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We have 10 Biochemistry (infection model) PhD Projects, Programmes & Scholarships

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Biochemistry (infection model) PhD Projects, Programmes & Scholarships

We have 10 Biochemistry (infection model) PhD Projects, Programmes & Scholarships

Exploring Viral Nucleic Acid Machinery via Cryo Electron Microscopy to Advance Biomedicine

Viruses, these tiny but potent life forms, are all around us, infecting various organisms and directly affecting human health. Although in most cases, viral infection is not life threatening, in the minority of cases it leads to long-term disorders including cancer. Read more

Analysis of pathogen determinants recognized by the hypervariable immune receptor Dscam

Background. To mount an immune response, host organisms must first recognize the pathogen with which they are infected. The first line of defense against pathogen infection in animals is provided through the innate immune response. Read more

Molecular characterisation of harmful diatom and dinoflagellate-pathogen interactions

The University of Aberdeen is offering a unique opportunity for a Doctoral Candidate (DC) to undertake full-time research, in the framework of the project in PHABB (“Pathogens of Algae for Biocontrol and Biosecurity”). Read more

Systemic infections accelerate tau spreading by promoting glial activation

Alzheimer’s disease (AD) is a neurodegenerative disease, with a complex biology. In this PhD project, we aim to explore the cellular and molecular mechanisms underlying tau pathology. Read more

Fully funded PhD student position in structural biology of viruses

PhD position in the structural biology of viruses. The Department of Chemistry is opening a PhD position in Chemistry with a specialization in structural biology. Read more

Modulation of host immune response by secreted proteins from parasitic worms

Background. To establish chronic infection, parasitic worms manipulate their mammalian hosts’ immune system. This immune modulation is often mediated by excreted or secreted parasite glycoproteins (ES proteins). 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
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