At a Glance
- Tasks: Develop innovative electroactive biomaterials for cardiac tissue engineering and collaborate on groundbreaking research.
- Company: Join the Institute of Biomedical Engineering at Oxford, a leader in cutting-edge medical research.
- Benefits: Competitive salary, supportive environment, and opportunities for professional growth.
- Other info: Be part of a multidisciplinary team dedicated to advancing regenerative medicine.
- Why this job: Make a real difference in cardiac health through pioneering research and technology.
- Qualifications: PhD in relevant field and experience with iPSC-derived cardiomyocyte culture.
The predicted salary is between 39424 - 47779 £ per year.
We are seeking a full-time Postdoctoral Research Assistant to join Professor Malavika Nair’s research group at the Department of Engineering Science, Institute of Biomedical Engineering (Botnar Research Centre, Headington, Oxford). The post is funded by an EPSRC New Investigator Award and is fixed-term to the 31st March 2027 in the first instance.
This exciting project aims to develop and validate innovative electroactive biomaterials and bioelectronic devices that promote cardiac regeneration by combining tissue engineering, biomaterials, stem cell biology and bioelectronics. Working closely with collaborators including Professor Christopher Toepfer (Department of Cardiovascular Medicine), you will fabricate and evaluate electroactive extracellular matrix-derived constructs designed to stimulate the maturation and function of cardiomyocytes. The project addresses critical challenges in cardiovascular disease by developing technologies that support tissue regeneration, mechanical function, electrical conduction and improved tissue perfusion.
You will contribute to the design, fabrication and biological validation of electroactive regenerative devices through activities including:
- Culturing and assessing induced pluripotent stem cell-derived cardiomyocytes (iPSC-CMs)
- Processing and synthesising electroactive biopolymers for regenerative medicine and controlled drug delivery
- Fabricating and physicochemically characterising bioelectronic devices
- Optimising electrical stimulation protocols for cardiomyocyte maturation
- Working with clinicians and academic cardiologists to develop physiologically relevant in vitro cardiomyopathy models
The successful candidate will also contribute to experimental design, data analysis, publication of research findings, collaborative projects, grant development and the wider activities of the research group.
You will hold (or have submitted your thesis for) a PhD/DPhil in a relevant discipline such as biological sciences, biomedical engineering, electrical engineering or materials engineering. You should have:
- Experience with iPSC-derived cardiomyocyte culture or relevant ex vivo cardiac models
- A strong record of research achievement and scientific publication
- The ability to work independently while contributing effectively within a multidisciplinary team
- Excellent communication and scientific writing skills
- An interest in translating biomaterials and bioelectronic technologies towards regenerative medicine
- Independent management of research projects
- Biomaterials and microscopy
- High-throughput bioelectronic systems
Informal enquiries may be addressed to Professor Malavika Nair (email: malavika.nair@eng.ox.ac.uk).
For more information about working at the Department, see www.eng.ox.ac.uk/about/work-with-us/.
The Department holds an Athena Swan Bronze award, highlighting its commitment to promoting women in Science, Engineering and Technology.
Salary (£): Grade 7: £39,424 - £47,779 per annum (Inclusive of Oxford University weighting)
Postdoctoral Research Assistant in Electroactive Biomaterials for Cardiac Tissue Engineering in Oxford employer: Corehr
Sheffield Hallam University is an exceptional employer, offering a vibrant and inclusive work culture that fosters innovation and collaboration within the Smart Interactive Technologies Lab. As a Research Fellow, you will have access to cutting-edge research infrastructure and the opportunity to contribute to impactful projects aimed at improving maternal health outcomes, all while benefiting from a supportive environment that prioritises professional growth and development. Join us in making a meaningful difference in healthcare through responsible and human-centred digital innovation.
StudySmarter Expert Advice🤫
We think this is how you could land Postdoctoral Research Assistant in Electroactive Biomaterials for Cardiac Tissue Engineering in Oxford
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We think you need these skills to ace Postdoctoral Research Assistant in Electroactive Biomaterials for Cardiac Tissue Engineering in Oxford
Some tips for your application 🫡
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