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We have 28 University of Reading Biochemistry PhD Projects, Programmes & Scholarships

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Biological Sciences

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Institution

University of Reading

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University of Reading Biochemistry PhD Projects, Programmes & Scholarships

We have 28 University of Reading Biochemistry PhD Projects, Programmes & Scholarships

Low density lipoprotein oxidation and atherosclerosis

Project overview. The research in Professor David Leake’s group is concerned with atherosclerosis, the underlying cause of coronary heart disease and thrombotic strokes. 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

Platelets in health, ageing and disease: new diagnostics and treatments

Platelets are small blood cells that play a vital role in the chronic and acute progression of Cardiovascular Disease (CVD), and also have roles in immunity, inflammation, cancer metastasis, Alzheimer's disease and a range of infections, such as dengue, HIV-1, malaria, and COVID-19. Read more

Systems level analysis of platelet signalling

We are interested in how intracellular signal transduction networks bring about complex biological behaviours in cells. We do this by combining computational biology with wet laboratory experimentation. Read more

Biological role of neuropeptides and their receptors

Cell signalling is critical to the co-ordination and functioning of all cells. Cell signalling allows cells to co-ordinate activities within the intracellular environment as well as ensuring cells know how to correctly respond to other cells and to an ever-changing extracellular environment as well. Read more

Extracellular vesicles in health and disease

Endothelial dysfunction (ED) is associated with classical and emerging risk factors of cardiovascular disease (CVD), correlates with disease progression and is an independent predictor of the risk of future cardiovascular events. Read more

Structure-function relationships governing polyphenol bioactivity with respect to plasma membranes

This project aims to investigate polyphenol binding to lipid membrane surfaces with a view to understanding how polyphenol structure and aggregation within the gastrointestinal tract (GIT) affects the bioavailability of these nutraceuticals. Read more

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