Page 315 - Postgraduate Catalog 2026-27
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 MGPM 503 Molecular Pathology   MGPM 505 AI, Bioinformatics   technologies. Through lectures,   improve patient outcomes. It covers   of faculty supervision. Students
 and Data Analysis   discussions, and computational labs,   the different mechanisms of drug-gene   will formulate a research question,
 Credit Hours: 3   students will explore how omics
 Credit Hours: 3    data are generated, analyzed, and   interactions, implementation of science,   review relevant literature, design and
 Prerequisite: None   polygenic risk, and the integration   implement appropriate methodologies,
 Prerequisite: None   interpreted to personalize treatment   of multi-omics data in precision   analyze the data, and present their
 This course offers an in-depth   and understand disease mechanisms.   therapeutics. Through case-based   findings in both a written thesis and an
 exploration of molecular pathology,   This course introduces fundamental   Students will engage in multi-omics   learning and real-world examples,   oral defense. The course emphasizes
 emphasizing the molecular   concepts, tools, and techniques in   data analysis workflows and complete   students will examine the challenges   critical thinking, scientific integrity, and
 mechanisms underlying human   bioinformatics. It emphasizes hands-on   an applied project simulating clinical or   and opportunities in implementing   the translation of genomic research
 diseases. Students will examine the   experience with databases and tools   translational research.   pharmacogenomics in diverse   into clinical and public health contexts.
 pathogenesis of various diseases,   used for analyzing biological data,   populations and healthcare systems.
 including cancer, cardiovascular,   such as genome browsers, mutation
 neurological, and infectious diseases,   databases, protein function resources,   MGPM 507 Genomic Diagnostics      MGPM 699B Thesis in Genomics
 through the lens of molecular biology.   and sequencing analysis platforms.   MGPM 609 Cancer Precision
 The course integrates theoretical   Students will explore next-generation   Credit Hours: 3    and Precision Medicine – B
 knowledge with practical applications,   sequencing (NGS), RNA-seq, Ch   Prerequisite: MGPM 503   Medicine   Credit Hours: 6
 focusing on diagnostic techniques,   This course introduces fundamental   Credit Hours: 2
 biomarker discovery, and the role of   concepts, tools, and techniques in   This course provides an in-depth   Prerequisite: MGPM 669A
 molecular pathology in personalized   bioinformatics. It emphasizes hands-  exploration of the principles and   Prerequisite: MGPM 504   This course offers students the
 medicine. Students will engage with   on experience with databases and   applications of genomic diagnostics in   This course will provide an in-depth   opportunity to conduct independent
 current research and case studies to   tools used for analyzing biological   clinical practice. Students will examine   understanding of the molecular and   research in the field of genomics and
 understand the translational aspects of   data, such as genome browsers,   the molecular basis of genetic variation,   cellular mechanisms underlying the   precision medicine under the guidance
 molecular pathology in clinical settings.   mutation databases, protein function   mutation analysis, and the role of   development of cancer. In addition to   of faculty supervision. Students
 resources, and sequencing analysis   genomic markers in the diagnosis of   the theoretical basis of cancer biology,   will formulate a research question,
 platforms. Students will explore   hereditary diseases and cancer.   the course will also focus on the   review relevant literature, design and
 MGPM 504 Advanced Genetics   next-generation sequencing (NGS),   Through a combination of theoretical   application of theoretical knowledge   implement appropriate methodologies,
 RNA-seq, ChIP-seq, pathway analysis,
 Credit Hours: 3    and epigenomics. The course includes   instruction and practical laboratory   in the development of personalized   analyze the data, and present their
        cancer therapies that can be translated
                                      findings in both a written thesis and an
 sessions, students will learn essential
 Prerequisite: None   programming with R/Bioconductor   diagnostic techniques, including   into novel therapeutic strategies. The   oral defense. The course emphasizes
 and Galaxy platform usage. Students   PCR, Sanger sequencing, and   course will also provide insights into   critical thinking, scientific integrity, and
 This course offers an advanced   will gain practical experience in data   the latest research in this dynamic field,   the translation of genomic research
 exploration of the principles and   visualization, genome assembly,   bioinformatics-based data analysis. The   including current clinical diagnostics,   into clinical and public health contexts.
 applications of modern genetics   and integrated genomic analyses   course emphasizes the interpretation   methods/technologies, and the
 of genomic data, clinical reporting,
 in health and disease. It builds on   applicable in research and clinical   novel treatment of cancers through
 foundational genetic concepts to   settings. IP-seq, pathway analysis, and   and the ethical implications of genetic   personalized medicine tools. Seminars
 testing in precision medicine.
 investigate complex gene regulation,   epigenomics. The course includes   together with researchers during the
 genomic architecture, rare and   programming with R/Bioconductor   Laboratory sessions will equip students   course will provide students with
 polygenic disease genetics, and   and Galaxy platform usage. Students   with hands-on experience in DNA   an opportunity to discuss ongoing
 personalized genomic medicine.   will gain practical experience in data   extraction, PCR amplification, and   research in the field of cancer biology
 The course covers human genome   visualization, genome assembly, and   data analysis using publicly available   and approach and formulate scientific
 structure and variation, epigenetics,   integrated genomic analyses applicable   genomic databases. Case studies   questions relevant to cancer precision
 transcriptomics, and functional   in research and clinical settings.   will reinforce the clinical relevance of   medicine.
 genomics. Emphasis is placed on   diagnostic findings, preparing students
 advanced technologies such as next-     to effectively communicate genomic
 generation sequencing (NGS), CRISPR   MGPM 506 Applied Precision   information in clinical settings.
 gene editing, single-cell analysis, and   Medicine   MGPM 699A Thesis in Genomics
 bioinformatic tools for interpreting   MGPM 508 Advanced   and Precision Medicine – A
 genomic data. Case-based approaches   Credit Hours: 3    Pharmacogenomics   Credit Hours: 3
 involving rare genetic disorders and   Credit Hours: 2
 common complex diseases are used   Prerequisite: MGPM 504   Prerequisite: Completion of 15 credit
 to illustrate clinical applications.   This course offers a hands-on,   Prerequisite: MGPM 504   hours
 Students will develop the skills to   integrated approach to the principles   This course explores advanced topics
 analyze, critique, and interpret genomic   and practices of precision medicine,   in pharmacogenomics, focusing on the   This course offers students the
        opportunity to conduct independent
 datasets, and understand the ethical   with a focus on the application of   application of genomic technologies
 and societal implications of advanced   genomic, transcriptomic, proteomic,   to personalize drug therapy and   research in the field of genomics and
        precision medicine under the guidance
 genetic testing.   epigenomic, and metabolomic

 Abu Dhabi University | Postgraduate Catalog 2026 - 2027  Abu Dhabi University | Postgraduate Catalog 2026 - 2027
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