Biomedical Science BSc (Hons) or MSci (Hons) — 2027 entry

Open up career opportunities from drug development to diagnosing diseases, public health to graduate-entry medicine, with our IBMS-accredited Biomedical Science degree. On this highly practical course, you’ll combine lab work and analytical skills with communication and data science.

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Key course information

Typical offer
ABB-BBB
Start date
September 2027
Full time
3 years
UK fees
£10,050
Overseas fees
£28,100
Subject area
Biosciences
UCAS code
B900
Campus
Stag Hill

Why choose this course?

On our Biomedical Science course, you’ll study physiology, pharmacology and pathology, learning techniques to help diagnose infectious diseases, model outbreaks, understand the genetic basis for cancer, and more. By putting human life under the microscope, you’ll discover how to help improve health, individually and as a society. 

  • Get hands-on from the start – you’ll complete your first practical in your first week and spend much of your time in our Innovation for Health Learning Lab developing the research skills that employers want.
  • Build skills to open up careers in science and beyond – from the Skills for Success module in your first year onwards, you’ll be supported to develop capabilities in scientific communication, data analysis and teamwork, preparing you for career paths from the NHS to business.
  • Gain real-world experience on a professional placement – you could spend a year in industry, working in a role such as lab research assistant, trainee biomedical scientist, clinical trials scientist or research microbiologist.
  • Conduct independent research on meaningful projects – your final-year project will focus on a topic that really matters, demonstrating your skills at every stage: conducting the experiments, data analysis and presentation, under expert supervision. Opt for an integrated masters year to complete advanced research and clinical training and set yourself up for research career.
  • Lay the foundations for a career in medicine – our Biomedical Science degree is a recognised route to a graduate-entry Medicine course, like the four-year BMBS at Surrey.

Our course has been accredited by the Institute of Biomedical Science (IBMS) for over 20 years, ensuring you can graduate with the knowledge and skills you need to register with the Health and Care Professions Council (HCPC) and become a biomedical scientist.

We’re preparing you for the future by integrating AI into every course, building digital skills, confidence and creativity that employers value in tomorrow’s workplace.

Find out more information

Statistics

94%

Of our biosciences graduates are in employment or further study within 15 months of graduating (Graduate Outcomes 2026, HESA)

14th in the UK

For biomedical sciences in the Daily Mail University Guide 2027

16th in the UK

For biomedical sciences in The Times and The Sunday Times Good University Guide 2027

Accreditation

Course details

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What you will study

In your first year, you’ll study topics that are fundamental to biomedical science, including bacteriology, biochemistry, cell biology, genetics, human physiology, microbiology and physiology, ensuring you have a solid foundation upon which to build the rest of your degree.

During your second year, you will build on what you have learnt in your first year, and explore topics with a greater clinical focus, such as pathology, molecular biology, clinical biochemistry, and pharmacology.

In your third year, you’ll select modules that explore topics such as advanced pharmacology, circadian rhythms, immunology, systems biology and toxicology. You’ll study these alongside compulsory modules investigating cancer pathogenesis and treatment, the epidemiology of infectious diseases, our immune system and immunohaematological diseases. You’ll also get the opportunity to work alongside a supervisor to conduct your own scientific research project, performing experiments and critically evaluating data and literature.

If you have chosen to do an integrated masters, you will complete an additional clinical and research-focused year of study that includes an advanced research project and training in scientific management and analytical skills. This will provide additional preparation for a research career in industry or academia.

Professional recognition

BSc (Hons) - Institute of Biomedical Science (IBMS)
Accredited by the Institute of Biomedical Science (IBMS).

MSci (Hons) - Institute of Biomedical Science (IBMS)
Accredited by the Institute of Biomedical Science (IBMS).

Foundation year

If you don’t meet our entry requirements, you might still be able to apply for this degree with a Biosciences Foundation Year. This is an extra year of study to develop your skills and make it easier for you to get started at university. On successful completion of your foundation year, you’ll be ready to progress to the first year of your degree.

To see what modules you’ll be studying, refer to the foundation tab in the 'course structure' section.

Course structure

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The academic year is divided into two semesters of 15 weeks each. Each semester consists of a period of teaching, revision/directed learning and assessment.

The structure of our programmes follow clear educational aims that are tailored to each programme. These are all outlined in the programme specifications which include further details such as the learning outcomes.

Please note: The full module listing for the optional Professional Training placement part of your course is available in the programme specification.

Modules

Modules listed are indicative, reflecting the information available at the time of publication. Modules are subject to teaching availability, student demand and/or class size caps.

The University operates a credit framework for all taught programmes based on a 15-credit tariff.

New for 2026 entry: At Surrey, we want you to be a future-ready graduate. That’s why all our courses will offer at least one module that integrates and teaches AI tools in discipline-specific ways. You’ll develop the digital skills that employers are looking for and get comfortable with the tech of the future.

