Curious about studying Pharmacologyat Lancaster University? We've gathered all the key details—entry requirements, modules, fees, and more. Hear from real students by checking out reviews, or take the next step by booking an open day to explore it for yourself.
Bachelor of Science (with Honours) - BSc (Hons)
Main Site
Full Time
Sep 2026
3 Year
A pharmacology degree is your opportunity to study and research new and existing drugs; how they work; how they affect our bodies; and how they can be used to change lives and tackle global healthcare challenges.With plenty of practical study, you will learn how drugs interact with living systems, how they affect our bodies and communities, and their important role in society.
Unlock the power of medicineThis degree will provide you with a deep understanding of how drugs and medicines interact with living systems and affect our bodies which is crucial to health in our society.In addition to studying drug development, mechanisms of action, therapeutic uses, and potential side effects, you'll also gain insight into the wider societal and regulatory context in which drugs are used, as well as new drugs being developed.We’ve designed the content of our course to align with the British Pharmacological Society’s core curriculum, equipping you with the skills and knowledge you need to understand and work in the world of pharmacology.Pharmacology graduates are in increasing demand with employers who will value your skills in experimental design, research, data recording and statistical analysis as well as teamworking, negotiation and communication. You will also build transferable skills and analytical training that will open up potential careers in other fields such as management, teaching, marketing and finance.
Your journey through pharmacologyThe course content is highly structured as it is aligned with the British Pharmacological Society’s core curriculum. The majority of modules are compulsory.- In Year 1 you will gain a thorough grounding in the biomedical basis of pharmacology by studying core topics including an introduction to pharmacology, the molecules of life, genetics and molecular biology.- In Year 2, you will study more advanced topics within the field of pharmacology, including molecular genetics, microbiology and immunology, and drug design and development. This will enable you to grow your practical skills that will provide you with an understanding of the experimental techniques used in modern pharmacological research.- In Year 3 you will focus on themes such as neuropharmacology and advanced drug design and development, and you will put your learning into practice with an independent research project. This is your opportunity to make your own, unique contribution to increasing scientific knowledge in an area of pharmacology that fascinates you.- You will be supported by our research-active academics whose research includes neglected tropical diseases like leishmaniasis, trypanosomiasis and snakebite as well as cancer, Alzheimer’s disease, and inflammatory conditions like asthma and psoriasis.
A hands-on courseThe pharmacology facilities at Lancaster are excellent. Our state-of-the-art life science teaching laboratories will be at the centre of your degree and are where you will put the knowledge you have acquired from lectures and tutorials into practice.Here, you will get hands-on experience (depending upon your specialisation) of using equipment such as:- our bioimaging facility- protein purification and characterisation facilities- cell sorters- confocal microscopes- flow cytometers- PCR thermocyclers- cell culture facilitiesYou will also learn techniques such as in silico drug modelling, in vitro biomolecule manipulation with drugs, and aseptic cell culture.In addition to laboratory practical classes and workshops, you will learn through lectures, workshops, tutorials, laboratory reports, essays and case studies, presentations, tests and exams. You will also benefit from digital resources through our online learning environment which will support your independent learning.
Important InformationFor the most up-to-date course information and more details, we recommend that you revisit our website before submitting your application.
This module provides an exciting opportunity to explore the anatomy and physiology of key body systems and build a solid foundation to support your future learning. Focusing on the human system, you will examine the structure-function relationships of the organs and tissues that protect, sustain, and maintain the body in health. You’ll also discover the mechanisms of communication within and between tissues that regulate responses to maintain homeostasis within an organism.
Through a combination of lectures, interactive workshops and hands-on laboratory sessions, you will develop essential scientific knowledge and practical skills, reinforcing your understanding of how the body maintains homeostasis and responds to internal and external challenges.
Pharmacology is a cornerstone of modern medicine. It provides the basis for the discovery, development, and use of drugs for the management and treatment of human health and disease. In this module you will learn about the key concepts and principles that underpin the science of pharmacology.
We will consider how drugs interact with targets in the body, to cause their physiological effects, and how our bodies interact with these drugs. We will also explore how these are impacted by factors like age, sex, and ethnicity. We’ll then explore drug discovery and development, including the stages involved in taking a new drug from initial concept through to clinical use.
Finally, we’ll consider the wider social context of pharmacology. We'll look at how risk and benefit are balanced when using drugs to treat or prevent disease and discuss drugs of abuse and their mechanisms.
Explore the fascinating world of genetics and biotechnology, from the fundamentals of inheritance to cutting-edge genomics. You’ll examine Mendelian genetics and the molecular basis of inheritance through learning how DNA is replicated and how genes are transcribed and translated. You’ll examine the human genome, genome sequencing and be introduced to the role of bioinformatics in understanding genetic data. You’ll also discover how DNA damage can lead to genetic mutations that can in turn lead to heritable and non-heritable diseases and explore genetic testing techniques used today.
This module introduces you to the essential skills required to support your studies in the biosciences. You will learn how to design and undertake safe, ethical, hypothesis-driven experiments, and gain hands-on experience of essential laboratory skills and equipment. This is complemented with training in carrying out scientific calculations and the use of computational tools to effectively analyse and present diverse types of data.
This module will introduce you to the incredible world of microbiology. You’ll learn how some microbes are harmful, but others have important roles in the environment, in our bodies and are even exploited in the food industry.
Through hands-on practical sessions and workshops, you’ll learn how to identify microbes and understand the dynamics of microbial growth. You will also learn about how the human host responds to exposure to pathogenic microorganisms. We will explore the intricate relationship between pathogens and human health and explore how pathogens cause disease.
