11326 modules
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PHYS2007 2028-29
Medical Physics
Applications of physics to medicine will be of particular interest to those contemplating a career in this field. The course is taught primarily by staff from the School of Physics and Astronomy, but brings in staff from Southampton General Hospital who are experts in the specific fields covered to provide more 'hands-on' experience of the techniques. The course includes several visits to the General Hospital to see something of medical physics and radiotherapy in practice. -
CHEM6092 2025-26
Medicinal Chemistry
Medicinal Chemistry is pivotal in the design, synthesis and evaluation of new medicines, and involves multidisciplinary research at the interface of Chemistry, Biology and Medicine. This module will introduce key molecular concepts and methods in Medicinal Chemistry, and the central role played by chemists in the development of drug candidates targeting diverse disease states and their associated biomolecular targets (for example proteins, DNA). Through important historical case studies, we will discuss the properties and modes of action of pharmaceuticals in biological systems, from “classical” inhibitors to more contemporary and cutting-edge bioactive compounds, such as protein degraders, pharmacological chaperones, and targeted covalent inhibitors. Students will have access to a broad range of resources, including recent specialist literature and software, along with additional recorded content that illustrate important concepts covered in the lectures. -
CHEM6092 2026-27
Medicinal Chemistry
Medicinal Chemistry is pivotal in the design, synthesis and evaluation of new medicines, and involves multidisciplinary research at the interface of Chemistry, Biology and Medicine. This module will introduce key molecular concepts and methods in Medicinal Chemistry, and the central role played by chemists in the development of drug candidates targeting diverse disease states and their associated biomolecular targets (for example proteins, DNA). Through important historical case studies, we will discuss the properties and modes of action of pharmaceuticals in biological systems, from “classical” inhibitors to more contemporary and cutting-edge bioactive compounds, such as protein degraders, pharmacological chaperones, and targeted covalent inhibitors. Students will have access to a broad range of resources, including recent specialist literature and software, along with additional recorded content that illustrate important concepts covered in the lectures. -
CHEM3002 2027-28
Medicinal Chemistry
Medicinal Chemistry is pivotal in the design, synthesis and evaluation of new medicines, and involves multidisciplinary research at the interface of Chemistry, Biology and Medicine. This module will introduce key molecular concepts and methods in Medicinal Chemistry, and the central role played by chemists in the development of drug candidates targeting diverse disease states and their associated biomolecular targets (for example proteins, DNA). Through important historical case studies, we will discuss the properties and modes of action of pharmaceuticals in biological systems, from “classical” inhibitors to more contemporary and cutting-edge bioactive compounds, such as protein degraders, pharmacological chaperones, and targeted covalent inhibitors. Students will have access to a broad range of resources, including recent specialist literature and software, along with additional recorded content that illustrate important concepts covered in the lectures. -
CHEM2040 2028-29
Medicinal Chemistry I
This module will introduce the fundamental aspects of therapeutic design and discovery. -
CHEM2040 2027-28
Medicinal Chemistry I
This module will introduce the fundamental aspects of therapeutic design and discovery. -
CHEM2041 2027-28
Medicinal Chemistry II
In this module we will introduce key concepts in medicinal chemistry related to enzyme catalysed reactions and glycobiology -
CHEM2041 2028-29
Medicinal Chemistry II
In this module we will introduce key concepts in medicinal chemistry related to enzyme catalysed reactions and glycobiology -
CHEM3060 2029-30
Medicinal Chemistry III
Medicinal Chemistry is pivotal in the design, synthesis and evaluation of new medicines, and involves multidisciplinary research at the interface of Chemistry, Biology and Medicine. This module will introduce key molecular concepts and methods in Medicinal Chemistry, and the central role played by chemists in the development of drug candidates targeting diverse disease states and their associated biomolecular targets (for example proteins, DNA). Through important historical case studies, we will discuss the properties and modes of action of pharmaceuticals in biological systems, from “classical” inhibitors to more contemporary and cutting-edge bioactive compounds, such as protein degraders, pharmacological chaperones, and targeted covalent inhibitors. Students will have access to a broad range of resources, including recent specialist literature and software, along with additional recorded content that illustrate important concepts covered in the lectures. -
CHEM3060 2028-29
Medicinal Chemistry III
Medicinal Chemistry is pivotal in the design, synthesis and evaluation of new medicines, and involves multidisciplinary research at the interface of Chemistry, Biology and Medicine. This module will introduce key molecular concepts and methods in Medicinal Chemistry, and the central role played by chemists in the development of drug candidates targeting diverse disease states and their associated biomolecular targets (for example proteins, DNA). Through important historical case studies, we will discuss the properties and modes of action of pharmaceuticals in biological systems, from “classical” inhibitors to more contemporary and cutting-edge bioactive compounds, such as protein degraders, pharmacological chaperones, and targeted covalent inhibitors. Students will have access to a broad range of resources, including recent specialist literature and software, along with additional recorded content that illustrate important concepts covered in the lectures.