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    +91 88943 57155
    Pune, Maharashtra, India

    Duration

    4 Years

    Pharmacy

    Sam Global University Bhopal
    Duration
    4 Years
    Pharmacy UG OFFLINE

    Duration

    4 Years

    Pharmacy

    Sam Global University Bhopal
    Duration
    Apply

    Fees

    ₹6,50,000

    Placement

    93.0%

    Avg Package

    ₹6,50,000

    Highest Package

    ₹12,00,000

    OverviewAdmissionsCurriculumFeesPlacements
    4 Years
    Pharmacy
    UG
    OFFLINE

    Fees

    ₹6,50,000

    Placement

    93.0%

    Avg Package

    ₹6,50,000

    Highest Package

    ₹12,00,000

    Seats

    120

    Students

    300

    ApplyCollege

    Seats

    120

    Students

    300

    Curriculum

    Comprehensive Course Structure for B.Tech Pharmacy Program

    The B.Tech Pharmacy program at Sam Global University Bhopal is designed to provide students with a well-rounded education that combines theoretical knowledge with practical skills. The curriculum spans four years and includes a mix of core courses, departmental electives, science electives, and laboratory work.

    SemesterCourse CodeCourse TitleCredits (L-T-P-C)Prerequisites
    1PH101Chemistry for Pharmacy I3-1-0-4None
    1PH102Biology for Pharmacy I3-1-0-4None
    1PH103Mathematics for Pharmacy I3-1-0-4None
    1PH104Physics for Pharmacy I3-1-0-4None
    1PH105Introduction to Pharmacy2-0-0-2None
    1PH106Pharmacy Laboratory I0-0-3-1None
    2PH201Chemistry for Pharmacy II3-1-0-4PH101
    2PH202Biology for Pharmacy II3-1-0-4PH102
    2PH203Mathematics for Pharmacy II3-1-0-4PH103
    2PH204Organic Chemistry I3-1-0-4PH101
    2PH205Pharmacology I3-1-0-4PH102
    2PH206Pharmacy Laboratory II0-0-3-1PH106
    3PH301Medicinal Chemistry I3-1-0-4PH201, PH204
    3PH302Pharmacognosy I3-1-0-4PH202
    3PH303Pharmaceutical Chemistry I3-1-0-4PH201, PH204
    3PH304Pharmacology II3-1-0-4PH205
    3PH305Clinical Pharmacy I3-1-0-4PH205
    3PH306Pharmacy Laboratory III0-0-3-1PH206
    4PH401Medicinal Chemistry II3-1-0-4PH301
    4PH402Pharmacognosy II3-1-0-4PH302
    4PH403Pharmaceutical Chemistry II3-1-0-4PH303
    4PH404Pharmacology III3-1-0-4PH304
    4PH405Clinical Pharmacy II3-1-0-4PH305
    4PH406Pharmacy Laboratory IV0-0-3-1PH306
    5PH501Drug Development and Formulation Science3-1-0-4PH401, PH403
    5PH502Pharmacology and Toxicology3-1-0-4PH404
    5PH503Computational Pharmacy3-1-0-4PH401, PH402
    5PH504Pharmaceutical Quality Assurance and Regulatory Affairs3-1-0-4PH303, PH403
    5PH505Pharmacovigilance and Drug Safety3-1-0-4PH404
    5PH506Biopharmaceuticals and Protein Engineering3-1-0-4PH402, PH403
    5PH507Pharmaceutical Marketing and Business Management3-1-0-4PH305
    5PH508Pharmaceutical Nanotechnology and Targeted Drug Delivery3-1-0-4PH403, PH404
    6PH601Advanced Drug Development Projects3-1-0-4PH501
    6PH602Research Methodology in Pharmacy3-1-0-4PH502, PH504
    6PH603Industry Internship I0-0-0-6PH501, PH504
    7PH701Advanced Formulation Development3-1-0-4PH601
    7PH702Pharmaceutical Innovation and Entrepreneurship3-1-0-4PH501, PH507
    7PH703Industry Internship II0-0-0-6PH603
    8PH801Final Year Project/Thesis0-0-0-12PH701, PH702
    8PH802Capstone Presentation0-0-0-3PH801

    Detailed Course Descriptions for Advanced Departmental Electives

    The advanced departmental elective courses in the B.Tech Pharmacy program at Sam Global University Bhopal are designed to provide students with specialized knowledge and practical skills in various domains of pharmaceutical science.

