ºÚÁÏÕýÄÜÁ¿

BSc Hons Immunology & Microbiology

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Key facts

  • UCAS Code: CC59
  • Accreditation: Royal Society of Biology
  • Study mode and duration: 4 years, full-time (5 years for the MSci routes)
  • 1st in UK for Pharmacology & Pharmacy
    2nd in UK for Subjects Allied to Medicine

  • Flexible degree: apply once and choose from 11 named degree routes at the end of Year 2

Study with us

Explore how the immune system protects the body, how microorganisms cause disease and interact with their hosts, and how these processes shape infection, immunity and health. This degree combines immunology and microbiology with practical laboratory experience and research-led teaching to help you understand the mechanisms that shape human health throughout life.

  • gain hands-on laboratory experience from Year 1 and develop practical, analytical and scientific communication skills throughout your degree
  • benefit from a flexible degree structure, with opportunities to change your route at the end of Year 2
  • learn from active researchers and complete an independent research project in Year 4
  • graduate with a degree

The Place of Useful Learning

UK University of the Year

Daily Mail University of the Year Awards 2026

Scottish University of the Year

The Sunday Times' Good University Guide 2026

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Why this course?

Immunology and microbiology help us understand how microorganisms affect health and disease, and how the immune system recognises and responds to them.

Immunology explores how the immune system recognises and responds to infection, damaged or abnormal cells, supports tissue repair and pregnancy, and how inappropriate immune responses can contribute to conditions such as allergy and autoimmunity.

Microbiology explores the lives of bacteria, viruses and fungi, including how they grow, cause disease and interact with their environment, as well as how beneficial microorganisms can be exploited in biotechnology.

Why combine the study of immunology & microbiology?

Studying immunology and microbiology together gives you a deeper understanding of infection and disease from complementary perspectives. You'll explore how microorganisms interact with the body and how the immune system recognises and responds to them.

In infectious disease, for example, you can examine how pathogens cause disease, survive within the body and evade immune defences, alongside the immune mechanisms that detect and eliminate them.

You'll also investigate how inflammation contributes to disease and how host-microbe interactions shape health and infection outcomes, informing the development of vaccines, diagnostics and new approaches to disease prevention.

In Years 1 and 2, you'll study immunology and microbiology alongside biochemistry and pharmacology. This gives you experience of all four subjects before you choose your degree route at the end of Year 2.

If you choose Immunology & Microbiology, you'll develop both subjects in greater depth in Years 3 and 4 and complete an independent research project in your final year.

Throughout the course, you'll also develop practical laboratory skills, data analysis, scientific writing and presentation skills.

THE Awards 2019: UK University of the Year Winner

Years 1 and 2 are shared across all routes, giving you the flexibility to choose your degree pathway at the end of Year 2.

BSc Joint Honours Degrees

BSc Honours Degrees

MSci Degrees

Summer research & study abroad

Many students spend the summer before their final year working full-time on a research project in one of our university laboratories, alongside the research group.

These are usually funded by a professional society or a charity. Our students have held studentships from the Biochemical Society, the Microbiology Society, the British Pharmacological Society, Medical Research Scotland and the Carnegie Trust.

You can also apply to study abroad, or to take part in a laboratory-based research exchange.

What you’ll study

Year 1

You'll study cells and their molecules, organisms and disease, and bio-organic chemistry, alongside a practical module running across both semesters.

Laboratory work starts early in the course, supported by workshops, lectures and tutorials in statistics, scientific writing and presentation.

You'll also choose 20 credits of elective modules from across the University.

Year 2

You'll be introduced to biochemistry, immunology, microbiology and pharmacology, with practical work across all four subjects.

Studying all four before you specialise helps you understand how different areas of science tackle the same biological and medical challenges.

At the end of Year 2, you'll confirm the degree route you want to follow. You can continue to Biochemistry & Immunology, choose another Joint Honours combination, transfer to Biomedical Science or, if eligible, move to an integrated MSci route.

Years 3 & 4

If you continue on the Immunology & Microbiology degree route, you'll specialise in these subjects from Year 3.

