Skip to main content

The wrong place at the wrong time: Immune cell-derived serine proteases as drivers of osteoarthritis

Funding
Funded
Study mode
Full-time
Duration
3 Years
Start date
Subject area
Biological and Biomedical Sciences
Change country or region

We’re currently showing entry requirements and other information for applicants with qualifications from United Kingdom.

Please select from our list of commonly chosen countries below or choose your own.

If your country or region isn’t listed here, please contact us with any questions about studying with us.

Overview

This project combines cutting-edge with established methods including activity-based probes, protein biology, ex vivo explant culture, ‘omic data analysis and in vivo models to reveal how serine proteases activate destructive MMP pathways. You’ll gain multidisciplinary skills across biochemistry, imaging and translational science seeking to tackle a major unmet clinical challenge and helping to identify new therapeutic targets to protect joints from destruction in arthritis.

About this opportunity

Osteoarthritis (OA) is a progressive, debilitating joint disease in which excessive proteolytic activity drives irreversible cartilage breakdown. While matrix metalloproteinases (MMPs) are key mediators of this process, the upstream mechanisms controlling their activation remain poorly understood. Emerging evidence suggests that serine proteinases act as critical physiological activators of pro-MMPs (Wilkinson et al., 2019).

Although defined by cartilage degradation, OA is a disease of the whole joint, with the inflamed synovium playing a central role in shaping the joint microenvironment. Serine proteinases released by infiltrating and resident immune cells may initiate or amplify MMP activation. We have recently demonstrated such a role for neutrophil elastase (Wilkinson et al., 2022), but other immune cell types (e.g. macrophages, mast cells) are also likely contributors, and their roles remain largely unexplored.

This exciting three-year PhD project will uncover how immune cell–derived serine proteinases drive MMP activation and cartilage destruction in OA. The project integrates human tissue analysis, state-of-the-art activity-based probes, and in vivo models to define protease activity throughout the disease course.

Aim 1: Characterise immune cell–derived serine proteinases in OA synovium using immunohistochemistry and single-cell RNA sequencing datasets (e.g. Huang et al., 2022).

Aim 2: Define how these proteinases activate proMMPs and drive cartilage destruction using biochemical assays, mass spectrometry and human cartilage explant models (Wilkinson et al., 2017a,b).

Aim 3: Visualise immune protease activity in vivo using novel activity-based probes in experimental OA models (Wilkinson et al., 2026).

This project will deliver new insight into immune-driven protease networks in OA and identify novel therapeutic targets to slow or prevent cartilage degradation.

Based at the University of Liverpool under the supervision of Dr David Wilkinson. You will join an inclusive, supportive and engaging research environment, gaining a broad, multidisciplinary skillset spanning protein biochemistry, imaging, and translational musculoskeletal research. This project is well-suited to an ambitious bioscience or clinical graduate with an interest in early target discovery research.

Further reading

  • Wilkinson DJ, et al. 2019; The role of serine proteinases in cartilage extracellular matrix turnover: Implications for therapeutics. Br J Pharmacology ;176(1):38-5. *(Corresponding Author)
  • Wilkinson DJ, et al. 2022; Matrix metalloproteinase-13 is fully activated by neutrophil elastase, and inactivates its serpin inhibitor, alpha-1 antitrypsin: Implications for osteoarthritis. FEBS J. 2022 Jan;289(1):121-139.*
  • Huang ZY, et al., 2022. Single cell transcriptomics in human osteoarthritis synovium and in silico deconvoluted bulk RNA sequencing. Osteoarthritis Cartilage. 2022 Mar;30(3):475-480.
  • Wilkinson DJ, et al 2017a; The serine proteinase hepsin is an activator of pro-matrix metalloproteinases: molecular mechanisms and implications for extracellular matrix turnover. Scientific Reports. 2017 Dec 1;7(1):16693.
  • Wilkinson DJ, et al., 2017b; Matriptase induces metalloproteinase-dependent aggrecanolysis in vitro and in vivo: Promotion of osteoarthritic cartilage damage by multiple mechanisms. Arthritis and Rheumatol. 2017 69(8):1601-1611
  • Wilkinson DJ et al., The activity “blind spot”: why understanding which proteinases are active, not merely present is essential for rigorous osteoarthritis research. Osteoarthritis and Cartilage. 2026. Accepted in Press.
Back to top

Who is this for?

The candidate should have a good first degree (2:1 or above) in a relevant discipline related to biological sciences or hold a relevant clinical degree with evidence of a strong interest in research. Candidates with good previous lab experience will be viewed favourably.

Back to top

How to apply

  1. 1. Contact supervisors

    Supervisors Email address Staff profile URL
    Dr David Wilkinson David.wilkinson@liverpool.ac.uk https://www.liverpool.ac.uk/people/david-john-wilkinson
    Dr Nicola Darling Nicola.Darling@liverpool.ac.uk  
    Dr David Turner David.turner@liverpool.ac.uk  
  2. 2. Prepare your application documents

    You may need the following documents to complete your online application:

    • A research proposal (this should cover the research you’d like to undertake)
    • University transcripts and degree certificates to date
    • Passport details (international applicants only)
    • English language certificates (international applicants only)
    • A personal statement
    • A curriculum vitae (CV)
    • Contact details for two proposed supervisors
    • Names and contact details of two referees.
  3. 3. Apply

    Finally, register and apply online. You'll receive an email acknowledgment once you've submitted your application. We'll be in touch with further details about what happens next.

Back to top

Fees and funding

Your tuition fees, funding your studies, and other costs to consider.

Tuition fees

UK fees (applies to Channel Islands, Isle of Man and Republic of Ireland)

Full-time place, per year - £5,237

International fees

Full-time place, per year - £32,200

Fees stated are applicable for 2026/27 year


Additional costs

We understand that budgeting for your time at university is important, and we want to make sure you understand any costs that are not covered by your tuition fee. This could include buying a laptop, books, or stationery.

Find out more about the additional study costs that may apply to this project, as well as general student living costs.

Back to top

Contact us

Have a question about this research opportunity or studying a PhD with us? Please get in touch with us, using the contact details below, and we’ll be happy to assist you.

Back to top