Don't miss our weekly PhD newsletter | Sign up now Don't miss our weekly PhD newsletter | Sign up now

We have 28 Molecular Biology (complex systems) PhD Projects, Programmes & Scholarships

Discipline

Discipline

Biological Sciences

Location

Location

All locations

Institution

Institution

All Institutions

PhD Type

PhD Type

All PhD Types

Funding

Funding

All Funding


Molecular Biology (complex systems) PhD Projects, Programmes & Scholarships

We have 28 Molecular Biology (complex systems) PhD Projects, Programmes & Scholarships

Improving Photosynthetic Efficiency - Engineering and Evolution of Light-Harvesting Complexes via Synthetic Biology

Photosynthesis is the ultimate source of food and energy for almost all forms of life. Using sunlight as the energy input, photosynthesis removes carbon dioxide from the atmosphere generating the oxygen and carbohydrate that support complex life. Read more

MSc by Research: Glueing proteins together with small molecules

Recent advances from the Ciulli Lab and others have contributed to the establishment of a game-changing new modality of chemical intervention into biological system – one that moves beyond the state-of-the-art. Read more

Chemical modification of proteins via metal-mediated processes

Chemically modified proteins can be used to understand, treat, and diagnose disease. However, relatively few chemical reactions can be used to modify proteins, severely limiting the diversity and applications of new technologies. Read more

Understanding gene regulation by HDAC1 complexes in development and cancer

Packaging DNA into nucleosomes helps protect the long fragile genomes of eukaryotic species. However, in doing so it becomes an ever-present physical barrier to the machinery required for its replication, repair and transcription. Read more

How to build and maintain a 3-dimensional polarised epithelial sheet

We are interested in how cells maintain normal cell shape within an epithelium. Correct epithelial cell shape is essential to maintain tissue integrity and when deregulated can cause diseases such as malignant cancers, diabetes, inflammation, and aging. 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

Filtering Results