You'll explore the cellular and molecular mechanisms that control immune defence, inflammation and immune-mediated disease, alongside how microorganisms grow, adapt, interact with their environment, hosts and cause disease. Each subject combines core scientific principles with their real-world applications.

In Year 4, you'll explore advanced topics and explore areas such as infection and immunity, host–microbe interactions, inflammation, microbial pathogenesis, epidemiology, antimicrobial resistance, genomics and bioinformatics.

Honours research project

Your Honours research project is the centrepiece of the degree. It's a substantial supervised research project, written up as a thesis and presented to staff and fellow students.

You'll rank the projects that interest you and be matched to one. Projects may involve laboratory research in one of our research groups, systematic reviews and meta-analyses of published evidence, analysis of large datasets, or science communication and knowledge exchange.

Each project starts with a defined question or problem. Depending on the project, you might generate new data, analyse existing data, combine evidence from published studies, or apply scientific knowledge to a defined audience or challenge. You'll interpret and evaluate your findings and draw conclusions from your work.

Our facilities

Practical work runs throughout the degree. You'll learn in our teaching laboratories from Year 1, with your laboratory competency assessed and signed off as you progress. This gives you hands-on experience across the biosciences before you specialise.

Teaching is supported by laboratory demonstrators, including academic and technical staff.

If you undertake a laboratory-based final-year project, you'll join one of our research groups, working alongside research students and staff.

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Our department holds a Silver Athena Swan award, recognising our commitment to gender equality and creating an inclusive environment where all students can thrive.
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Course content

Semester 1 & 2

Being a Biomolecular Scientist 1 (40 credits)

A two-semester practical module that underpins the content of the lecture modules Cells & their Molecules and Organisms & Disease in Semesters 1 and 2 by practical experience, lectures and workshops.

In laboratory sessions you'll learn generic laboratory skills to help build core skills in biological chemistry (biochemistry, immunology, pharmacology), microscopy, microbiology and physiology.

Workshops and lectures also cover the statistics and calculations that underpin biomedical research, and you'll learn to write abstracts and design a research poster using your own findings.

Cells & their Molecules (20 credits)

This module introduces the cell as the basic unit of life. It covers the structure and function of cells, both generic and specialised, and the molecules inside them that drive their activity and their dysfunction. You will study how DNA carries coding information, how cells generate and distribute energy, how protein regulation governs cellular activity, how signals pass from the membrane to the nucleus when a cell responds to an external stimulus, and how the control of cell division underpins health and disease.

Organisms & Disease (20 credits)

This module introduces the biology of whole organisms. It covers evolution and the diversity of life, how organisms develop from a single fertilised cell, and how they interact with and respond to their environment. You will study the main types of infectious agent, how they invade the body and how the immune system responds, and the organisation of mammalian organ systems and how their dysfunction leads to disease.

Bio-Organic Chemistry (20 credits)

This module will strengthen the awareness of nucleic acids, proteins, carbohydrates and natural products at the molecular level, with special emphasis on demonstrating how fundamentals of organic chemistry lead to a precise understanding of the origins of biomolecular shapes, interactivity and mechanism. By the end of the module, it is intended that, for example, students will be able to associate names of amino acids with their molecular structures, functional group chemistry and stereochemical impact on protein shape.

Elective modules

You'll also choose 20 credits of elective study. Electives are available from across the University, but these are recommended:

Use & Abuse of Drugs in Society (10 credits)

This module introduces pharmacology through the drugs people actually take. It covers medicines used in cardiovascular disease, diabetes, obesity, inflammatory disease, peptic ulcer, pain, cancer and mental health, and the mechanisms by which each produces its effect, alongside complementary, herbal and traditional medicines.

You'll also study the health risks of commonly abused drugs such as tobacco, alcohol, heroin, cocaine and hallucinogens, the controversies surrounding drug testing in animals and humans, and the use of banned substances in sport.