Course options

Year 1 - BSc (Hons)

Semester 1

Compulsory

MICROBIOLOGY: AN INTRODUCTION TO THE MICROBIAL WORLD

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The purpose of this module is to introduce students to microorganisms, to the main cellular processes they perform and to how their activities affect humans and the environment. The students learn about microorganisms that cause disease as well as those who have properties we exploit for the benefit of society. Finally through laboratory practical exercises, the students learn and practice a range of basic microbiological techniques, which are essential for the cultivation and study of microorganisms. This module provides students with key skills and a basic broad knowledge of microbiology; a fundamental discipline required for future endeavors in the fields of infectious disease, biotechnology, biomedical science, biological science and other medically-related fields.

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PERSONAL AND PROFESSIONAL DEVELOPMENT PROGRAMME (PDP)

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- The module aims to equip students with the tools, knowledge and opportunity to enable them to thrive both personally and professionally during their university journey and beyond, empowering students to develop as well-rounded individuals who are confident about their future and how to navigate life after graduation. - Through this module, students will have the opportunity to participate in sessions and activities that support the development of academic and social self-efficacy, metacognitive strategies, self-regulation and resilience, while creating the conditions and environment for students to develop a sense of belonging to their programme of study and wider university.

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Compulsory

CELL BIOLOGY

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This module introduces students to the structures within a cell and their functions, including an understanding of the processes by which cells divide and die.  The module then considers how cell structure and function can be adapted to specialise cells for particular purposes, and begins to consider how different types of cell are able to interact with one another and their environment in order to form higher order structures such as tissues and organs.  Overarching these themes are four practical classes which illustrate the way in which cells and tissues can be studied.

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EXPLORING BIOSCIENCES - SKILLS FOR SUCCESS

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This module aims to begin the students on a journey to facilitate the communication and passion for their subject, enabling them to develop and refine communication skills for further study. The students are guided through the development of key employability skills such as literature querying, critical reading and referencing, towards the discovery of a range of highly of high profile topic for their own research. Working in groups, students choose a topic which constitute the focus of their assessment, and learn to leverage on team work and personal resilience. Through the production of a group presentation and an individual summary, students develop important competences in the science communication field which strengthen their employability and academic proficiency.

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Semester 2

Compulsory

MOLECULAR BIOLOGY AND GENETICS - GENES AND THEIR FUNCTION

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The purpose of this module is to give a broad introduction to the essential concepts of molecular biology and genetics that are critical to any undergraduate programme in biosciences.   We will cover the central dogma of biology: how information is passed from DNA to RNA to protein, and how it is inherited throughout generations. We will examine how genomes are organized and the structure of a gene, initially focusing on prokaryotes. We will discuss the details of DNA replication, transcription and translation and examine some of the key concepts in gene regulation. Students will also be introduced to laboratory and bioinformatic techniques essential for the study of molecular biology. They will also hone their skills in scientific writing through the production of a laboratory report and short essay.

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Compulsory

INTRODUCTION TO PRINCIPLES OF PHYSIOLOGY AND PRACTICAL SKILLS

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This module aims to introduce students from all backgrounds to the principles of regulation of homeostasis. It provides a foundational knowledge to which principles can be applied in the control of several model systems to maintain homeostasis. The content builds upon content from Cell Biology and Biochemistry in semester 1 of level 4 and this essential knowledge is utilised in multiple modules at levels 5 and 6. Students will develop their practical skills in a number of scenarios, including exercise physiology, use of digital technologies to determine and monitor physiological outputs relating to model systems covered in the content. Laboratory skills are further developed from semester 1, data analysis and use of graphing software is cemented using lab derived data.

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PRACTICAL AND BIOMEDICAL BACTERIOLOGY

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This is a practical module, the aim of which, is to equip students with the critical technical skills used in bacteriology and to familiarize them with key diagnostic tests that are relevant to students on BSc programmes in Biomedical Sciences, Microbiology and Biochemistry. This module builds upon critical concepts and practical techniques covered in BMS1026, and introduces students to a range of medically and environmentally globally important bacteria, and is a key module for the microbiology programme.

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Semester 1 & 2

Compulsory

FUNDAMENTAL MOLECULES AND PROCESSES IN BIOCHEMISTRY

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This module aims to introduce students from all backgrounds to the biological molecules that are essential to life. It provides a foundational knowledge of their structures and functions alongside when, where and how they are generated and broken down. The content builds up alongside content from Cell Biology and Physiology modules at this level to help you understand how these can be utilised at a cellular and organismal level and the conditions under which they are regulated. This provides an essential base upon which knowledge is utilised in multiple modules at levels 5 and 6. You will develop your awareness of the need for safety procedures, equipment and organisation in the laboratory, alongside the equipment that is needed to determine how processes in the module content occur and what conditions will affect these. You will learn to analyse data using appropriate software including a basic level of computer coding. Laboratory skills are build up throughout the module across both semesters, supporting you to become more independent, plan your experiments and be critical of your work and results, reflecting on how the results may change with refinements to the competency and type of experimental methods.

