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We have 22 Cell Biology (obesity) PhD Projects, Programmes & Scholarships

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Cell Biology (obesity) PhD Projects, Programmes & Scholarships

We have 22 Cell Biology (obesity) PhD Projects, Programmes & Scholarships

Targeting the extracellular matrix remodelling for the treatment of obesity-associated cardio-renal dysfunction

Obesity is a risk factor for many chronic metabolic diseases including heart failure and chronic kidney disease. Our lab demonstrated a tight association between increased deposition of extracellular matrix components (e.g. Read more

Metabolic programming: Role of micronutrient (B12) deficiency and associated epigenetic marks

The global epidemic of childhood obesity is a major public health issue. Although current adverse lifestyle (nutrition and physical inactivity) contributes to obesity, a growing body of evidence links early life nutritional adversity to the development of obesity and metabolic disorders in children. 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

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

Molecular mechanisms underlying the anti-atherogenic actions of natural products

Atherosclerosis, the underlying cause of myocardial infarction, stroke and peripheral vascular disease, is responsible for most deaths in the western world with mortality increasing at a marked rate in developing. Read more

Causal risk factors and biological mechanisms for colorectal cancer risk

Rationale. Diet and lifestyle are likely to play an important role in colorectal cancer risk; obesity, low levels of physical activity, red and process meat consumption and low intake of dietary fibre have all been shown to predict colorectal cancer risk. Read more

Identifying metabolic drivers of cancer development

Rationale. Growing evidence suggests that cell extrinsic factors are key in modulating tumor progression. Metabolites are small molecules that act as sources of fuel and building blocks essential for cells and tissues when present at normal levels. Read more

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