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We have 16 University of Leeds Molecular Biology PhD Projects, Programmes & Scholarships

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Biological Sciences

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Faculty of Medicine and Health  University of Leeds

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University of Leeds Molecular Biology PhD Projects, Programmes & Scholarships

We have 16 University of Leeds Molecular Biology PhD Projects, Programmes & Scholarships

NIHR Leeds BRC: Pre-clinical evaluation of novel regenerative medicine strategies for knee osteoarthritis

Historically, articular cartilage was considered incapable of spontaneous repair.  However, biomechanical correction in osteoarthritis (OA) using high tibial osteotomy or joint distraction demonstrated the remarkable joint to regeneration by “merely” correcting joint alignment. Read more

NIHR Leeds BRC: An interferon diagnostic to inform early detection and prevention strategies in Ana positive CTDs

Type I interferons (IFN) play a role in a wide range of rheumatic and musculoskeletal diseases (RMDs), and strong evidence suggests that measurement of IFN activity could have clinical value, although testing has not progressed into clinical settings. Read more

Genetics: Investigating the functional effect of novel genes and genetic variants in malignant hyperthermia susceptibility using model systems

Malignant hyperthermia (MH) is an inherited condition, where patients exposed to anaesthetic drugs are susceptible to a dramatic hyperthermic and hypermetabolic response that can contribute to a significant proportion of post-operative morbidity and deaths. Read more

Cancer: Characterization of EGFR signaling activated by the endothelium in the process of breast cancer metastasis to the brain

The Epidermal Growth Factor Receptor (EGFR) is important in normal physiology regulating epithelial development and homeostasis. In cancer, deregulation resulting from mutation, amplification or transcriptional upregulation promotes tumorigenesis. Read more

Cancer: Understanding the immunosuppressive role of fibroblast and macrophages in Breast cancer

Oncolytic viruses (OVs) preferentially infect and kill cancer cells, and their clinical efficacy has been demonstrated against a number of different cancers. The most clinically advanced OV is a genetically engineered herpes simplex virus (T-VEC) which expresses GMCSF to aid the development of anti-tumour immune responses; T-VEC is approved for the treatment of metastatic melanoma. Read more

Genetics: Unravelling the Norrin/beta-catenin signaling pathway and its role in retinal angiogenesis and blindness

Our previous work on the genetic analysis of individuals with the inherited retinal disease Familial Exudative Vitreoretinopathy (FEVR), has helped identify a new angiogenesis pathway, the Norrin/beta-catenin pathway. Read more
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