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Year 2 - BSc (Hons)

Semester 1

Compulsory

MOLECULAR BIOLOGY AND GENETICS: FROM GENES TO BIOLOGICAL FUNCTION

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This Molecular biology/genetics module builds up on its first-year sister module BMS1047. The key difference from BMS1047 is that it focusses on eukaryotic molecular biology and techniques to evaluate various molecular biology processes, including more genome-wide aspects, and the significance of molecular biology mechanisms in the real world, for e.g., in cancer. Another key difference is that this module covers molecular biology in greater depth, in particular the regulatory aspects of molecular biology. Overall, you will develop oral and written communication skills in molecular biology and genetics and will be able to appreciate the differences between the eukaryotic and prokaryotic molecular systems. Lectures are covered in a block of the following six themes. Advanced human genetics/genomics à The lectures will cover the human genome, natural genetics variations, sequencing genes and genomes, the genotype-phenotype map to include Mendelian genetics/genetic diseases, the transmission of information, and the concept of recombination. Eukaryotic DNA replication à Packaging of DNA, its organization on chromosomes and alignment with the cell cycle (telomeres, crossing over/recombinant). Enzymes needed for DNA replication with a reflection of BMS1047, key differences between Pro- and Eukaryotes, and techniques to study replication. Eukaryotic DNA transcription à Eukaryotic Cis and trans elements in transcription, post-transcription modifications of transcripts and molecular biology methods to study/quantify transcripts, key differences between Pro- and Eukaryotes, enhancer/mediator complex, cDNA synthesis. control of transcription. Post-transcriptional regulation à  Molecular mechanisms of splicing, polyadenylation (mechanisms); Cytoplasmic events: RNA export, localization, regulation by lnc/miRNAs, RNA decay. Eukaryotic mRNA translation à Eukaryotic regulation, global and specific regulation of transcription. Techniques to study Eukaryotic translation. regulation of translation by the proteasome. Application of human genetic inheritance and gene expression in cancer, errors in DNA replication & their correction. Practical componentà RNA extraction & quantification, reverse transcription and RT-PCR followed by electrophoresis.

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INTEGRATION OF PHYSIOLOGICAL SYSTEMS

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This module aims to build upon the principles of feedback and basic systems covered at level 4. In this module we go into greater depth about the homeostatic control through the use of nervous, endocrine and other control mechanisms. Students will build upon biochemical principles of receptors and second messengers as key components of feedback mechanisms, applying this to whole-body regulation. Investigation and integration of multiple systems and their response to the same mediator is an essential part of this module.   Students will develop their oral and written communication skills within a scientific discipline, enabling them to explain & extrapolate both theoretical knowledge & perform data analysis.

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Compulsory

MEDICAL MICROBIOLOGY

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This module is designed to develop an understanding of concepts of bacteriology, protozoology mycology, and virology, with a particular emphasis on pathogenic microbes. Each lecture or group of lectures studies a particular group of microbes. These pathogens are chosen as representative on the basis of their biological characteristics, and also from a global perspective. The module also includes tutorial discussions and laboratory practical classes to further develop deeper understanding and broader application of the topics included in this module. Laboratory sessions will aid your understanding of the theory and enable development of practical and employability skills.

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Optional

BIOCHEMISTRY - ENZYMES AND METABOLISM

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This module aims to build upon the fundamental biochemical principles covered at Level 4 (BMS1066/1067), focussing on the biochemical principles of regulation of intermediary metabolism  (carbohydrates and lipids) in health and disease. The module will also build on the importance of cell membranes and intracellular signaling pathways in regulating metabolic feedback mechanisms. Investigation of the biochemical basis of metabolic disorders, with a primary focus on Diabetes mellitus, is an essential part of this module. Students will further develop their scientific and digital technology literacy and communication skills, enabling them to generate protein structure using AI-driven software and evaluate protein structure-function relationships in the context of health and disease. 

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NEUROSCIENCE, FROM NEURONES TO BEHAVIOUR

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This module is designed to introduce the structure and function of the nervous system in animals and humans.Students will develop an advanced understanding of selected aspects of the nervous system and brain function.The module focuses on providing information across different levels of explanation, including single molecules, cellular, neuronal networks and complex behaviours. Students will develop their skills in understanding and synthesising scientific knowledge by presenting published neuroscientific results in video, poster, or essay format.  

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Semester 2

Compulsory

INTRODUCTION TO IMMUNOLOGY

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The purpose of this module is to provide a conceptual understanding of the key principles of human immunology, including the immune response to infection and foreign antigens. Such an understanding is crucial in many other parts of the programme, including the pathogenicity of infectious disease, oncology and pharmacology. It is a prerequisite for modules at FHEQ level 6 including BMS3054 (Clinical Immunology and Immunohaematology), BMS3102 (Advanced Topics in Cellular and Molecular Immunology) and BMS3104 (Applied Immunology).