Pharmaceutical Sciences & Drug Development (10 credits)

After completion of the module you will be able to:

  • understand basic physiology and how drugs work affect this.
  • understand fundamental aspects of pharmacology and how drugs are tested in experimental models and man.
  • have a knowledge of drug discovery from a historical and modern perspective.
  • understand how drug delivery and distribution affects the effectiveness of drugs.
  • have a knowledge that drug development is not always associated with treatment of disease

Semester 1 & 2

Being a Biomolecular Scientist 2 (40 credits)

A year-long practical module that develops laboratory, analytical and professional skills required by each discipline. You’ll gain hands-on experience in biochemistry, immunology, microbiology and pharmacology, supported by practical competency checks. Workshops cover statistics, ethics, data analysis and presentation skills, alongside student-led sessions exploring science in the media, technology and society.

Introduction to Biochemistry (20 credits)

This module covers the fundamentals of biochemistry and cell biology across five themes. You will study how genes are expressed and how that control fails in disease, and how human genetic variation is used in medicine and forensics. You will look at the structure and function of proteins, lipids and carbohydrates and how proteins work as enzymes, how cells obtain energy and how metabolic pathways are regulated in health and disease, and the pathways that control cell growth and death.

Introduction to Immunology (20 credits)

This module introduces the fundamental concepts of immunology. You will study the anatomy of the immune system and the cells within it, the difference between innate and adaptive immunity, and how immune cells recognise antigens. You will look at humoral and cell-mediated responses, how the body responds to bacteria, parasites and viruses, and how B and T cells are activated. The module also covers immune tolerance, and what happens when responses become harmful, in autoimmunity, immunodeficiency, allergy and hypersensitivity.

Introduction to Microbiology (20 credits)

This module introduces the fundamental concepts of microbiology and the ways microorganisms shape human, animal and planetary health. You will study how microbes are classified and how they differ from one another, their roles in health and disease, and how infection is controlled at both individual and population level. The module also covers the part microorganisms play in climate regulation and ecosystem function, how they adapt to hostile environments, and how they can be harnessed for biotechnology in medicine, industry and sustainable manufacturing.

Introduction to Pharmacology (20 credits)

This module introduces how drugs act on the body and what the body does to drugs. You will study the principles of drug and receptor interaction and four main targets drugs act on: receptors, enzymes, ion channels and transporter proteins. You will cover introductory principles of toxicology, including exposure, dose and mechanisms of toxicity; the pharmacology of the autonomic nervous system and the heart; and of the central nervous system. The module ends with pharmacokinetics, how drugs are absorbed, distributed, metabolised and eliminated, and the role of the pharmacologist in developing new medicines.

Being a Biomolecular Scientist 3 (40 credits)

A year-long practical module that develops your technique in the subjects you've chosen. You'll take the laboratory blocks matching your degree (biochemistry, biomedical science, immunology, microbiology or pharmacology) across twenty three-hour sessions, each with a competency check. Workshops prepare you for the laboratory work and take you through the analysis afterwards, alongside sessions on skills that apply across every discipline.

Fundamental Immunology (20 credits)

This module introduces the fundamental principles of immunology, exploring how the immune system recognises, responds to, and remembers pathogens. Students will develop an understanding of the cellular and molecular mechanisms underlying innate and adaptive immune responses, immune regulation, and host defence. The module also introduces experimental approaches used to investigate immune function and incorporates skills workshops to develop scientific communication, critical analysis, and data interpretation, preparing students for further study and careers in the biological and biomedical sciences.

Biomedical Immunology (20 credits)

The module is intended to integrate various molecular and cellular interactions of the immune system into an understanding of how the processes relate to clinical immunology.

Fundamental Microbiology (20 credits)

This module covers the molecular and cellular processes that govern how microorganisms grow, evolve, and behave, in processes fundamental to human health and wellbeing. You will study microbial genomics and how genomic technologies reveal microbial function, adaptation and diversity, and the mechanisms driving microbial evolution and antimicrobial resistance. The module covers microbial growth, survival and control, including how growth and killing are modelled and predicted in clinical, industrial and environmental settings. You will also study how gene regulation and metabolism integrate environmental signals with cellular form and function, and how microorganisms interact with one another in communities.

Biomedical Microbiology (20 credits)

This module covers how microbial pathogens cause disease in humans, and how they can be identified and controlled. You will study the classification and identification of clinically important bacteria, viruses and fungi, their structure and growth, the molecular mechanisms by which they cause disease, and their epidemiology, treatment and control. Pathogens are grouped by the site of infection, so you can compare how very different organisms establish disease.

