linking the UK's leading IB centres that hold complementary expertise together with industry will establish an internationally unique asset for UK manufacturing.

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Researchers

Alex Conradie (Co-Investigator)Anthony Green (Principal Investigator)Constantinos Theodoropoulos (Co-Investigator)Daniela Delneri (Co-Investigator)Eriko Takano (Co-Investigator)Gary Lye (Co-Investigator)Ian Archer (Co-Investigator)James Winterburn (Co-Investigator)Kirk Malone (Co-Investigator)Nicholas Turner (Co-Investigator)Nicolas Szita (Co-Investigator)Nigel Scrutton (Principal Investigator)Paul Freemont (Co-Investigator)Perdita Barran (Co-Investigator)Philip Shapira (Co-Investigator)Richard Kitney (Co-Investigator)Rosalind LeFeuvre (Co-Investigator)

Related Research

Grants with similar aims, by meaning.

Future Continuous Manufacturing and Advanced Crystallisation Research Hub
Integrating Continuous Technologies Rapid Delivery of Cost Effective Biotherapeutics to Patients
Integrated bioreactor platform for rapid scale-up and translation
Industrial Biotechnology Innovation Cluster
The Carbon-Loop Sustainable Biomanufacturing Hub

Original classification

Research Grant

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