    Drug Development and Formulation Science

    This course provides an in-depth understanding of the drug development process, from target identification and lead optimization to formulation development and clinical trials. Students learn about different drug delivery systems, dosage form design principles, and regulatory requirements for drug approval. The course includes laboratory sessions where students practice formulation development techniques and quality control testing.

    Pharmacology and Toxicology

    This advanced course explores the mechanisms of drug action, adverse effects, and therapeutic applications in detail. Students study pharmacokinetics, pharmacodynamics, toxicological assessment methods, and safety evaluation procedures for pharmaceutical compounds. The course also covers current trends in drug discovery and development, including personalized medicine approaches.

    Computational Pharmacy

    This interdisciplinary course combines principles of computer science, mathematics, and pharmacy to provide students with skills in computational modeling and simulation. Students learn about molecular docking, drug-target interaction prediction, and virtual screening techniques. The course includes hands-on experience with software tools commonly used in pharmaceutical research.

    Pharmaceutical Quality Assurance and Regulatory Affairs

    This course focuses on ensuring compliance with industry standards and regulatory requirements in pharmaceutical manufacturing and development. Students study Good Manufacturing Practice (GMP), Good Clinical Practice (GCP), regulatory submission processes, and quality control methodologies. The course includes case studies from real-world pharmaceutical companies.

    Pharmacovigilance and Drug Safety

    This course emphasizes the monitoring of drug safety post-market and conducting risk assessment studies. Students learn about adverse event reporting systems, signal detection methods, and regulatory frameworks that protect public health. The course also covers international drug safety standards and quality assurance practices.

    Biopharmaceuticals and Protein Engineering

    This specialized course prepares students for careers in the rapidly growing field of biotechnology. Students explore protein structure-function relationships, recombinant DNA technology, monoclonal antibody development, and gene therapy approaches. The course includes laboratory sessions on bioprocessing techniques and protein purification methods.

    Pharmaceutical Marketing and Business Management

    This course combines principles of marketing, management, and business strategy with pharmaceutical knowledge to prepare graduates for roles in pharmaceutical companies, consulting firms, and regulatory agencies. Students study market analysis, product development strategies, and regulatory compliance requirements in the pharmaceutical industry.

    Pharmaceutical Nanotechnology and Targeted Drug Delivery

    This cutting-edge course explores the application of nanotechnology in drug delivery systems. Students learn about nanoparticle design, controlled release mechanisms, and targeted therapy approaches that enhance drug efficacy while minimizing side effects. The course includes laboratory sessions on nanomaterial synthesis and characterization techniques.

    Project-Based Learning Approach

    The department's philosophy on project-based learning is rooted in the belief that practical experience is essential for developing competent pharmaceutical professionals. Students engage in both mini-projects and a final-year thesis/capstone project throughout their academic journey.

    Mini-projects are introduced during the third and fourth semesters, allowing students to apply theoretical knowledge to real-world problems. These projects typically focus on formulation development, quality control testing, or regulatory compliance issues encountered in pharmaceutical companies. Students work in teams of 3-4 members and are mentored by faculty advisors.

    The final-year thesis/capstone project is a comprehensive research endeavor that integrates all aspects of the student's learning experience. Students select their projects based on their interests and career goals, often collaborating with industry partners or research institutions. The project involves literature review, experimental design, data collection and analysis, and professional presentation.

    Project selection and faculty mentorship are carefully coordinated by the department. Students submit project proposals that are reviewed by a committee of faculty members. The final project selection is based on academic performance, interest alignment, and faculty availability. Faculty mentors provide guidance throughout the research process, ensuring that students receive proper support and supervision.