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| Funder | Biotechnology and Biological Sciences Research Council |
|---|---|
| Recipient Organization | University of Liverpool |
| Country | United Kingdom |
| Start Date | Feb 14, 2022 |
| End Date | Mar 30, 2025 |
| Duration | 1,140 days |
| Number of Grantees | 6 |
| Roles | Co-Investigator; Principal Investigator |
| Data Source | UKRI Gateway to Research |
| Grant ID | BB/W018314/1 |
Advances in science, medicine and living conditions mean that people are living longer. Whilst a longer life brings exciting opportunities, ageing is too often associated with ill health and frailty. The ageing demographic brings with it a steep increase in the public burden of health and social care as well as financial challenges for pension funds.
Across the UK, and globally, there are inequalities in the lived experience of ageing, with social demographics, life course experiences and genetic factors influencing stark disparities between chronological and biological age in different populations.
Our application focusses on the ageing of extracellular matrix (ECM), the main structural component of tissues and organs. The ECM is a three-dimensional network of molecules which not only provides resilience to all tissues in the body, but also controls key biophysical signals to support vital cell functions. The ECM makes up a large fraction of many tissues; for example, in the bone, the ECM is mineralised providing essential strength, whilst in the lung, it provides elasticity necessary for normal function.
The ECM in each organ is very distinct and very dynamic, responding to various external factors such as day/night cycles, highlighting its malleability.
With age, ECM deteriorates through a process influenced by an imbalance between its production and turnover, chemical changes to molecules as well as changes in its relationship with our cells. Importantly, ECM deterioration with age directly influences key functions of cells and tissues in our body leading to abnormal communication between our cells and loss of vital functions, which contributes to many age-related diseases.
Studying ECM ageing across the life course poses particular challenges due to differences between model organisms and humans, the limitations of using standard 2-dimensional culturing of isolated cells and difficulties in accessing healthy human tissues. Fortunately, using approaches in material science and tissue engineering to develop humanised cell models with organ-specific ECM scaffolds has enormous potential for high-throughput mechanistic and drug screening studies to target age-related ECM degradation and combat hallmarks of cellular ageing, thus offering novel, more effective and safer solutions.
We propose a new interdisciplinary ageing network bringing together biologists, chemists, geneticists, ageing scientists, engineers, mathematicians, health and social scientists and clinicians. The network will be led by investigators at the Universities of Liverpool, Glasgow, Manchester, Nottingham and Newcastle but will operate across the whole of UK.
We will engage industry stakeholders and technology providers in the network events and liaise with the public and local charities through to research experts on the external advisory panel. A key focus of the network will be increasing the knowledge of this new interdisciplinary field, facilitating sharing of technologies for rapid discoveries and pioneering new models to study ageing.
Our network will provide informed recommendations for future research to address inequalities influencing ECM ageing.
The network will act to increase capacity and diversity in the field through pump-priming activities, network events and incorporating diversity and inclusivity in network activities. The network will operate via a website interface facilitating member registration and communication. Communications will be supported by newsletters, social media and network events.
More broadly, the network will interface with relevant research societies, related networks, doctoral training partnerships and technician development centres.
Working together, sharing models, technologies, knowledge and expertise, our unique approach will generate paradigm-shifting discoveries with long-term benefits for discovery science, industry and medicine to improve lives of older people.
University of Glasgow; The University of Manchester; Newcastle University; University of Nottingham; University of Liverpool
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