Phd in
Molecular Medicine
Doctoral training in molecular medicine, genetics, omics and translational research.

The Ph.D. in Molecular Medicine is an advanced research-based doctoral program combining coursework and thesis.
It prepares candidates to investigate molecular, genetic, biochemical, immunological, and cellular mechanisms of disease, apply modern omics and laboratory technologies, and produce high-quality research contributing to diagnosis, treatment, prevention, and health innovation.
Research-based doctoral program combining advanced coursework and a 24-credit thesis.
Research areas include medical genetics, biochemical genetics, immunology, nanomedicine, and cytogenetics.
Prepares graduates for careers in academia, research institutions, healthcare diagnostics, biotechnology, public health, and science policy.
Strong focus on molecular genetics, omics technologies, disease mechanisms, and translational research.
Training in ethics, bioinformatics, good laboratory practice, research methodology, statistics, and scientific communication.
Curriculum
Structure
First Year – Total Courses
24 Credits
Thesis
24 Credits
Credit Requirement
The requirement of core courses must reach at least 6 credit hours.
requirement for the specialized courses is at least 6 credit hours
requirement for the basic courses is at least 6 credit hours.
The requirement for these advanced specialized courses is at least 6 credit hours.
Target
Audience
MSc Graduates
MSc graduates in molecular medicine, genetics, biomedical sciences, biochemistry, immunology, biotechnology, or related fields.
Medical Doctors
Medical doctors and healthcare professionals interested in molecular diagnosis and translational biomedical research.
Researchers
Researchers and academics aiming to develop advanced expertise in molecular medicine and disease mechanisms.
Laboratory Scientists
Laboratory scientists and diagnostic professionals seeking leadership roles in molecular, genetic, or biomedical laboratories.
Candidates
Candidates interested in medical genetics, biochemical genetics, immunology, nanomedicine, cytogenetics, and translational research.
Research
Areas
Medical Genetics and Molecular Diagnosis
Biochemical Genetics and Metabolic Diseases
Immunology, Inflammation, and Molecular Immunotherapy
Nanomedicine, Cytogenetics, and Translational Molecular Research
Study Plan
Explore the complete list of courses
LEarning
& Research facilities
Advanced molecular medicine laboratories
Computer and bioinformatics facilities
University library and digital learning resources
Research supervision
Seminar rooms
LEarning
Outcomes
Demonstrate advanced understanding of molecular genetics, omics technologies, and molecular mechanisms underlying human diseases.
Translate molecular and genomic findings into research outputs that improve disease diagnosis, treatment, prevention, and health innovation.
Design and conduct ethical biomedical research integrating laboratory techniques, statistical analysis, disease modeling, and molecular investigation.
Produce and defend a hypothesis-driven doctoral thesis while demonstrating scientific integrity, leadership, collaboration, and research responsibility.
