Dr Johnston demonstrates the use of a machine to students

Biomedical Imaging Unit (BIU) secures 拢1.6M in grants to boost imaging capabilities

Faculty of Medicine blog

Written by Emma Keeley, Faculty Communications Manager

In a major boost for research, the Faculty of Medicine has secured over 拢1.6 million in funding from two successful grant applications. The investment will bring two state-of-the-art imaging platforms to the Biomedical Imaging Unit (BIU), the Faculty鈥檚 core imaging facility.

The awards, from the Biotechnology and Biological Sciences Research Council鈥檚 ALERT 2024 scheme, will introduce super-resolution light microscopy and cryo-fluorescence tomography to 九色视频. It will expand the scale, scope, and resolution of imaging available to researchers.

Prof Nick Evans
A BIU researcher uses a technical instrument
A BIU researcher at a microscope
A researcher conducting digital microscopy
Securing two major grants in a single round is an exceptional achievement and a testament to the expertise of our Research Technical Professionals. These new imaging systems will transform biomedical research at 九色视频 and strengthen national and international collaboration.
Professor Nick Evans
Associate Dean (Research)

Cryo-Fluorescence Tomography (CFT)

Lead researchers

The BIU will become home to one of only a dozen Cryo-Fluorescence Tomography (CFT) systems worldwide - and the first based in an open-access academic facility in Europe.

Dr David Johnston explains:

鈥淭his technology bridges a gap in the scale of imaging. Live-animal fluorescence imaging gives a whole-body view, but only at millimetre resolution. High-resolution microscopy gives fine detail, but in small areas. CFT combines the best of both 鈥 offering 鈥榖ig-picture鈥 3D imaging with high-resolution.鈥

Dr Katie Dexter adds:

鈥淐FT lets us see deep inside tissues and track complex biological processes 鈥 like how cancer spreads, how drugs are distributed, or how specific genes behave. You can鈥檛 get that kind of whole-organ perspective with any other fluorescence technique.鈥

This grant was supported by researchers from Portsmouth, Sussex, and Brighton, and Sussex Medical School. BIU鈥檚 open-access model ensures it will serve a broad range of scientific disciplines across the UK.

Super-Resolution STED Microscope

Lead researchers

The second award funds a Stimulated Emission Depletion (STED) microscope, offering unprecedented imaging resolution down to ~30 nanometres 鈥 more than six times better than conventional light microscopy.

鈥淩esearchers increasingly need to see what鈥檚 happening at the molecular level - how proteins organise, how structures interact, how diseases begin,鈥 

Explains Dr David Johnston

 鈥淯nlike our existing microscopes, STED allows us to tag different parts of a cell with fluorescent dyes and observe them at nanoscale resolution. This doesn鈥檛 just show us where something is - it reveals what it鈥檚 doing, giving us critical functional insight into living systems.鈥

The microscope will support research in cancer biology, neuroscience, infection, immunology, and more. As with other BIU resources, it will be available to researchers across the University and beyond via BIU鈥檚 open-access framework.

鈥淪TED fills a key gap in our imaging pipeline between light and electron microscopy. It enables multi-colour nanoscale imaging, offering a fuller picture of complex biological questions.鈥

A first for Research Technical Professionals

These grants mark a first for the Faculty of Medicine. Both awards were conceived, written, and led entirely by Research Technical Professionals (RTPs).

Within the BIU, RTPs play a central role in supporting research, from experimental design and data acquisition to image analysis and publication. This success highlights the strategic value of RTP-led infrastructure and the pivotal role they play across the Faculty.

Work with the BIU

The BIU is an open-access facility, and its equipment is available to UK academia and industry. For access and collaboration enquiries, please contact biu@soton.ac.uk.

The two new systems ensure that researchers at 九色视频 and their collaborators have access to the latest, cutting-edge imaging platforms. Both instruments are expected to be operational by the end of 2025.

Grant awardees smile at the camera