Semester 1 & 2

Being a Biomolecular Scientist 4 (40 credits)

A year-long research project under academic supervision. Projects fall into four categories: experimental research, data science, literature-based work, and industrial or societal projects. You'll work on your project through the year, analyse and interpret your results, present your findings, and write a thesis, including a statement of your project's impact and how it relates to wider societal, health and environmental challenges.

Advanced Immunology (20 credits)

This module covers how the immune system responds to infection, and how that understanding informs vaccine design. You'll study protective immunity to viruses, bacteria, protozoan parasites, fungi and prions, and compare the strategies different pathogens use to evade or subvert the response. The module looks at how immune responses can both protect the host and cause disease, and covers the principles of vaccination, including adjuvants, routes of delivery, whole-organism and molecular approaches, and personalised vaccines. Workshops develop your ability to interpret primary research data and figures.

Clinical Immunology (20 credits)

This module covers the immune responses underlying major immunological diseases and how understanding them informs treatment. You'll study autoimmunity and the breakdown of immune tolerance, the immune response to transplantation and to blood transfusion, tumour immunology and how cancers evade immune attack, hypersensitivity and allergic disease, and immunodeficiency. Throughout, you will look at how immunotherapeutic approaches are developed from an understanding of the underlying disease mechanisms.

Advanced Microbiology (20 credits)

This module covers a detailed understanding of complex microbial systems, building from high-resolution within-cell processes to how microbes are essential components of global biogeochemical cycles. You will study microbial genomics and gain an awareness of the complexity of microbe-microbe interactions, microbial cell structures, different developmental in microbes and the role of microbiomes for humans and the environment. Each topic is built around recent scientific research and involves developing the ability to critique published data and interpret primary literature.

Clinical Microbiology (20 credits)

This module covers the principles of clinical microbiology: how infections are diagnosed, treated, tracked and controlled. You will study how microorganisms are identified in a clinical setting, using both genotyping and culture-based approaches, and the principles of epidemiology in infectious disease. The module covers how antimicrobial agents work and how resistance develops, including the part biofilms play, and how infection is controlled in immunocompromised patients.

Learning & teaching

You'll be taught through a mix of lectures, laboratories, workshops, tutorials and group work by active researchers across biochemistry, immunology, microbiology and pharmacology.

Throughout your studies, you'll develop practical laboratory, data analysis and scientific communication skills, and have opportunities to hear from visiting researchers, clinicians and industry professionals through guest lectures, careers events and research seminars.

Assessment

Assessment is varied and reflects the skills you'll develop throughout the course. Alongside exams, you may complete laboratory reports, data analysis exercises, presentations, practical assessments and project-based assignments, giving you different ways to demonstrate your knowledge and scientific skills.

You'll develop laboratory skills through practical work, with competency in laboratory methods assessed as you progress. This helps build the practical experience needed for later study and research.

You'll know the assessment criteria before you begin and receive feedback to help you improve future work. If you need adjustments to how you're assessed, these can be arranged through the Disability & Wellbeing Service and applied across your modules.

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Entry requirements

Required subjects are shown in brackets.

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Highers

Standard entry requirements*:

Year 1 entry: AABB/AAAC

(two sciences – Biology/Human Biology B and Chemistry B; Maths and English National 5 B)

Minimum entry requirements**:

ABBB /AABC

(Biology/Human Biology B, Chemistry B, Maths and English National 5 B)

Advanced Highers

Year 2 entry: BB

(Chemistry B, Biology/ Human Biology B, plus Year 1 above)

A Levels

Standard entry requirements*:

Year 1 entry: BBB

(two sciences required, at least one of which must be Biology or Chemistry; GCSE Chemistry 6/B (if not at A Level); GCSE Maths 6/B, GCSE English Language 6/B or Literature 6/B)

Year 2 entry: BBB

(Chemistry and Biology, GCSE Maths 6/B, and GCSE English Language 6/B or English Literature 6/B)

International Baccalaureate

Standard entry requirements*:

Year 1 entry: 30

(Two science subjects at HL5 at least one of which must be Biology or Chemistry. Maths SL5 and English SL5)

Year 2 entry:
30

(Chemistry and Biology, one at HL6, the other at HL5. Maths SL5 and English SL5)

HNC/HND

Year 1 entry: HNC, Graded Unit B
Year 2 entry: HNC, Graded Unit A or HND, Graded Units BB
Year 3 entry: HND, Graded Units AB

International students

View the entry requirements for your country.

