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We have 31 Cancer Biology (computational) PhD Projects, Programmes & Scholarships

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Cancer Biology (computational) PhD Projects, Programmes & Scholarships

We have 31 Cancer Biology (computational) PhD Projects, Programmes & Scholarships

Experimental and computational Cancer PhD: Overcoming osteosarcoma chemoresistance by characterizing and targeting cellular quiescence

Cancer is the leading cause of death in children and the second in young adults in England and Wales. Sarcomas, tumours that originate from connective tissues (bone, muscle, fat), account for around 15% of childhood cancers. Read more

Combining CRISPR-screens and AI to Identify Novel Therapeutic Strategies to Target Cancer-Stroma Interactions

A fully funded PhD Studentship is available to work with Dr Angus Cameron, Reader in Cell Signalling and Tumour Cell Biology, Barts Cancer Institute at Queen Mary University London, Dr Otto Morris, Senior Biological Data Scientist at Exscientia, and Professor Pedro Cutillas, Professor of Cell Signalling and Proteomics, QMUL, Barts Cancer Institute at Queen Mary University London. Read more

Gene regulation in cancer metastasis

A PhD project studying gene regulation in cancer metastasis is available in the laboratory of Dr. Fiona Wardle (https://www.kcl.ac.uk/research/wardle-group) in the Randall Centre for Cell and Molecular Biophysics, King’s College London. Read more

AI-based Identification of New Drug Targets for Personalised Oncology

A fully funded PhD Studentship is available to work with Professor Francesca Ciccarelli, Lead of the Centre for Cancer Genomics and Computational Biology, Bart's Cancer Institute at Queen Mary University of London. Read more

Self-Funded PhD Opportunities available at the Cancer, Infection and Therapeutics research group

Are you passionate about Cancer research and infectious diseases and eager to advance your research career? London South Bank University is pleased to offer self-funded PhD opportunities in molecular mechanisms and targeted therapy in cancer, and infectious diseases (wet lab and computational methods) for motivated and talented qualified individuals. Read more

Using single cell transcriptomic and blood proteomic data to understand how pancreatic cancer causes diabetes and to find ways to detect the cancer earlier

Pancreatic cancer is the deadliest of the common cancers. Five-year survival remains low at 12%. Sadly for 80% of patients, by the time their cancer is diagnosed it has spread to distant organs making them ineligible for potentially curative surgery. Read more

Development of chemical tools and bioactive compounds to explore the importance of enzyme activity in cancer diseases

Diversity-oriented synthesis (DOS) is a modern chemical methodology, which aims to synthesise small molecules that cover new chemical space with the possibility of finding unexplored biological targets or pathways that may be important for disease progression. Read more

Design, synthesis and evaluation of novel polysialyltransferase inhibitors as anti- metastatic agents

  Research Group: Institute of Cancer Therapeutics
Polysialic acid plays an essential role in neuronal development, but by adulthood is absent from the human body. Its biosynthesis is regulated by two polysialyltransferases (polySTs). Read more

Engineering AI and deep learning approaches for digital pathology and bioimaging

An exciting opportunity to join a dynamic and multidisciplinary group at the School of Cancer and Pharmaceutical Sciences. You will develop new computational pathology approaches to improve cancer patient treatment and diagnosis. Read more

PhD Student Positions at International Max Planck Research School for Molecules of Life, Munich

The International Max Planck Research School for Molecules of Life (IMPRS-ML), offers fully funded PhD student positions in the areas of biochemistry, structural biology, biophysics, cell biology, systems biology and computational biology. Read more

PhD Student Positions at International Max Planck Research School for Molecules of Life, Munich

The International Max Planck Research School for Molecules of Life (IMPRS-ML), offers fully funded PhD student positions in the areas of biochemistry, structural biology, biophysics, cell biology, systems biology and computational biology. Read more

Revealing Reactivity in Cancer-Associated Heme Proteins: Novel Time-Resolved Structural Approaches

Indoleamine 2,3-dioxygenase 1 (IDO1) is a heme-containing enzyme involved in the degradation of tryptophan to kynurenine. Cancer cells upregulate IDO1 to escape normal immune responses and, in many cases, a high expression of IDO1 is connected to poor prognosis. Read more

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