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University of Sheffield invites applications for a Research Associate in Host Compatibility and In Vitro Biological Models within the School of Clinical Dentistry. You will develop and test fungal materials in neural, glial and barrier models, contributing to assay development, data analysis and project reporting.
You will work across bioengineering, microbiology, neuroscience and translational neurotechnology, with a focus on host compatibility and inflammatory responses, maintaining rigorous
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Fixed term until 30 June 2029
4 weeks
We have an exciting opportunity to join the Mechanisms of Health & Disease research group within the School of Clinical Dentistry. The role is part of a major new externally funded interdisciplinary programme led by Dr Thomas Paterson, bringing together bioengineering, microbiology, neuroscience and translational neurotechnology.
The programme will explore whether engineered fungal networks can be developed as controllable bioelectronic interface materials. Fungal networks offer a distinctive biological platform: soft, three‑dimensional structures that can be grown, modified and tested as part of future bioelectronic interface systems.
You will develop and apply in vitro and ex vivo biological models to test how candidate fungal materials interact with neural, glial, immune and barrier‑relevant systems. The role will focus on host compatibility, inflammation, immune clearance, secreted‑factor effects, neural‑cell health and BBB/neurovascular model development. You will help determine whether engineered fungal candidates can coexist with biological systems without unacceptable toxicity, damaging inflammation, neural dysfunction or barrier disruption.
This role would suit a candidate with expertise in mammalian cell culture, neural or glial models, immunological assays, microscopy, tissue models, organoids, BBB/endothelial models or related in vitro systems. Experience with in vivo or ex vivo models would be useful, but the main requirement is hands‑on experience with biological assays and quantitative readouts.
You will work closely with colleagues in fungal engineering, bioelectronic interface testing and in vivo proof‑of‑concept work. You will contribute to assay development, candidate screening, data analysis, milestone reporting, publications and biological safety and compatibility readouts for the programme.
Our diverse community of staff and students recognises the unique abilities, backgrounds, and beliefs of all. We foster a culture where everyone feels they belong and is respected. Even if your past experience doesn't match perfectly with this role's criteria, your contribution is valuable, and we encourage you to apply. Please ensure that you reference the application criteria in the application statement when you apply.
Criteria
Essential or desirable
Stage(s) assessed at
PhD, or equivalent experience, in neuroscience, cell biology, immunology, tissue engineering, biomedical science, bioengineering, neurobiology, microbiology or a related discipline
Essential
Application
Proven ability in research and evidence of research output
Essential
Application
Practical experience in mammalian cell culture, primary cell culture, iPSC‑derived cell systems, organoids, co‑culture systems or related in vitro biological models
Essential
Application/interview
Experience with cell viability, toxicity, immunostaining, microscopy, cytokine or inflammatory readouts
Essential
Application/interview
Ability to design, run and analyse quantitative biological assays with appropriate controls
Essential
Application/interview
Excellent written and oral communication skills, with the ability to translate complex information clearly
Essential
Application
Ability to work independently and collaboratively within a multidisciplinary research team
Essential
Application/interview
Experience with neural, glial, microglial, immune, BBB/endothelial, organoid, ex vivo tissue or infection/host‑response models
Desirable
Application/interview
Experience with fungal or microbial exposure assays, live‑cell imaging, calcium imaging, electrophysiology‑adjacent assays or in vivo/ex vivo biological systems
Desirable
Application/interview
Grade
7
Salary
£38,784 - £47, 389
Work arrangement
Full-time
Duration
Fixed term until 30 June 2029
Line manager
Academic Line Manager
Right to work in the UK
If you do not currently hold the right to work in the UK, you can find more information here to help determine your visa eligibility. Additional guidance is also available on the UK Visa & Immigration website.
Our website
www.sheffield.ac.uk/dentalschool
For informal enquiries about this job contact Tom Paterson, Lecturer: on t.paterson@sheffield.ac.uk
It is anticipated that the selection process will take place on within 4 weeks after the application submission deadline. This will consist of an interview and presentation along with a tour of our research facilities. We plan to let candidates know if they have progressed to the selection stage within 2 weeks of the submission deadline. If you need any support, equipment or adjustments to enable you to participate in any element of the recruitment process you can contact Jennie Young on j.l.young@sheffield.ac.uk
We are the University of Sheffield. This is our vision: sheffield.ac.uk/vision (opens in new window).
More details can be found on our benefits page: sheffield.ac.uk/jobs/benefits (opens in a new window).
We are a Disability Confident Leader (opens in a new window). If you have a disability and meet the essential criteria for this job you will be invited to take part in the next stage of the selection process.
Closing Date :27/09/2026
We are a research university with a global reputation for excellence. Our ideas and expertise change the world for the better, making a real difference to society. We know that when people come together with different views, approaches and insights it can lead to richer, more creative and innovative teaching and research and the highest levels of student experience. Our University Vision ( www.sheffield.ac.uk/vision ) outlines our commitment to building a diverse community of staff and students that recognises and values the abilities, backgrounds, beliefs and ways of living for everyone.