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PHARMACOLOGY: INTRODUCTION TO DRUG ACTION

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The purpose of the module is to introduce the subject of Pharmacology.  They will apply their knowledge of Biochemistry and Physiology to understand the mechanism of action of key current drugs.  With a particular focus on the following systems: cardiovascular, neurological, anti-inflammatory, -infectives and -cancer.  Students will also consider how the body deals with drugs, namely absorption, distribution, metabolism and excretion (ADME).   

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Compulsory

ANALYTICAL AND CLINICAL BIOCHEMISTRY

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The Module will cover a range of topics that will address analytical techniques in research and clinical laboratories, as well as addressing data analysis and statistics.

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PATHOLOGY AND MEDICINE

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This module addresses the essential need for students to understand the concepts of the pathogenesis of major human diseases and provides students with important background knowledge to understand clinical (or analytical) medicine.  The contents of this module bridge basic science with the pathology of human disease and medical science including the understanding of the principles of major organ diseases in the human body.

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Module selection for Year 2 - FHEQ Level 5

Students must choose one optional module in semester 1

Year 3 - BSc (Hons)

Semester 1

Compulsory

CLINICAL IMMUNOLOGY AND IMMUNOHAEMATOLOGY

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A series of lectures covering the immunopathology, symptoms, treatment and diagnostic tests for range of clinically relevant diseases in the area of immunology and immunohaematology will be delivered by internal and external experts in the field thus aligning with the United Nation's sustainability development goal 3: Good health and wellbeing.  This will include clinical immunology consultants, Biomedical Scientists and research active experts with the chance for students to interact with active practitioners in the field, highlighting employability prospects..  The focus of the coursework is on clinical case studies and is undertaken primarily as group work with a proportion of the marks based on individual and group work contribution assessment thus building resourcefulness and resilience.  The coursework culminates in an oral presentation which builds on several empl.oyability skills.

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Optional

BIOCHEMISTRY - RECEPTORS AND ENERGY METABOLISM

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This module will address four broad topics, namely Integration of Metabolism, Nuclear Receptors, Bioenergetics and Cell Signaling.

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ADVANCED PHARMACOLOGY - SELECTED TOPICS IN DRUG ACTION

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The purpose of this module is for students to propose potential pharmacotherapeutic targets for conditions of their choice.  Here the academic staff introduce a signaling pathway, group of receptors, channels, enzymes, they also provide some case studies of areas of targeting.  Students then take this knowledge and build on it and through their own research propose a target.

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BIOMEDICAL MICROBIAL PRODUCTS

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The module provides a description and demonstration of how the application of the principles of microbial and biochemical sciences, studied elsewhere in the programme, can be used in the discovery, production, and manufacture of commercially important products for the pharmaceutical, food, and chemical industries, with examples and case studies and an intensive experimental section. The principles of genetic and physiological deregulation and overexpression of metabolic products that are discussed in the module build upon the analysis of metabolic pathways (studied in L4 and L5 Biochemistry modules) and the study of microbial diversity, metabolism and function (studied in L4 and L5 Microbiology modules), and complement concepts covered in the Level 6 modules BMS3092 Advanced Technologies in Gene Expression and BMS3070 Systems Biology: Genes in Action. The principles of biomedical and bioveterinary microbial product discovery, over-production and applications are       compared to those of other microbial products (food, bioenergy, and (bio)chemical industries).  

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SYSTEMS BIOLOGY FOR HEALTH AND DISEASE

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Systems Biology is widely accepted as a major future direction of biological research. The ethos of Systems Biology is to generate, analyse, and integrate multiple data sets for understanding and modelling a biological system. We want to know the components (molecules) of the system, how they work/interact together, and, ideally, have some quantitation: the abundance of a particular component and/or the rates of action/interaction. Due to technological advances within molecular biology, we are now able to obtain quantitative information about molecules within a biological system on both small and large scales. The purpose of this module is to introduce students to the basic concepts of Systems Biology for health and disease. The module includes subjects relevant to prokaryotic and eukaryotic systems and is thus suitable for all bioscience students. Learning methods include: lectures, seminars, computer practical sessions, article discussion, workshops, and research and problem solving during both lectures and computer-based investigations.

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MICROBIAL COMMUNITIES AND INTERACTIONS

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Students will integrate what they have learnt in the previous modules, using their knowledge on Microbiology (BMS1026), Practical and Biomedical Bacteriology (BMS1035) and Medical Microbiology (BMS2085) The study of microbiology often involves learning about the properties of single species, but in nature microbes rarely exist in isolation and are instead part of a rich and diverse ecosystem. Together with their ability to communicate via chemical signalling, the world of microbes reveals interesting complexities with relevance to health and disease, and biotechnology.

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Semester 2

Compulsory

EPIDEMIOLOGY OF INFECTIOUS DISEASES

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Microbes can be categorised and studied according to a number of characteristics such as their physiology; pathogenicity, and cellular interaction with hosts. This module builds on those themes already covered on the bioscience programmes in dealing with the spread of microbes through populations, and features of host and vector populations that influence this spread.

