Sort by
Refine Your Search
-
Listed
-
Country
-
Employer
- University of Oxford
- King's College London
- University of Oxford;
- University of Liverpool
- University of Cambridge;
- University of Manchester
- DURHAM UNIVERSITY
- Aarhus University
- Babraham Institute
- Durham University
- European University Institute
- Imperial College London;
- Plymouth University
- Queen Mary University of London;
- The Rosalind Franklin Institute
- University of Liverpool;
- University of London
- University of New England
- University of Sheffield
- 9 more »
- « less
-
Field
-
, including X-ray, NMR, or cryoEM, alongside proven experience of mammalian cell culture techniques. You will possess excellent written and verbal communication skills, with the ability to publish high-quality
-
-generation optical microscopy and spectroscopy methods to uncover the physical principles governing immune-cell function. The laboratory brings together technology development at the Rosalind Franklin
-
, including X-ray, NMR, or cryoEM, alongside proven experience of mammalian cell culture techniques. You will possess excellent written and verbal communication skills, with the ability to publish high-quality
-
Immunology, Systems Biology, or a related discipline Experience in knockout generation using CRISPR Experience in cellular and molecular immunology techniques, including flow cytometry, ex vivo Treg expansion
-
these critical cellular processes. You will lead independent research, design and perform innovative experiments using biochemical and structural biology approaches, analyse complex datasets, and contribute
-
About us: At the Department of Physiology Anatomy & Genetics (DPAG ) we undertake discovery science where we reassemble physiological processes at the molecular, cellular, tissue and systems level
-
About the Role This postdoctoral position supports a Cancer Research UK-funded research programme investigating epithelial cell heterogeneity during the initiation of pancreatic cancer, with a
-
develop ultra-high-efficiency three-junction solar cells by leveraging Japan’s expertise in thin-film growth with Oxford's capabilities in solar cell fabrication, characterisation, and modelling. We aim
-
that transcribes genes into mRNA, enabling subsequent protein synthesis. Its transcriptional activity is continuously challenged by the occurrence of DNA damage, resulting from exposure of DNA to cellular
-
multidisciplinary bioimaging programme, 3DxN. Background Ageing and disease are accompanied by changes in the appearance of tissues and cellular microenvironments. Current clinical pathology relies largely