University of Texas at San Antonio

USA
1 Scholarships 30 Programs 3 Degree levels
Masters

Master's in Microbiological Sciences and Immunology

DegreeMasters
FieldMicrobiological Sciences and Immunology.
C

Cost & earnings at University of Texas at San Antonio What students borrow here, and what they go on to earn

You borrow $20,500 median federal debt
You repay $233/mo over 10 years
Graduates earn $57,131 10 yrs after entry
Debt clears in 1.2 yrs of the salary premium
US Department of Education figures See the full breakdown →

The Master of Science in Microbiological Sciences and Immunology at the University of Texas at San Antonio is a research-oriented programme that develops advanced laboratory skills and conceptual understanding of microbes, host immune responses and pathogen–host interactions. It suits students with a strong undergraduate background in biological sciences who aim to pursue research, laboratory-based careers in industry or further doctoral training.

What you'll study

The programme combines advanced coursework, laboratory rotations or a thesis research project and professional development activities. Core topics typically include microbial physiology, molecular microbiology, immunology, host–pathogen interactions, infectious disease mechanisms, and modern laboratory techniques such as molecular cloning, PCR-based methods, next-generation sequencing data analysis, flow cytometry and microscopy.

Students may follow a thesis (research) or non-thesis (coursework and practicum) track. Typical coursework modules and elements include:

  • Advanced Immunology: innate and adaptive immune mechanisms, immune regulation and immunopathology.
  • Molecular Microbiology: microbial genetics, gene regulation, virulence factors and antimicrobial resistance.
  • Pathogenesis and Host–Pathogen Interactions: mechanisms of infection and host defence across bacterial, viral and fungal systems.
  • Techniques in Microbiology and Immunology: hands-on laboratory methods, assay development and data interpretation.
  • Bioinformatics and Genomics: analysis of sequence data, comparative genomics and microbial community profiling.
  • Responsible Conduct of Research and Scientific Communication: ethics, grant writing and presentation skills.

Research training is emphasised: students work in faculty-led laboratories on original projects, defend a thesis (for research-track students) and present their work in seminars. Elective seminars and journal clubs provide exposure to current literature and cross-disciplinary approaches.

Entry requirements

Applicants are expected to hold a bachelor’s degree in biology, microbiology, biochemistry or a closely related field. Admission is competitive and normally requires a solid undergraduate academic record and documented laboratory experience.

  • Academic transcript: satisfactory GPA from an accredited institution in relevant coursework (biology, chemistry, molecular biology).
  • Letters of recommendation: typically two to three references who can comment on academic ability and research potential.
  • Statement of purpose: outlining research interests, career goals and reasons for choosing this programme.
  • Curriculum vitae (CV): summarising education, research experience and technical skills.
  • English language proficiency: required for applicants whose first language is not English; applicants must provide approved proof of proficiency.

Some applicants may be asked to provide additional information such as a writing sample or to interview with faculty. Prerequisite courses in chemistry, molecular biology and calculus/biostatistics are helpful if not already completed.

Career prospects

Graduates from this master’s programme move into a range of laboratory and research-focused careers. Common pathways include:

  • Research scientist or technician roles in academic laboratories and research institutes.
  • Laboratory positions in biotechnology and pharmaceutical companies, including assay development, quality control and diagnostic test development.
  • Clinical and public health laboratory careers in hospitals, public health departments and reference laboratories.
  • Regulatory affairs, scientific project management and technical sales within life-science companies.
  • Further academic training by progressing to PhD programmes or combined clinical degrees for those pursuing clinical research careers.

The programme’s emphasis on hands-on techniques, data analysis and scientific communication helps graduates be ready for both entry-level professional roles and further research training.

Why study at University of Texas at San Antonio

UTSA offers this programme within a research-active department with faculty working across microbiology, immunology and infectious disease areas. Students benefit from access to modern core facilities for genomics, proteomics and imaging, and the opportunity to train with faculty on funded research projects.

Located in San Antonio, the university has strong regional connections to medical centres, public health agencies and a growing biotechnology sector, creating opportunities for collaborative research, internships and translational projects. Small-group mentoring, seminar series and professional development resources support students preparing for careers in research, industry or further academic study.

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Programme details are indicative and may change — always verify current information with the official university website before applying.