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Compulsory

CANCER - PATHOGENESIS AND THERAPEUTICS

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Gives the student a broad understanding of cancer as an umbrella term for a complex set of different diseases unified by common cellular mechanisms. Students will examine the biological processes underlying cancer and develop an appreciation of a range of clinically relevant diagnostic and therapeutic approaches. The emphasis is on human studies and clinical data, with animal studies and cancer-relevant pre-clinical models also presented.Students will also explore the growing role of artificial intelligence (AI) in cancer research and clinical practice, including its application in areas such as histopathological analysis, biomarker discovery, and therapeutic decision-making. Emphasis will be placed on the critical evaluation and ethical use of AI tools, including considerations of bias, data integrity, transparency, and responsible academic practice.This module fits well within a biomedical sciences program.

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Optional

NEUROSCIENCE: FROM MOLECULES TO MIND

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The Neuroscience module is following the Neuroscience FHEQ Level 5 which provided the bases in Neuroscience. This second module will run over one semester and will provide students with a comprehensive research-led overview of several current hot topics in Neuroscience built around 4 intricate topics: neuroendocrinology, sleep, neuroplasticity and brain disorders. Emphasis will be placed on integration of knowledge from the different areas presented in the lectures. In addition, evaluation of skills for understanding, synthesis/analysis and interpretation and presentation of scientific data will be addressed throughout all research-led lectures and assessments.

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BIOLOGICAL RHYTHMS

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The Biological Rhythms module is designed to provide students with a comprehensive, research-led overview of current topics in Biological Rhythms, with an emphasis on mammalian Chronobiology. The module builds on critical evaluation skills developed in previous modules, including appraisal and interpretation of scientific literature and evaluating current gaps in our knowledge. The module is delivered as a mix of lectures, online content, several tutorials and drop-in sessions in which knowledge is integrated and evaluated. The summative assessments of this module consists of a mid-module in-class test and a final exam, in which students apply skills in interpreting current knowledge, subject-specific concepts and methods gained in the module to develop forward-looking views that apply and validate research insights in real world conditions.

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HUMAN GENETICS IN THE 21ST CENTURY

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The purpose of this module is to give students a clear view of how and where genetics is used in the ‘real world’. This module will build on the basics of molecular biology and genetics taught in Levels 4 and 5, and will expect students to utilise this prior knowledge and content given in lectures and in the problem-based learning assessments.  This module requires application of understanding and problem solving skills.

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MECHANISTIC TOXICOLOGY AND PHARMACOKINETICS

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Pharmacokinetics and Toxicology is the science of safety: It is the study of how exogenous chemicals enter and are disposed of by the body, and the effects that they can have on the organ systems of the body. Toxicology is designed to minimise the risk of harm to humans from exposure to any of the thousands of chemicals that we use every day. In this module, we will look at the basic mechanisms of how chemicals may cause harm to living organisms. We will look at a number of examples of target organ toxicity with reference to how drugs/xenobiotics are processed by the body. We will examine the mathematical patterns of drug administration and excretion and learn to explain these and determine their meaning, these concepts will be brought together through a series of case study workshops where mathematical data will be handled and examined.

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ADVANCED TOPICS IN VIROLOGY

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This module will explore advanced themes of virology research in the 21st century. Grounded in the specialties of our research-active virologists, this module will equip the students with the knowledge required to understand virus:host interactions at the cellular, host and systems level and the skills to critically evaluate virology research findings. This will build on and enhance the knowledge acquired at level 4 and 5 on general microbiology and virology and complement the global overview of human pathogens explored within the Immunology and Epidemiology of Infectious Diseases modules at level 6.

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Semester 1 & 2

Compulsory

RESEARCH PROJECT

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The final year research project develops practical, analytical, literature sourcing and presentation skills that have been acquired during the typical undergraduate degree programme. The projects provided as part of this module reflect topics and modes of research that are undertaken in the School of Biosciences based of the expertise of our academic staff and hence cover a wide variety of the United Nation¿s Sustainability Development Goals around health, the environment and hunger.  Modes of research include laboratory-based; in silico; computational; fieldwork, data-analysis, and grant proposals.Research project allocations are usually made based on students¿ indication of their preferred projects from a catalogue provided at the start of the academic year.Students should liaise regularly with their supervisor(s) throughout the academic year as they progress with the research, building their independence as a researcher by searching for information, planning experiments/analysis approaches or formulating grant proposals, analysing data, drawing up conclusions and developing oral and written communication skills: all of which will help them develop employability competencies and skills.Students are expected undertake a critical review of the literature of their topic through literature searches and the use of bibliographic databases, which will help them to develop resourcefulness. Students will build up resilience by directly investigating a scientific question/hypothesis that may include designing their own approach or experimental plan (with support from the supervisor(s)) to investigate the question/hypothesis.The use of statistical software and other digital platforms/specialist analytical software for literature searching/meta-analysis etc will help students increase their digital capability.  During any practical or skills development sessions, students will learn how to work in a laboratory, the value of resources, how to work in a laboratory environment and best practice to be sustainable, all of which will help them develop responsibility and global and cultural capabilitiesThe final sign-off for passing the Practical Skills Record is also incorporated into this module.

