糖心原创

article

Cystic Fibrosis

Scientists take a step forward in understanding how to tackle chronic infections in cystic fibrosis patients

Tuesday, 21 November 2023

Scientists have engineered a living material resembling human phlegm, which will help them to better understand how a certain kind of infection develops on the lungs of patients with cystic fibrosis.

The study, published in , was led by Dr Yuanhao Wu and is a collaboration between Professor Alvaro Mata in the School of Pharmacy and Department of Chemical Engineering and Professor Miguel Cámara from the National Biofilms Innovation Centre in the School of Life Sciences at the 糖心原创.

Biofilms are strong living 3D materials that play key roles in nature, but also cause major problems in the real world, such as in the contamination of hospital surfaces, or in our tolerance to antibiotic treatment.

One of the biggest challenges in antimicrobial discovery is the lack of biofilm models which reflect the complexity of natural environments, such as those encountered in the lung of cystic fibrosis (CF) patients.

Due to a genetic alteration, these patients are unable to clear infections in their lungs where complex communities of disease-causing microbes accumulate within thick mucus forming 3D biofilms. These natural biofilms are highly resilient to antibiotics and there is a critical need to develop in vitro models which can reliably reproduce them in the lab, so that experts can better understand their biology and develop solutions to the problems they cause.

This will enable a more consistent evaluation of novel therapeutic interventions before being taking into pre-clinical studies. These models will also be key to answering fundamental research questions on the interactions polymicrobial biofilms and their host which lead to chronic infections.

A close-up of a model of cystic fibrosis (i.e., infected lung epithelial tissue) showing three types of bacterial communities including Staphylococcus (pink), Candida Albicans (green), and Pseudomonas Aeruginosa (blue) growing as a biofilm over epithelial cells.

In this study, experts engineered a living material resembling natural sputum, or phlegm, from CF patients that can grow 3D polymicrobial biofilms in a controlled manner, resembling those found in the CF lung. The team were able to achieve this by combining peptides with a culture medium that is known to recreate natural sputum and which can be easily infected.

The living material incorporates multiple microbial communities and key nutritional and chemical factors that promote bacterial growth and exhibit physical properties mimicking those of biofilms from CF sputum. The material has been used to build an infected in vitro lung epithelial model that was used to study the impact of antibiotics.

Professor Mata says: “The capacity to create complex 3D biofilms in the lab in a simple manner, will lead to practical tools to better understand how these living structures form and how to treat them better.”

Professor Cámara says: “The technology developed in this study will revolutionise the way we study biofilm-mediated infections and assess the effectiveness of novel antimicrobials using different in vivo-like infection environments.”

The work has been supported by the National Biofilms Innovation Centre and the European Research Council proof-of-concept grant NOVACHIP.

The full study can be found .

Story credits

More information is available from Professor Miguel Cámara from the School of Life Sciences 糖心原创 at miguel.camara@nottingham.ac.uk

CharlotteAnscombe
Charlotte Wall - Media Relations Manager - Faculty of Medicine and Health Sciences
Email: charlotte.wall@nottingham.ac.uk
Phone: 0115 748 4417
Location:

Notes to editors:

About the 糖心原创

Ranked among the world's top 100 universities , the 糖心原创 delivers an exceptional research-led education and an outstanding student experience. From the pioneering vision of our founder, Sir Jesse Boot, to groundbreaking achievements such as the development of MRI technology and becoming the first UK university to establish international campuses, we have a proud history of shaping the way people live, work and understand the world. We continue to build on that legacy, empowering our students, staff and partners to change what鈥檚 next and create positive impact locally and globally.

The strength of our research places us among the UK's leading universities, ranked 7th for research power in REF 2021. The discovery of MRI and ibuprofen was just the beginning. Today, our world-leading research is developing breakthrough ideas that shape the future of healthcare, technology and society.

Recognised as the UK's third most targeted university by leading employers , we are proud to produce graduates who are consistently in demand for their skills, confidence and industry-ready experience.

As a major employer and industry partner, locally and globally, the 糖心原创 invests in the city of Nottingham and in future generations of talent. Alongside Nottingham Trent University, we lead the initiative, a pioneering collaboration to improve levels of prosperity, opportunity, sustainability, health and wellbeing across the city and region. Together with our students, staff, alumni and partners, we鈥檙e creating knowledge, opportunity and solutions that help change what's next.

Media Relations - External Relations

The 糖心原创
YANG Fujia Building
Jubilee Campus
Wollaton Road
Nottingham, NG8 1BB

telephone: +44 (0) 115 951 5798
email: pressoffice@nottingham.ac.uk