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We have 11 Pharmacology (lipid) PhD Projects, Programmes & Scholarships

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Pharmacology (lipid) PhD Projects, Programmes & Scholarships

We have 11 Pharmacology (lipid) PhD Projects, Programmes & Scholarships

Using lipid nano-particles to study G-protein-coupled receptors (GPCRs).

This exciting PhD project in the laboratory of Professor Mark Wheatley, Professor of Biochemical Pharmacology is a joint PhD between Coventry University and Stellenbosch University with the student being registered for a PhD at both universities. Read more

Development of Nanomaterials for Targeting the Bacteria–Host Interface in Cystic Fibrosis Airways

The attachment of Pseudomonas aeruginosa (PA) to the airway mucus in the lungs of people with cystic fibrosis (CF) represents an important step in airway colonization and the subsequent development of lung infection. Read more

Targeting Ras palmitoylation for the treatment of cancer

Lay summary. Proteins can be thought of as molecular machines that carry out work within cells. Protein activity can be regulated through the reversible attachment of certain chemical groups to specific amino acids within proteins. Read more
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Elucidating the role of lipids in fibrotic capsule formation at the surface of implanted medical devices.

Implanted medical devices are crucial in healthcare, valued at around £400 billion globally, however there is a high failure rate, often due to the foreign body reaction, where a fibrotic capsule forms around the implant with associated inflammation, loosening and infection. Read more

Novel strategy for treatment of chronic wounds via multi-functional liposomal nanocarriers

  Research Group: Medicines Development and Pharmaceutical Sciences
A confounding issue of non-healing skin wounds is the presence of pathogenic bacteria, that protect themselves from conventional antibiotic treatments by encasing themselves within protective shields (biofilms). Read more

Designing and evaluating novel nanotherapeutics to enhance the effectiveness of radiotherapy in the treatment of solid cancers.

One in two cancer patients will receive radiotherapy as part of their treatment. For patients with a localised cancer diagnosis effective radiotherapy represents the best chance of a curative outcome, however, is not without risk. 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

Inducing ferroptotic death to kill cancer cells

Ferroptosis is an iron-dependent form of regulated necrotic cell death triggered by oxidative degradation of lipids in membrane bilayers and subsequent irreparable damages to the plasma membrane (1). Read more
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