Deferred entry

Accepted

*Standard entry requirements

Offers are made in accordance with specified entry requirements although admission to undergraduate programmes is considered on a competitive basis and entry requirements stated are normally the minimum level required for entry.

Whilst offers are made primarily on the basis of an applicant meeting or exceeding the stated entry criteria, admission to the University is granted on the basis of merit, and the potential to succeed. As such, a range of information is considered in determining suitability.

In exceptional cases, where an applicant does not meet the competitive entry standard, evidence may be sought in the personal statement or reference to account for performance that was affected by exceptional circumstances, and which in the view of the judgement of the selector would give confidence that the applicant is capable of completing the programme of study successfully.

**Minimum entry requirements

Find out if you can benefit from this type of offer.

Back to course

Entry requirements

Required subjects are shown in brackets.

Go back
Highers

Standard entry requirements*:

Year 1 entry: AABB/AAAC

(Biology/Human Biology B and Chemistry B; Maths and English National 5 B)

Minimum entry requirements**:

ABBB /AABCC

(Biology/Human Biology B, Chemistry B, Maths and English National 5 B)

Advanced Highers

Year 2 entry: BB

(Chemistry B, Biology/ Human Biology B, plus Year 1 above)

A Levels

Standard entry requirements*:

Year 1 entry: BBB

(two sciences required, at least one of which must be Biology or Chemistry; GCSE Chemistry 6/B (if not at A Level); GCSE Maths 6/B, GCSE English Language 6/B or Literature 6/B)

Year 2 entry: BBB

(Chemistry and Biology, GCSE Maths 6/B, and GCSE English Language 6/B or English Literature 6/B)

International Baccalaureate

Standard entry requirements*:

Year 1 entry: 30

(Biology HL5, Chemistry HL5, Maths SL5 and English SL5)

Year 2 entry:
30

(Chemistry and Biology, one at HL6, the other at HL5. Maths SL5 and English SL5)

HNC/HND

Year 1 entry: HNC, Graded Unit B
Year 2 entry: HNC, Graded Unit A or HND, Graded Units BB
Year 3 entry: HND, Graded Units AB

International students

View the entry requirements for your country.

Deferred entry

Accepted

*Standard entry requirements

Offers are made in accordance with specified entry requirements although admission to undergraduate programmes is considered on a competitive basis and entry requirements stated are normally the minimum level required for entry.

Whilst offers are made primarily on the basis of an applicant meeting or exceeding the stated entry criteria, admission to the University is granted on the basis of merit, and the potential to succeed. As such, a range of information is considered in determining suitability.

In exceptional cases, where an applicant does not meet the competitive entry standard, evidence may be sought in the personal statement or reference to account for performance that was affected by exceptional circumstances, and which in the view of the judgement of the selector would give confidence that the applicant is capable of completing the programme of study successfully.

**Minimum entry requirements

Find out if you can benefit from this type of offer.

Contextual Admissions for Widening Access

We want to increase opportunities for people from every background.

ºÚÁÏÕýÄÜÁ¿ selects our students based on merit, potential, and the ability to benefit from the education we offer. We look for more than just your grades. We consider the circumstances of your education and will make lower offers to certain applicants as a result.

Find out if you can benefit from this type of offer.

University preparation programme for international students

We offer international students (non-UK/Ireland) who do not meet the academic entry requirements for an undergraduate degree at ºÚÁÏÕýÄÜÁ¿ the option of completing an  in Business and Social Sciences at the . ​

Upon successful completion, you can progress to your chosen degree at the University of ºÚÁÏÕýÄÜÁ¿.

International students

We've a thriving international community with students coming here to study from over 140 countries across the world. Find out all you need to know about studying in Glasgow at ºÚÁÏÕýÄÜÁ¿ and hear from students about their experiences.

