Master of Cell and Gene Therapy Sciences Option in Pharmaceutical Chemistry at New Jersey Institute of Technology

    Master of Cell and Gene Therapy Sciences Option in Pharmaceutical Chemistry at New Jersey Institute of Technology

    Master of Cell and Gene Therapy Sciences Option in Pharmaceutical Chemistry at New Jersey Institute of Technology

    International students can study the Cell and Gene Therapy Sciences Option in Pharmaceutical Chemistry at New Jersey Institute of Technology at its main campus in Newark , United States of America. This Master degree is available as a Full Time program delivered on campus in English. The program has a duration of 2 years and is offered at the university's main campus. Students can apply for the next intake starting on May 22, 2027.

    About Master of Cell and Gene Therapy Sciences Option in Pharmaceutical Chemistry

    The objective of the Professional Science Master's Cell and Gene Therapy Sciences option in Master of Science in Pharmaceutical Chemistry is to prepare students, as well as professional scientists and engineers, for dynamic careers in the biopharmaceutical industry. The program will focus on providing integrated coursework and training in current biotechnology industry practices. Students of the program will combine their advanced theoretical study with meaningful hands-on expertise gained by engaging in career-focused research at the university's cutting-edge facilities and research partnerships.

    We expect that students of the program will exhibit:

    • Professionalism: Students will sharpen top-level professional skills at NJIT's cutting-edge research facilities to excel in business administration, leadership and management.
    • Academic Excellence: Our students will hone and effectively apply their technical training in biopharmaceutical chemistry, with an emphasis on biotechnology.
    • Commitment to Growth and Development: Students will stay up to date on the latest biotechnology industry changes and challenges to prepare them to work in this growing and exciting industry.

     

    Through their advanced coursework and research opportunities, we aim for students of the program to meet the following learning outcomes:

    • Become adept at identifying strengths and weaknesses of particular methods, and determining which one are optimal for particular synthetic operations
    • Become familiar with cellular digestion, absorption and metabolism, including regulatory processes and pathology-induced interruptions
    • Explain the basic elements of structure of amino acids, proteins, nucleic acids, carbohydrates and lipids
    • Describe higher-order structure in proteins and relate it to function
    • Demonstrate the role of the intermolecular forces in macromolecular structure and function
    • Interpret kinetic data and identify types of enzyme inhibition
    • Write and describe the key biosynthetic pathways in living systems
    • Apply thermodynamic principles to understand energy production in biological systems
    • Discuss electron transport and energy production
    • Discuss biochemical processes: replication, transcription, and translation
    • Explain biosynthesis of proteins
    • Demonstrate an understanding of the role of medicinal chemistry plays in drug discovery, drug action, and pharmacy practice.
    • Become familiar with cellular digestion, absorption, and metabolism, including regulatory processes and pathology-induced interruptions
    • Apply knowledge of cell and molecular biology to identify the causes of disease, effects of existing drugs, and the development of new modes of treatment
    • Become familiar with cellular digestion, absorption, and metabolism, including regulatory processes and pathology-induced interruptions
    • Understand the role of the pharmaceutical industry in the global market and its implications
    • Learn the fundamentals of the drug development cycle and the investment required to bring a drug to market
    • Learn the most important drug manufacturing processes and the key elements of dosage formulation

    Requirements and Admission Criteria for Master of Cell and Gene Therapy Sciences Option in Pharmaceutical Chemistry at New Jersey Institute of Technology

    Entry Requirements

    • Completed application
    • Application fee
    • English proficiency score (unless undergraduate degree completed at a U.S. university)
    • GRE/GMAT scores
    • Portfolio (for applicants to the Hillier College of Architecture and Design)
    • Letter of recommendation
      • 1 for Master’s
      • 3 for PhD

    English Requirements

    • IELTSMin 6.5
    • TOEFLMin 79

    Tuition and Fee Information for Master of Cell and Gene Therapy Sciences Option in Pharmaceutical Chemistry at New Jersey Institute of Technology

    Application Fee 75

    How to Apply for Master of Cell and Gene Therapy Sciences Option in Pharmaceutical Chemistry at New Jersey Institute of Technology

    • Completed application - NJIT accepts the Common Application for First-Year admission

    • Application fee (or a College Board or other fee waiver)

    • High school transcript

    • SAT (use code 2513) or ACT (use code 2580) - see Test-Optional Admission Policy for Fall 2023

    • Letter of recommendation

    • Portfolio (for applicants who wish to attend the Hillier College of Architecture and Design) - see Admission and Portfolio Requirements

    Master of Cell and Gene Therapy Sciences Option in Pharmaceutical Chemistry at New Jersey Institute of Technology
    New Jersey Institute of Technology
    New Jersey Institute of Technology
    United States of America

    United States of America, Newark

    WhatsApp student consultation with YouApply