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Module selection for Year 3 - FHEQ Level 6

Students must choose two optional modules in Semester 1 and one optional module in semester 2.

Teaching and learning

Learning methods

  • Group work
  • Independent study
  • Laboratory work
  • Lectures
  • Online learning
  • Practical sessions
  • Seminars
  • Tutorials
  • AI learning

Assessment

We use a variety of methods to assess you, including:

  • Data analysis exercises
  • Essays
  • Examinations
  • Practical write-ups
  • Presentations.

For a full breakdown of modular assessments, please see the module table (above).

General course information

Contact hours

You will spend a significant part of your first year in laboratory-based practicals. This will be around a quarter of your total contact time throughout your second year.

Contact hours can vary across our modules. Full details of the contact hours for each module are available from the University of Surrey's module catalogue. See the modules section for more information.

Timetable

New students will receive their personalised timetable during Welcome Week. In later semesters, at least one week before the start of the semester.

Scheduled teaching can take place on any day of the week (Monday – Friday), with part-time classes normally scheduled on one or two days. Wednesday afternoons tend to be for sports and cultural activities.

View our code of practice for the scheduling of teaching and assessment (PDF) for more information.

Location

This course is based at Stag Hill campus. Stag Hill is the University's main campus and where the majority of our courses are taught. 

Career opportunities

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We offer careers information, advice and guidance to all students whilst studying with us, which is extended to our alumni for three years after leaving the University.

94%
Employability

Of our biosciences graduates are in employment or further study within 15 months of graduating (Graduate Outcomes 2026, HESA)

This course is designed to prepare for you for a career in a wide variety of sectors including research, healthcare, academia and industry. On successful completion of your studies, you’ll have the academic requirements needed to register for the IBMS Registration Training Portfolio as a route to becoming an HCPC-registered biomedical scientist.

With a Biomedical Science degree you could take a role such as:

  • Biomedical scientist
  • Clinical research associate
  • Clinical trial coordinator
  • Data scientist
  • Drug safety specialist
  • Laboratory analyst.

Our alumni can be found in hospital, academic and industrial research laboratories around the world, with recent graduates working for:

  • AstraZeneca
  • Cancer Research UK
  • Great Ormond Street Hospital
  • Queen Mary University of London
  • The Royal Marsden NHS Foundation Trust
  • University of Oxford.

Many students also use this course to apply for further study including masters and PhD programmes, and graduate dentistry and medicine programmes. 

Our School of Medicine offers a four-year graduate-entry Medicine BMBS course. You’ll have access to our state-of-the-art Clinical Simulation Centre and our new Centre for Anatomical and Surgical Education (CASE) and gain extensive experience in clinical placements with our partner NHS trusts and primary care providers. On successful completion of the course, you will have the academic requirements to begin practising as a foundation doctor in the UK or abroad.

Facilities

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You’ll benefit from hands-on learning in our £12.5 million Innovation for Health Learning Laboratory, where you will conduct experiments and follow scientific protocols.

The Laboratory is fitted with the latest industry equipment which you’ll use to conduct a full range of experiments. You’ll complete your first practical within your first two weeks.

The time you spend in our facilities will give you the opportunity to familiarise yourself with biomedical science methodology and develop the practical laboratory experience that’s essential in a research career and valued by a wide range of employers.

In your final year, depending on your research project, you may also get to our dissertation laboratory.

Hear from our students and graduates

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Entry requirements

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Learn more about the qualifications we typically accept to study this course at Surrey.


Typical offer

A-level

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  • BSc (Hons):
    • ABB-BBB
    • Required subjects: Biology or Chemistry and a second science or mathematics subject.
  • MSci (Hons):
    • AAB
    • Required subjects: Biology or Chemistry and a second science or mathematics subject.
  • BSc (Hons) with foundation year:
    • CCC
    • Required subjects: a science subject.

A-level General Studies and A-level Critical Thinking are not accepted. Applicants taking the Science Practical Endorsement are expected to pass.

GCSE or equivalent: English Language and Mathematics at grade 4 (C).

BTECs

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  • BSc (Hons):
    • DDD-DDM in Applied Science.
  • MSci (Hons):
    • DDD in Applied Science.
  • BSc (Hons) with foundation year:
    • MMM in Applied Science.

GCSE or equivalent: English language and mathematics at grade 4 (C).

Please see the alternative qualifications guidance if you are taking a mixture of BTECs and A-levels or if you are taking other qualification types.