Visit our international students' section

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Fees & funding

All fees quoted are for full-time courses and per academic year unless stated otherwise.

Fees may be subject to updates to maintain accuracy. Tuition fees will be notified in your offer letter.

All fees are in £ sterling, unless otherwise stated, and may be subject to revision.

Annual revision of fees

Students on programmes of study of more than one year (or studying standalone modules) should be aware that the majority of fees will increase annually. The University will take a range of factors into account, including, but not limited to, UK inflation, changes in delivery costs and changes in Scottish and/or UK Government funding. Changes in fees will be published on the University website in October each year for the following year of study. Any annual increase will not exceed 10%, and in practice this may be lower (for example,. a 6% increase was applied in 2027/28 academic year).

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Scotland

To be confirmed.

Fees for students domiciled in Scotland are subject to confirmation by the Scottish Funding Council.

Scottish undergraduate students undertaking an exchange for a semester/year will continue to pay their normal tuition fees at ºÚÁÏÕýÄÜÁ¿ and will not be charged fees by the overseas institution.

England, Wales & Northern Ireland

£9,790

Fees for students domiciled in the Rest of the UK are subject to Parliamentary approval.

Republic of Ireland

If you are an Irish citizen and have been ordinary resident in the Republic of Ireland for the three years prior to the relevant date, and will be coming to Scotland for Educational purposes only, you will meet the criteria of England, Wales & Northern Ireland fee status. For more information and advice on tuition fee status, you can visit the . Find out more about the University of ºÚÁÏÕýÄÜÁ¿'s fee assessments process.

International

£29,350

University preparation programme fees

International students can find out more about the  of studying a university preparation programme at the University of ºÚÁÏÕýÄÜÁ¿ International Study Centre.

Additional costs

Lab coats and safety goggles:

  • approximately £25

International students: International students may have associated visa and immigration costs. Please see student visa guidance for more information.

Available scholarships

Take a look at our scholarships search for funding opportunities.

Please note: All fees shown are annual and may be subject to an increase each year. Find out more about fees.

Back to course

Fees & funding

All fees quoted are for full-time courses and per academic year unless stated otherwise.

Fees may be subject to updates to maintain accuracy. Tuition fees will be notified in your offer letter.

All fees are in £ sterling, unless otherwise stated, and may be subject to revision.

Annual revision of fees

Students on programmes of study of more than one year (or studying standalone modules) should be aware that the majority of fees will increase annually. The University will take a range of factors into account, including, but not limited to, UK inflation, changes in delivery costs and changes in Scottish and/or UK Government funding. Changes in fees will be published on the University website in October each year for the following year of study. Any annual increase will not exceed 10%, and in practice this may be lower (for example,. a 6% increase was applied in 2027/28 academic year).

Go back
Scotland

To be confirmed.

Fees for students domiciled in Scotland are subject to confirmation by the Scottish Funding Council.

Scottish undergraduate students undertaking an exchange for a semester/year will continue to pay their normal tuition fees at ºÚÁÏÕýÄÜÁ¿ and will not be charged fees by the overseas institution.

England, Wales & Northern Ireland

To be confirmed. 

Fees for students domiciled in the Rest of the UK are subject to Parliamentary approval.

Republic of Ireland

If you are an Irish citizen and have been ordinary resident in the Republic of Ireland for the three years prior to the relevant date, and will be coming to Scotland for Educational purposes only, you will meet the criteria of England, Wales & Northern Ireland fee status. For more information and advice on tuition fee status, you can visit the . Find out more about the University of ºÚÁÏÕýÄÜÁ¿'s fee assessments process.

International

£31,100

University preparation programme fees

International students can find out more about the  of studying a university preparation programme at the University of ºÚÁÏÕýÄÜÁ¿ International Study Centre.

Additional costs

Lab coats and safety goggles:

  • approximately £25

International students: International students may have associated visa and immigration costs. Please see student visa guidance for more information.

Available scholarships

Take a look at our scholarships search for funding opportunities.

Please note: All fees shown are annual and may be subject to an increase each year. Find out more about fees.

How can I fund my studies?

