Active Food & Agriculture Plants, Animals & Ecology

National Biofilms Innovation Centre

In plain English

AI plain-English summary

Ninety-six percent of all microbes on Earth live not as free-floating cells but in slimy, cooperative communities called biofilms, and the UK is building a national centre to control them. These biofilms are everywhere—on medical implants, in water pipes, on ship hulls, and inside the human body. They cause most hospital-acquired infections and many chronic diseases. But they also underpin industries from food production to oil extraction. The global economic impact of biofilms is estimated at roughly $3,900 billion annually, with about £45 billion at stake in the UK alone. The problem is that no single method exists to reliably detect, prevent, or manage them. The National Biofilms Innovation Centre (NBIC) brings together biologists, engineers, mathematicians, clinicians, and industrialists to develop standardised tools and technologies. The centre aims to design surfaces that resist biofilm formation, create detection methods for problematic biofilms, establish safe management protocols when eradication is impossible, and engineer beneficial biofilms for energy and agriculture. As climate change alters the biofilm communities that underpin food and water security, and as infrastructure shifts toward NetZero, new biofilm challenges will emerge. NBIC’s goal is to place the UK at the forefront of solving them.

View original technical description
Microbial biofilms and communities represent, collectively, the largest biomass on the planet, with an estimated 96% of microbes on Earth found in microbial biofilms and communities rather than in a free-swimming form. Biofilms play major roles in the biology of the natural and built environments, and in maintaining public health. They are one of the biggest causes of hospital-acquired infections and can cause chronic disease. In addition to their well-recognised role in infection and disease, they can underpin or disrupt a wide range of industrial sectors: from food and drink to oil and gas, and from the marine industries to the built environment. The annual economic significance and impact of biofilms has been estimated at ~$3,900 bn globally (approx. £45 bn in the UK). The National Biofilms Innovation Centre (NBIC) is a pan-UK Innovation and Knowledge Centre established to connect the expertise of the UK's academic community with end users in industry and the third sector. By bringing together the UK's strength in biofilm research, and combining it with the expertise of industrialists, NBIC aims to deliver new solutions and breakthrough technologies that will have an impact on day-to-day lives. During Phase 2, as NBIC matures, we will harness the large academic and industry user base brought together over the last 4 years to focus on the development of new technologies for the prevention, detection, management and engineering of biofilm communities. We will draw on the best of our scientists and engineers to determine how best to safely design surfaces that prevent biofilms, establish methods to determine whether a problematic biofilm is present, create protocols for managing biofilms safely when they cannot be eradicated, and determine how to engineer biofilms for maximum benefit. We will do this by establishing ways of measuring biofilms that can be widely shared with the community, using advanced techniques and computational tools at our disposal. By leveraging our national connectivity, we will also establish uniform standards that can be used to guide the regulatory environment around biofilm control and exploitation. As the predominant biomass on the planet, biofilms are susceptible to the changing environment driven by global warming, and will play an important role in new sources of energy generation. As climate change progresses, biofilm communities that are important to food and water security will also change, in ways that it is difficult to predict. As our infrastructure changes to adapt to a NetZero world, new biofilm challenges will inevitably arise. By harnessing the strengths of our disparate community, comprising biological and physical scientists, engineers, mathematicians, social scientists, clinicians, industrialists and entrepreneurs and by training the next generation of scientists who can address complex biofilm research questions, we will place the UK at the forefront of the effort to mitigate these global challenges, leading to a sustainable and prosperous UK.

View the original record at the funder ↗

Researchers

Cait MacPhee (Co-Investigator)Jeremy Webb (Principal Investigator)Kim Hardie (Co-Investigator)Miguel Camara (Co-Investigator)Rasmita Raval (Co-Investigator)

Related Research

Grants with similar aims, by meaning.

Biofilm Alliance: A Network for Regulatory Sciences, Academic Research, and Industry Collaboration - Implementation Phase
Unravelling mechanisms underpinning adaptation in Bacillus subtilis biofilms
National Biofilms Innovation Centre - FTMA
Biofilm Alliance: A Network for Regulatory Sciences, Academic Research, and Industry Collaboration
Building microbial cities: engineering mucosal biofilm nurseries for Antimicrobial Resistant (AMR) research

Original classification

Research Grant

Plain English summaries and category classifications on this site are generated by AI and may not perfectly reflect the original research.