International Baccalaureate Diploma

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  • BSc (Hons):
    • 33-32
    • Required subjects: Biology or Chemistry HL5/SL6 and a second science or mathematics subject HL5/SL6.
  • MSci (Hons):
    • 34
    • Required subjects: Biology or Chemistry HL5/SL6 and a second science or mathematics subject HL5/SL6.
  • BSc (Hons) with foundation year:
    • 29
    • Required subjects: a science subject HL4/SL6.

GCSE or equivalent: English A HL4/SL4 or English B HL5/SL6 and Mathematics (either course) HL2/SL2.

European Baccalaureate

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  • BSc (Hons):
    • 78-75%
    • Required subjects: Biology or Chemistry 7.5 and a second science subject or Mathematics (5 period) 7.5.
  • MSci (Hons):
    • 82%
    • Required subjects: Biology or Chemistry 7.5 and a second science subject or Mathematics (5 period) 7.5.
  • BSc (Hons) with foundation year:

GCSE or equivalent: English Language (1/2) 6 or English Language 3 (7) and Mathematics 6.

Access to HE Diploma

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  • BSc (Hons):
    • QAA-recognised Access to Higher Education Diploma with 45 Level 3 credits overall including 30 at Distinction and 15 at Merit - 27 at Distinction and 18 at Merit.
    • Required subjects: 15 credits in Biology or Chemistry and 15 credits in another science subject.
  • MSci (Hons):
    • QAA-recognised Access to Higher Education Diploma with 45 Level 3 credits overall including 39 at Distinction and 6 at Merit.
    • Required subjects: 15 credits in Biology or Chemistry and 15 credits in another science subject.
  • BSc (Hons) with foundation year:
    • QAA-recognised Access to Higher Education Diploma with 45 Level 3 credits overall including 21 at Distinction, 3 at Merit and 21 at Pass.
    • Required subjects: modules must be in relevant subjects.

GCSE or equivalent: English Language and Mathematics at grade 4 (C).

Scottish Highers

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  • BSc (Hons):
    • AABBB-ABBBB
    • Required subjects: Biology or Chemistry and another science or mathematics subject.
  • MSci (Hons):
    • AAABB
    • Required subjects: Biology or Chemistry and another science or mathematics subject.
  • BSc (Hons) with foundation year:
    • BBBCC
    • Required subjects: a science subject.

GCSE or equivalent: English Language and Mathematics at grade C (Scottish National 5).

Welsh Baccalaureate

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  • BSc (Hons):
    • Pass overall with ABB-BBB from a combination of the Advanced Skills Challenge Certificate and two A-levels.
    • Required subjects: A-level Biology or Chemistry and an A-level in another science or mathematics subject.
  • MSci (Hons):
    • Pass overall AAB from a combination of the Advanced Skills Challenge Certificate and two A-levels.
    • Required subjects: A-level Biology or Chemistry and an A-level in another science or mathematics subject.
  • BSc (Hons) with foundation year:
    • Pass overall with CCC from a combination of the Advanced Skills Challenge Certificate and two A-levels.
    • Required subjects: an A-level in a science subject.

A-level General Studies and A-level Critical Thinking are not accepted. Applicants taking the Science Practical Endorsement are expected to pass.

GCSE or equivalent: English Language and Mathematics at grade 4 (C).

T Level

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  • BSc (Hons):
    • Distinction overall, with C in the Core Component.
    • Required subjects: Science.
  • MSci (Hons):
    • N/A
  • BSc (Hons) with foundation year:
    • Pass overall, with D in the Core Component.
    • Required subjects: Science.

GCSE or equivalent: English Language and Mathematics at grade 4 (C).

Extended Project Qualification (EPQ)

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Applicants taking the Extended Project Qualification (EPQ) will receive our standard A-level offer for this programme, plus an alternate offer of one A-level grade lower, subject to achieving an A grade in the EPQ. The one grade reduction will not apply to any required subjects.

Applicants can only receive one grade reduction from the published grades, an EPQ grade reduction can’t be applied in addition to other grade reductions made through other schemes such as Contextual Admissions or In2Surrey.

Country-specific qualifications

International students in the United Kingdom

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English language requirements

IELTS Academic: 6.5 overall with 6.0 in writing and 5.5 in each other element.

View the other English language qualifications that we accept.

If you do not currently meet the level required for your programme, we offer intensive pre-sessional English language courses, designed to take you to the level of English ability and skill required for your studies here.

International Foundation Year

If you are an international student and you don’t meet the entry requirements for this degree, we offer the International Foundation Year at the Surrey International Study Centre. Upon successful completion, you can progress to this degree course.

More information

Selection process

We normally make offers in terms of grades.

If you are a suitable candidate you may be invited to an offer holder event. During your visit to the University you can find out more about the course and meet staff and students.

Credit Transfer and Recognition of Prior Learning

View our Code of practice for Recognition of Prior Credit and Prior Learning and further guidance: Credit Transfer and Recognition of Prior Learning - Guide for Applicants (PDF) for more information.

