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We have 385 Cell Biology (uk) PhD Projects, Programmes & Scholarships

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Cell Biology (uk) PhD Projects, Programmes & Scholarships

We have 385 Cell Biology (uk) PhD Projects, Programmes & Scholarships

Developing therapies targeting inflammation and dysfunctional matrix biology in neurological and ocular disease

We are seeking talented, motivated students with a passion for research in inflammation and matrix biology in the eye and brain to join our team co-led by Dr Lisa Hill https://www.birmingham.ac.uk/staff/profiles/clinical-sciences/hill-lisa.aspx and Dr Hannah Botfield https://www.birmingham.ac.uk/staff/profiles/inflammation-ageing/botfield-hannah.aspx. Read more

Molecular Mechanisms of Resolution of Inflammation

We are seeking talented, motivated students to join the research group led by Professor Andy Clark (https://www.birmingham.ac.uk/staff/profiles/inflammation-ageing/clark-andy.aspx), a member of the University of Birmingham’s Rheumatology Research Group (https://www.birmingham.ac.uk/research/inflammation-ageing/research/rheumatology-research-group/index.aspx). Read more

Musculoskeletal Ageing and Inflammation Research

We are seeking talented, motivated students with a passion for research in musculoskeletal ageing and chronic inflammatory diseases (e.g., osteoarthritis and sarcopenia) to join the Musculoskeletal Ageing and Inflammation team led by Prof Simon Jones https://www.birmingham.ac.uk/staff/profiles/inflammation-ageing/jones-simon.aspx. Read more

Experimental and computational Cancer PhD: Overcoming osteosarcoma chemoresistance by characterizing and targeting cellular quiescence

Cancer is the leading cause of death in children and the second in young adults in England and Wales. Sarcomas, tumours that originate from connective tissues (bone, muscle, fat), account for around 15% of childhood cancers. Read more

Examining the mechanisms that cause cardiovascular disease by studying the heart or adipose tissue

Heart failure has a serious impact on our society and once diagnosed has a poor survival rate. In the United Kingdom, there are about 1.5 million people living with the after-effects of a heart attack. Read more

Exploring the cellular and molecular mechanisms mediating myelin formation, injury and repair in the central nervous system

We are seeking talented, motivated students with a passion for research on glial cells and their involvement in mechanisms mediating central nervous system development, function and disease states to join the Oligodendrocyte and Myelin Research Group led by Dr Daniel Fulton. Read more

Immune regulation of lung repair, and long-term consequences of infection

This project is one of 14 four year PhD Studentships funded by Medical Research Scotland (MRS) (https://www.medicalresearchscotland.org.uk) to be delivered jointly by the named University and External Partner Organisation (EPO). Read more

Investigating the role of RNA dependent DNA repair in childhood cancer

Damage to our genetic material DNA is responsible for a wide range of human diseases including neurodegenerative diseases, haematological diseases, immune deficiencies, early ageing and cancers. Read more

Expanding the ligandable E3 ubiquitin ligases for targeted protein degradation

Out of more than 600 E3 ubiquitin ligases in cells, currently only a handful have small molecule binders that can be used for PROteolysis Targeting Chimeras (PROTACs) and harnessed for targeted protein degradation. Read more

Selective targeting of furin for the treatment of fibrotic lung disease.

Furin, a proprotein convertase has been established as a therapeutic target across several disease areas to include chronic airways diseases and infectious disease, such as COVID-19 (reviewed in our recent publication, Douglas et al, 2023). Read more

Using chemical-genetics to inhibit and characterise “undruggable” enzymes

The ability to inhibit kinases with small molecule drugs has transformed our understanding of signalling networks. It has allowed us to define the substrates and processes that each kinase controls, and to map how these enzymes cooperate within signalling pathways. Read more

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