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We have 19 Immunology (mass) PhD Projects, Programmes & Scholarships

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Immunology (mass) PhD Projects, Programmes & Scholarships

We have 19 Immunology (mass) PhD Projects, Programmes & Scholarships

MSc by Research: Resolving immune cell proteomes to subcellular resolution

Immune activation triggers dramatic proteome remodelling. Using high sensitivity mass spectrometry we have mapped immune cell proteomes, providing novel insights into immune cell phenotypes and revealing the metabolic and protein synthesis machinery and environmental sensors that shape cell fate. Read more

MSc by Research: Molecular characterisation of the factors driving lung fibrosis

Idiopathic pulmonary fibrosis (IPF) is a progressive disease that results in an irreversible decline in lung function.  At present IPF is normally fatal and the median survival is between 2 and 5 years after diagnosis. Read more

(MRC DTP CASE) Investigating the mechanisms contributing to impaired regulatory function of B cells in autoimmunity

The implementation of biological therapies has significantly advanced the management of autoimmune diseases (AIDs). However, the failure to achieve clinical remission in ‘non-responders’ remains a significant and unmet challenge. Read more

(MRC DTP CASE) Understanding how tumour associated macrophages control the tumour immune landscape in NF2-Schwannomatosis

Type 2 Neurofibromatosis (NF2), now referred to as NF2-Schwannomatosis (or NF2-SWN), is a rare autosomal dominant tumour pre-disposition syndrome characterised by growth of typically benign tumours throughout the nervous system. Read more

Investigating how tumour associated macrophages affect cancer metastasis and response to therapies

Solid tumours are generally highly infiltrated by macrophages. Macrophages are heterogeneous and different populations with different and sometimes even opposite functions co-exist in tumours affecting cancer progression. Read more

MSc by Research: Nutrient-dependent regulation of microglia function and immune responses

Microglia are constantly sensing the brain environment for metabolic changes, damage and pathogenic invasion. Microglia are highly metabolically active, with activation in response to inflammatory stimulation increasing glycolytic demand. Read more

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