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details and apply Overview About the Role This position is within the laboratory of Professor Paul Evans. The post-holder will examine the mechanisms of atherosclerosis, a major cause of heart attack and
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will have, or soon obtain, a PhD degree in mechanical/aerospace engineering, applied mathematics, chemical engineering, or a related field. We are looking for candidates with a strong background in
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project entitled ‘Alteration in bacterial cell envelope structure as the mechanism of antibiotic resistance and cell death’, with a proposed starting date of 1st September 2024. Antibiotic resistance is a
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resolution pharmacology and investigate mechanisms and biological signatures associated with pro-resolving therapies. The particular emphasis of the project will be to determine soluble and cellular
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closely with team members with different research expertise, and also supervising current PhD students in the group. About You Candidates should have a PhD in mechanical engineering, biomedical engineering
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closely with team members with different research expertise, and also supervising current PhD students in the group. About You Candidates should have a PhD in mechanical engineering, biomedical engineering
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You The successful candidate will have prior experience in the formulation, manufacture and full mechanical, structural and chemical characterization of melt processed bioresorbable polymer bioactive
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the mechanisms of cargo handling by macrophages during clearance of apoptotic cells. The position is at the Centre for Biochemical Pharmacology which brings together a group of leading clinical and non
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the disease process demonstrates the importance of studies aiming to understand the genetic architecture and underlying mechanisms of HCM susceptibility in order to develop better tests for early identification
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, formation mechanisms, and role in the origin of life on Earth. The postholder will join the Centre for Dynamic Earth and the Solar System (CeDESS) at Royal Holloway University of London, which includes other