Course summary
Overview Natural products possess enormous structural and chemical diversity that cannot be matched by synthetic molecules. They are an incredibly important source of biologically active compounds for both human healthcare and agriculture, and recent technological advances mean that their application can now be fully explored. This Master’s course in Natural Product Drug Discovery will equip you with theoretical and practical knowledge in the science of natural product discovery, from microorganisms to plants and animals. Your studies will include nutraceuticals and herbal extracts, antibiotics and antimicrobial resistance and the major human diseases. We place an emphasis on translational research and the drug discovery process, taking natural products from bench to bedside. And you’ll gain a thorough cross-disciplinary grounding with a unique mix of organic chemistry, pharmacology, phytochemistry and microbiology; ideal preparation for a research-based career, taking theoretical knowledge through to practical application. About This Course On our one-year Master’s programme, studying with academic and industrial experts who are currently active in natural product research and drug discovery, you'll gain the key skills, and discover the latest cutting-edge methods, in natural product discovery. Your learning will combine lectures, seminars and laboratory practicals, as well as an independent research project and self-guided study. Our expert team is based across the Norwich Research Park, including the School of Pharmacy and the John Innes Centre. Guest speakers from the pharmaceutical and biotech sector will also present sessions covering topics such as the industrial applications of natural product research. In your first semester, you’ll gain a solid theoretical foundation in all aspects of the subject, including the modern drug discovery process and the targeting of human diseases, natural product isolation and bioassays, metabolomics and synthetic biology for engineered biosynthesis. In your second semester, you’ll put the theory into practice, designing, executing and interpreting your own experiments using the very latest methods and technologies. All of which will culminate in your hands-on, laboratory-based Master’s research project, which you'll deliver with the expert guidance of a member of staff. Disclaimer Course details are subject to change. You should always confirm the details on the provider's website: www.uea.ac.uk
Modules
Please see our website www.uea.ac.uk for further information.
Assessment method
Please see our website www.uea.ac.uk for further information.
Entry requirements
DEGREE CLASSIFICATION Bachelors degree - 2.1 or equivalent DEGREE SUBJECT Chemistry, Pharmaceutical Sciences or a related subject
English language requirements
Test | Grade | Additional details |
---|---|---|
IELTS (Academic) | 6 | with minimum 6.0 in Writing and Speaking and 5.5 in Listening and Reading |
English Foreign Language: Applications from students whose first language is not English are welcome. We require evidence of proficiency in English (including writing, speaking, listening and reading): Test dates should be within 2 years of the course start date. We also accept a number of other English language tests. Review our English Language Equivalencies for a list of qualifications that we may accept to meet this requirement.
https://www.uea.ac.uk/apply/our-admissions-policy/english-language-equivalencies
https://www.uea.ac.uk/apply/our-admissions-policy/english-language-equivalencies
Fees and funding
Tuition fees
Channel Islands | £13400 | Whole course |
England | £13400 | Whole course |
Northern Ireland | £13400 | Whole course |
Scotland | £13400 | Whole course |
Wales | £13400 | Whole course |
International | £27300 | Whole course |
Tuition fee status depends on a number of criteria and varies according to where in the UK you will study. For further guidance on the criteria for home or overseas tuition fees, please refer to the UKCISA website .
Additional fee information
Provider information
University of East Anglia UEA
Norwich Research Park
Norwich
NR4 7TJ