Cells are the basic building blocks of life. In this module you will be introduced to how cells use biological molecules to perform specific functions. All cellular life, from single celled bacteria and yeast to complex multicellular organisms, including plants and humans, synthesise simple organic molecules such as sugars, lipids, amino acids, and nucleic acids.
You will learn how organisms are able to synthesise these molecules to build complex biomolecules to store energy and genetic information. In addition, you will gain knowledge about the function of specific cell types, and intracellular organelles that perform essential processes within cells. You will learn how cells use defined programmes to precisely copy the genome to next generation cells. You will learn how defects in this process can promote cancer.
In this module you’ll explore the molecular principles that govern cellular function and metabolism. You’ll study the structure and function of key biomolecules such as proteins, lipids, and carbohydrates, with an emphasis on their roles in metabolic pathways and other essential cellular mechanisms.
Topics include enzyme kinetics, metabolic regulation, and the biochemical basis of energy transfer within the cell. The module will provide you with the molecular underpinnings of human health and highlight how disruptions in biochemical pathways contribute to disease development. Laboratory sessions will let you gain a more in-depth and practical understanding of the topics covered. By the end of the module, you’ll have a comprehensive understanding of key cellular biochemical processes relevant to molecular medicine and biotechnology.
In this module you’ll explore the intricate processes through which cells respond to environmental and developmental signals. You’ll study the cellular signalling pathways, gene expression regulation, and the molecular mechanisms that guide processes such as growth, differentiation, migration, and survival.
The contribution of stem cells to these processes and how tightly regulated mechanisms shape tissues and organs will also be examined. You’ll gain a deep understanding of the dynamic interplay between cells and their surroundings, and how disruptions in these mechanisms contribute to developmental disorders and disease.
This module takes you through the process of drug development - from initial discovery to market. We'll cover target identification and validation followed by hit identification and lead discovery. You’ll learn about different approaches for finding new drugs: from high throughput screening of compound libraries to focused screens, virtual screens and structure-based drug design.
You’ll gain insight into challenges in assessing the efficacy and safety of new drugs, including the testing strategies and legal requirements involved. We will explore how preclinical models are used to test pharmacokinetic and pharmacodynamic parameters and how this helps determine factors like drug formulation and dosing schedule. You’ll learn about the role of clinical trials in determining drug safety and efficacy, considering trial design and the importance of post-approval surveillance. The module will also provide contextual information on how preclinical and clinical trials fit into the international medicines regulatory process and its requirements.
This module explores the positive and negative roles of microbes with regards to human health. You will learn how our indigenous microbes help with numerous physiological functions, protect us from invasion by pathogens and how they are tolerated by our immune system.
We will take a detailed look at the pathogenic mechanisms of a range of microbes and what makes some more virulent than others. You will learn about our natural defence, the innate and adaptive immune system and how its various components (organs, cells, and messengers) collectively function to fight off infections.
We will also examine human interventions to control infections, i.e., prevention (e.g. disinfectants, vaccination) and therapy (anti-microbial compounds) and the challenges associated with each.
This module will equip you with an in-depth understanding of critical concepts in the science of pharmacology through exploration of real-world examples. You will gain deeper insight into how pharmacodynamic parameters determine how drugs are administered and their effects on the body.
In addition to looking at how drugs affect the body, we'll also discuss how the body affects drugs - exploring in detail the pharmacokinetic parameters of absorption, distribution metabolism and excretion (ADME). You'll learn how drug formulation and delivery route can alter ADME characteristics, enabling a drug's effects to be fine-tuned to achieve the required clinical outcome. We will cover adverse effects of some drugs and how these can be mitigated. You'll also find out how individual and population genetics can affect drug responses and learn what this means for drug discovery and personalised medicine.
This module will provide an in-depth exploration of novel pharmacological approaches that are revolutionising the treatment of many conditions. You will be introduced to new concepts in the design and use of small molecules to treat disease. For example, we will look at how PROTACs and molecular glues can be used to degrade target proteins rather than inhibit them. We will also discuss recently emerging therapeutic avenues such as biologics, nanotechnology, cell and gene therapy, immunological therapies, and other medicine modalities. You'll understand how these approaches work and the benefits they offer in treating and preventing disease.
The research project provides you with first-hand experience of research and the opportunity to be immersed in an area of work of current interest in biomedical and life sciences. Your research project is underpinned by training in research methods to support you in planning, conducting, and reporting on an open-ended investigation.
Throughout your project, you’ll receive one-to-one support from a member of academic staff with expertise in your specific area of study. Projects cover a wide variety of topics and may be carried out in a variety of ways. They involve a significant amount of original work and analysis, so you gain experience in a range of skills, including experimental design and testing of hypotheses. The project also helps you to develop graduate attributes relevant to employment, including time management, communication skills, and independent working. The results of your research are reported in a written dissertation and an oral presentation.
Whilst scientific advances have led to tremendous improvements in human health over the past century, significant challenges remain. These include, problems associated with an ageing population and an increase in non-communicable diseases, new and re-emerging infectious diseases, the impact of environmental factors and social determinants on health, as well as continued disparity in access to healthcare provision across different population groups.
In this module you will study challenges of global significance that will provide you with a real-world perspective on human health and the multi-disciplinary and collaborative approaches required to tackle challenges on a national and international scale. You will consider how technological advancements, such as the use of artificial intelligence, could positively transform healthcare, but also ethical concerns that may be raised by the implementation of new technologies.