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    +91 88943 57155
    Pune, Maharashtra, India

    Duration

    4 Years

    Pharmacy

    Mahayogi Gorakhnath University, Gorakhpur
    Duration
    4 Years
    Pharmacy UG OFFLINE

    Duration

    4 Years

    Pharmacy

    Mahayogi Gorakhnath University, Gorakhpur
    Duration
    Apply

    Fees

    ₹3,50,000

    Placement

    94.5%

    Avg Package

    ₹7,50,000

    Highest Package

    ₹15,00,000

    OverviewAdmissionsCurriculumFeesPlacements
    4 Years
    Pharmacy
    UG
    OFFLINE

    Fees

    ₹3,50,000

    Placement

    94.5%

    Avg Package

    ₹7,50,000

    Highest Package

    ₹15,00,000

    Seats

    140

    Students

    280

    ApplyCollege

    Seats

    140

    Students

    280

    Curriculum

    Pharmacy Curriculum at Mahayogi Gorakhnath University

    The Pharmacy program is structured over eight semesters, with a progressive curriculum designed to build foundational knowledge and specialized expertise. The structure includes core subjects, departmental electives, science electives, and laboratory work.

    SemesterCourse CodeCourse TitleCredit Structure (L-T-P-C)Prerequisites
    IPY-101Chemistry for Pharmacy I3-0-2-4-
    IPY-102Biology for Pharmacy I3-0-2-4-
    IPY-103Mathematics for Pharmacy I3-0-2-4-
    IPY-104Physics for Pharmacy I3-0-2-4-
    IPY-105Introduction to Pharmacy2-0-1-3-
    IPY-106Lab Practice I (Chemistry)0-0-4-2-
    IPY-107Lab Practice I (Biology)0-0-4-2-
    IIPY-201Chemistry for Pharmacy II3-0-2-4PY-101
    IIPY-202Biology for Pharmacy II3-0-2-4PY-102
    IIPY-203Organic Chemistry3-0-2-4PY-101
    IIPY-204Inorganic Chemistry3-0-2-4PY-101
    IIPY-205Pharmacognosy I3-0-2-4-
    IIPY-206Lab Practice II (Chemistry)0-0-4-2PY-106
    IIIPY-301Medicinal Chemistry I3-0-2-4PY-203, PY-204
    IIIPY-302Pharmacology I3-0-2-4-
    IIIPY-303Pharmaceutics I3-0-2-4-
    IIIPY-304Pharmacognosy II3-0-2-4PY-205
    IIIPY-305Lab Practice III (Pharmacology)0-0-4-2PY-202
    IVPY-401Medicinal Chemistry II3-0-2-4PY-301
    IVPY-402Pharmacology II3-0-2-4PY-302
    IVPY-403Pharmaceutics II3-0-2-4PY-303
    IVPY-404Clinical Pharmacy I3-0-2-4-
    IVPY-405Lab Practice IV (Pharmaceutics)0-0-4-2PY-303
    VPY-501Pharmacokinetics3-0-2-4PY-402
    VPY-502Clinical Pharmacy II3-0-2-4PY-404
    VPY-503Drug Delivery Systems3-0-2-4-
    VPY-504Pharmaceutical Biotechnology3-0-2-4-
    VPY-505Lab Practice V (Drug Delivery)0-0-4-2PY-503
    VIPY-601Pharmaceutical Analysis3-0-2-4-
    VIPY-602Regulatory Affairs3-0-2-4-
    VIPY-603Research Methodology3-0-2-4-
    VIPY-604Pharmaceutical Chemistry3-0-2-4-
    VIPY-605Lab Practice VI (Analysis)0-0-4-2PY-601
    VIIPY-701Internship I0-0-8-4-
    VIIIPY-801Final Year Project / Thesis0-0-12-8-

    Advanced departmental elective courses include:

    • Advanced Drug Design and Development: This course explores the latest trends in drug discovery, focusing on computational modeling, molecular docking, and lead optimization techniques. Students learn to use software tools like ChemDraw, AutoDock, and MOE for virtual screening of potential drug candidates.
    • Pharmacogenomics and Personalized Medicine: Students delve into how genetic variations influence individual responses to drugs, enabling tailored treatments based on patient genotypes. Topics include pharmacogenetic testing, clinical implementation strategies, and ethical considerations in personalized medicine.
    • Computational Pharmacology: This course integrates bioinformatics and pharmacology, teaching students to analyze large datasets using Python and R programming languages. It covers pathway analysis, drug-target interaction prediction, and machine learning applications in drug discovery.
    • Pharmaceutical Quality Assurance: The course emphasizes regulatory compliance in pharmaceutical manufacturing, including Good Manufacturing Practices (GMP), validation protocols, and risk assessment methodologies. Students gain hands-on experience in quality control labs.
    • Drug Safety and Toxicology: This advanced elective examines adverse drug reactions, safety monitoring systems, and toxicological evaluation methods. Students learn to interpret clinical trial data and assess risks associated with new pharmaceutical products.
    • Nanomedicine and Drug Delivery Systems: Focused on nanotechnology applications in medicine, this course covers nanoparticle formulation, targeting strategies, and controlled release mechanisms. Students design and test novel delivery systems for therapeutic agents.
    • Biopharmaceuticals and Biotechnology: The course introduces recombinant proteins, monoclonal antibodies, vaccines, and gene therapies. Students study bioprocessing techniques, regulatory frameworks, and commercialization strategies in the biopharma industry.
    • Pharmaceutical Marketing and Commercial Strategy: This elective explores marketing principles specific to pharmaceutical products, including market research, pricing strategies, and promotional campaigns. It also addresses ethical considerations and stakeholder engagement in drug promotion.
    • Clinical Research and Trial Design: Students learn to design and conduct clinical trials from Phase I to III, focusing on protocol development, statistical analysis, and regulatory submissions. Case studies from recent trials provide practical insights into trial management.
    • Pharmaceutical Policy and Ethics: The course covers ethical dilemmas in pharmaceutical practice, regulatory policies, intellectual property rights, and global health challenges. Students engage in debates on controversial issues such as drug pricing and access to medicines.

    The program emphasizes project-based learning through a structured approach that includes mini-projects in early semesters and a final-year capstone project. Mini-projects are typically completed in groups of 3-5 students, supervised by faculty mentors. These projects allow students to explore specific areas of interest while applying theoretical knowledge to practical problems.

    For the final year thesis or capstone project, students select topics aligned with their specialization or personal interests. They work closely with a faculty advisor throughout the process, conducting literature reviews, designing experiments, and presenting findings. Projects often lead to publications in peer-reviewed journals or presentations at national conferences.