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Students from Scotland

Fees for students who meet the  in Scotland, you may be able to apply to the Student Award Agency Scotland (SAAS) to have your tuition fees paid by the Scottish government. Scottish students may also be eligible for a bursary and loan to help cover living costs while at University.

For more information on funding your studies have a look at our University Funding page.

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Students from England, Wales & Northern Ireland

We have a generous package of bursaries on offer for students from England, Northern Ireland and Wales:

You don’t need to make a separate application for these. When your place is confirmed at ºÚÁÏÕýÄÜÁ¿, we’ll assess your eligibility. Take a look at our scholarships search for funding opportunities.

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International Students

We have a number of scholarships available to international students. Take a look at our scholarship search to find out more.

Glasgow is Scotland's biggest & most cosmopolitan city

Our campus is based right in the very heart of Glasgow. We're in the city centre, next to the Merchant City, both of which are great locations for sightseeing, shopping and socialising alongside your studies.

Life in Glasgow
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Careers

Immunology and microbiology open up careers in scientific research, biotechnology, public health, infectious disease, diagnostics and the wider life sciences.

With immunology, you could work in infection and immunity, inflammation, autoimmune disease, allergy, cancer immunology, vaccine research or immunotherapy. Microbiology can lead to careers in infectious disease research, epidemiology, antimicrobial resistance, industrial and environmental microbiology, food, brewing, water and pharmaceutical microbiology, or microbiological quality control.

Combining the two subjects is particularly valuable where microorganisms and immune responses intersect.

You could investigate how pathogens cause disease and evade immune defences, study how the immune system responds to infection, contribute to vaccine development, or explore how host-microbe interactions influence health and disease.

Graduates work in pharmaceutical and biotechnology companies, universities and research institutes, public health and government laboratories, clinical and diagnostic laboratories, and organisations involved in microbiological testing, manufacturing and quality assurance.

The degree also develops transferable skills in data analysis, problem-solving, evaluating evidence and scientific communication, which are valued in careers such as clinical trials, regulatory affairs, pharmacovigilance, patent law, medical writing, scientific sales and science policy.

Many graduates continue into postgraduate study, including Masters degrees and PhDs, while others complete teacher training and go on to teach science.

Study part-time

Some students already working in the life sciences study part-time alongside their job, completing the degree over a longer period. The degree can provide the formal qualification and research training needed to support career progression.

Personal development adviser

From your first week, you'll have a Personal development adviser – an academic who supports you throughout your undergraduate studies. You'll meet regularly to discuss your academic progress, feedback and future career options.

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Apply

Start date: Sep 2026

Immunology & Microbiology (1 year entry)

full-time
Start date: Sep 2026

UCAS Applications

Apply through UCAS if you are a UK applicant. International applicants may apply through UCAS if they are applying to more than one UK University.

Direct Applications

Our Direct applications service is for international applicants who wish to apply to the University of ºÚÁÏÕýÄÜÁ¿ at this time.

Start date: Sep 2026

Immunology & Microbiology (2 year entry)

full-time
Start date: Sep 2026

UCAS Applications

Apply through UCAS if you are a UK applicant. International applicants may apply through UCAS if they are applying to more than one UK University.

Direct Applications

Our Direct applications service is for international applicants who wish to apply to the University of ºÚÁÏÕýÄÜÁ¿ at this time.

Start date: Sep 2027

Immunology & Microbiology (1 year entry)

full-time
Start date: Sep 2027

UCAS Applications

Apply through UCAS if you are a UK applicant. International applicants may apply through UCAS if they are applying to more than one UK University.

Direct Applications

Our Direct applications service is for international applicants who wish to apply to the University of ºÚÁÏÕýÄÜÁ¿ at this time.

Start date: Sep 2027

Immunology & Microbiology (2 year entry)

full-time
Start date: Sep 2027

UCAS Applications

Apply through UCAS if you are a UK applicant. International applicants may apply through UCAS if they are applying to more than one UK University.

Direct Applications

Our Direct applications service is for international applicants who wish to apply to the University of ºÚÁÏÕýÄÜÁ¿ at this time.

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Contact us

Undergraduate Admissions Team

Email: science-ug-admissions@strath.ac.uk

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