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THE UNIVERSITY of EDINBURGHDEGREE REGULATIONS & PROGRAMMES OF STUDY 2007/2008
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Archived VersionThe Degree Regulations and Programmes of Study has been formulated as a dynamic online publication in order to provide the most up to date information possible. Master versions of the Degree Regulations and Programmes of Study incorporating all changes to date are archived twice a year on 1 September and within the first three University working days prior to the start of Semester 2 in January. Please note that some of the data recorded about this course has been amended since the last master version was archived. That version should be consulted to determine the changes made. Medicinal Chemistry Level 11 (U01234)? Credit Points : 20 ? SCQF Level : 11 ? Acronym : CHE-4-MedChem11 A lecture course covering instruction in both the theory and application of medicinal chemistry. The course comprises individual lectures courses on: Metals in Medicine, Nucleic Acids, Medicinal Chemistry and Industrial Medicinal Chemistry. Either the Level 10 or Level 11 version of this course (as specified in the degree programme tables) is a compulsory requirement for Year 4/5 students on degrees in Medicinal and Biological Chemistry, but can be taken by Year 4/5 students on any Chemistry degree programme. Entry Requirements? Pre-requisites : Chemistry 3A (CHE-3-A) and Chemistry 3B (CHE-3-B) and Chemistry 3P Practical and Transferable Skills (CHE-3-Pract) at a weighted average at or above Grade C at the first attempt (including Chemistry 3A (CHE-3-A) and Chemistry 3B (CHE-3-B) at a weighted average at or above Grade D), and Mathematics qualifications of at least 20 credits to level Applicable Mathematics 1 and Mathematical Methods 1; or with the permission of Head of School. ? Prohibited combinations : Medicinal Chemistry Level 10 (CHE-4-MedChem10). Subject AreasHome subject areaDelivery Information? Normal year taken : 4th year ? Delivery Period : Semester 2 (Blocks 3-4) ? Contact Teaching Time : 3 hour(s) per week for 10 weeks First Class Information
All of the following classes
? Additional Class Information : 30 hours lectures + 6 hours tutorials, at times arranged. Summary of Intended Learning Outcomes
At the end of this course students will be able to:
- describe the biomedical periodic table and the uses of metals in medicine - show an understanding of the biological significance of RNA and DNA - show a basic understanding of oligonucleotide chemistry and how it relates to therapeutic and diagnostic applications - show understanding of rational approaches towards the design of important drugs and the biological implications of such therapeutic agents including the use of enzymes to inhibit protein processing as a concept for the design of new pharmaceuticals - describe common routes of administration of drugs and drug delivery systems - describe common metabolic pathways and how they may be exploited in the design of drugs, prodrugs and soft drugs - describe the basic body functions controlled by hormonal steroids and also how steroids are exploited for non-hormonal uses, particularly neuromuscular blocking agents - discuss the therapeutic potential for GABAA receptor modulators with particular reference to general anaesthetics including steroids - discuss the importance of new highspeed technologies for the generation of lead compounds and structure-activity relationships, in particular combinatorial chemistry, high throughput screening and automation - show understanding of the biological importance of opioids as analgesics Learning outcomes specific to attainment of a pass at Level 11 include: - ability to integrate all, or most, of the main areas of the course - development of original and creative responses to problems and issues within the course - application of critical analysis, evaluation and synthesis to issues at the forefront of the subject area Assessment Information
One degree exam of 3 hours.
Exam times
Contact and Further InformationThe Course Secretary should be the first point of contact for all enquiries. Course Secretary Miss Karen Harris Course Organiser Dr Michael Greaney School Website : http://www.chem.ed.ac.uk/ College Website : http://www.scieng.ed.ac.uk/ |
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