We recognise that many students enter their higher education course with valuable knowledge and skills developed through a range of professional, vocational and community contexts.  

If this applies to you, the recognition of prior learning (RPL) process may allow you to join a course without the formal entry requirements or enter your course at a point appropriate to your previous learning and experience. There are restrictions on RPL for some courses and fees may be payable for certain claims.  

Contextual offers

Did you know eligible students receive support through their application to Surrey, which could include a grade reduction on offer?

About contextual offers

Fees and funding

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Fees for the 2027-28 academic year

Explore UKCISA’s website for more information if you are unsure whether you are a UK or overseas student. View the list of fees for all undergraduate courses.

Standard year
£10,050
Foundation year
£10,050
Professional training year
£2,010
Standard year
£28,100
Foundation year
£28,100
Professional training year
£2,010

Professional training placement year fees are approximately 20% of the full-time UK fees of the academic year in which you undertake your placement.

Payment schedule

  • Students with Tuition Fee Loan: the Student Loans Company pay fees in line with their schedule. 
  • Students without a Tuition Fee Loan: pay their fees either in full at the beginning of the programme or in two instalments as follows:
    • 50% payable 10 days after the invoice date (expected to be during October to November of each academic year).
    • 50% in January of the same academic year. 
  • The exact date(s) will be on invoices. Students on part-time programmes where fees are paid on a modular basis cannot pay fees by instalment. 
  • Sponsored students: must provide us with valid sponsorship information that covers the period of study. 

Additional costs

Safety equipment and/or uniform: £24 – equipment pack (includes laboratory coat, laboratory glasses, laboratory books, pen and bag). You are responsible for the costs associated with maintaining/washing/replacing any equipment.

Placements and study abroad

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Our award-winning Professional Training placement scheme gives you the chance to spend a year in industry, either in the UK or abroad.

We have thousands of placement providers to choose from, most of which offer pay. So, become one of our many students who have had their lives and career choices transformed.

Statistics

Placement Statistics

92%

of students who did a placement entered into graduate level employment*

80%

of placements are paid, with 60% paying between £18,000 - £30,000

48%

of our students have been offered a graduate role from their placement provider**

*Graduate Outcomes 2025, HESA

**Professional training year returners survey 2024

Biomedical science placements

You can choose to work for a range of employers, including pharmaceutical companies, NHS hospitals and academic institutions, to practise and enhance your skills.

We offer placements in IBMS-approved laboratories, which means that, once the placement is completed, you can register with the Health and Care Professions Council (HCPC) as a biomedical scientist.

Previous students have gained placements with:

  • AstraZeneca UK
  • Birkbeck–UCL Institute of Structural and Molecular Biology
  • Deloitte
  • GSK
  • Sanofi
  • Syngenta
  • Synnovis
  • UK Health Security Agency
  • UK NHS trusts and pathology services.

We also have an extensive number of partner institutions that offer placements exclusively to Surrey students, giving you access to research laboratories across the world. Explore your options via our search tool and find out more about our current partner universities and organisations.

You can also develop your transferrable skills by working in other fields, such as scientific communications, marketing, and data analysis.

Applying for placements

Students are generally not placed by the University. But we offer support and guidance throughout the process, with access to a vacancy site of placement opportunities.

Find out more about the application process.

"I had a fantastic time during my placement at AstraZeneca. I developed invaluable professional and scientific skills, and it inspired me to pursue a career in biopharmaceutical research and development."

Fien van der Graaf Biomedical Science BSc (Hons) Graduate profile

Study and work abroad

Studying at Surrey opens a world of opportunity. Take advantage of our study and work abroad partnerships, explore the world, and expand your skills for the graduate job market. 

The opportunities abroad vary depending on the course, but options include study exchanges, work/research placements, summer programmes, and recent graduate internships. Financial support is available through various grants and bursaries, as well as Student Finance. 

Perhaps you would like to volunteer in India or learn about Brazilian business and culture in São Paulo during your summer holidays? With 140+ opportunities in 36+ different countries worldwide, there is something for everyone. Explore your options via our search tool and find out more about our current partner universities and organisations. 

Register your interest

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Apply

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Apply for your chosen course online through UCAS, with the following course and institution codes.

Institution code S85

Course UCAS code
BSc (Hons) B900
BSc (Hons) with placement B902
BSc (Hons) with foundation year B903
BSc (Hons) with foundation year and placement B904
MSci (Hons) B905
MSci (Hons) with placement B906

Terms and conditions

When you accept an offer to study at the University of Surrey, you will be agreeing to follow our policies and procedures, student regulations, and terms and conditions.

We provide these terms and conditions at the offer stage. You will be asked to accept these when you accept the offer made to you. You will be provided with these terms and conditions again at registration by way of reminder.

Disclaimer

This online prospectus has been published in advance of the academic year to which it applies.

Whilst we have done everything possible to ensure this information is accurate; some changes may happen between publishing and the start of the course.