ICTQual Level 6 Diploma

Biotechnology Engineering 360 Credits – Three Years

Awarding Body

ICTQual AB

Credits

360 Credits

Course

Biotechnology Engineering

study mode

Online Learning

Course overview

The ICTQual Level 6 Diploma in Biotechnology Engineering (360 Credits – Three Years) is an advanced professional qualification designed for learners seeking mastery in biotechnology and bioengineering applications. This three-year programme builds on prior technical knowledge, focusing on cutting-edge bioprocessing, genetic engineering, molecular biology, bioinformatics, and industrial biotechnology systems. Learners gain a comprehensive understanding of how biotechnology innovations drive advancements in healthcare, pharmaceuticals, agriculture, and environmental sustainability, preparing them for senior technical, managerial, and research-focused roles.

The course integrates rigorous theoretical learning with extensive practical training, laboratory experiments, industry projects, and research-based assignments to develop professional competence. Core modules include advanced molecular techniques, bioprocess design, genetic manipulation, bioinformatics applications, quality and regulatory compliance, and health and safety in biotechnological operations. Through hands-on lab work, industrial case studies, and real-world research projects, learners enhance problem-solving skills, analytical precision, and adherence to industry standards essential for modern biotechnology engineering practice.

This qualification is ideal for learners with Level 5 diplomas or substantial biotechnology experience seeking career progression into leadership or specialist roles. Graduates can pursue positions such as Senior Bioprocess Engineer, Genetic Engineering Specialist, Biotech Research Scientist, or Quality and Regulatory Manager. The Level 6 Diploma also provides pathways to professional certifications, postgraduate study, and strategic leadership opportunities within biotechnology, pharmaceutical, and environmental bioengineering sectors.

ICTQual AB

Approved Training centre of ICTQual AB

Centre # : ATC24001

Entry Requirments

Entry Requirements for the ICTQual Level 6 Diploma in Biotechnology Engineering 360 Credits – Three Years:

  • Educational Qualifications:Applicants should hold a Level 5 Diploma in Biotechnology Engineering or an equivalent advanced qualification in biotechnology, molecular biology, or related life sciences.
  • Professional Experience:Relevant laboratory or industrial experience in biotechnology, genetic engineering, or bioprocessing is recommended to support advanced practical learning and research projects.
  • English Language Proficiency:Since the program is delivered in English, learners must show competence in reading, writing, and communication.

ICTQual Level 6 Diploma in Biotechnology Engineering 360 Credits – Three Years in Personal Protective Equipment qualification consists of 36 mandatory units.

Year 1: Foundations of Biotechnology Engineering

  1. Introduction to Biotechnology
  2. Principles of Molecular Biology
  3. Basics of Biochemistry
  4. Fundamentals of Microbiology
  5. Introduction to Genetics and Genomics
  6. Principles of Cell Biology
  7. Mathematics for Biotechnology
  8. Fundamentals of Biostatistics
  9. Introduction to Engineering in Biotechnology
  10. Analytical Techniques in Biotechnology
  11. Basics of Bioinformatics
  12. Environmental Science and Sustainability

Year 2: Intermediate Biotechnology Concepts

  1. Bioprocess Engineering and Design
  2. Applied Microbiology and Industrial Applications
  3. Recombinant DNA Technology
  4. Biomaterials and Nanotechnology
  5. Immunology and Vaccine Development
  6. Protein Engineering and Enzyme Technology
  7. Bioinformatics Tools and Applications
  8. Environmental Biotechnology and Waste Management
  9. Bioreactors and Fermentation Technology
  10. Biomedical Engineering Basics
  11. Advanced Biostatistics and Data Analysis
  12. Ethical and Regulatory Aspects of Biotechnology

Year 3: Advanced Topics and Specialization

  1. Genetic Engineering and Genomic Editing
  2. Advanced Bioprocess Engineering
  3. Biotechnology Research Methods
  4. Pharmaceutical Biotechnology and Drug Development
  5. Systems Biology and Computational Modeling
  6. Agricultural Biotechnology and GMOs
  7. Industrial Biotechnology and Bioeconomy
  8. Synthetic Biology Applications
  9. Advanced Environmental Biotechnology
  10. Innovation and Entrepreneurship in Biotechnology
  11. Biotechnology Project Management
  12. Final Year Research Project

What You Will Gain

Year 1: Foundations of Biotechnology

Introduction to Biotechnology Engineering

  • Understand the fundamental principles and applications of biotechnology.
  • Explore the history and impact of biotechnology across industries.

Bioprocess Engineering Fundamentals

  • Apply bioprocess principles to design and optimize biological systems.
  • Analyze the role of fermentation and bioreactors in industrial applications.

Cell Biology and Genetics

  • Comprehend cellular structures, genetic functions, and molecular biology processes.
  • Apply genetic principles to solve biological engineering challenges.

Laboratory Techniques in Biotechnology

  • Master essential laboratory methods such as PCR, chromatography, and spectrometry.
  • Evaluate experimental data and maintain accurate lab records.

Bioinformatics and Computational Biology

  1. Use computational tools for genetic sequence analysis and protein structure modeling.
  2. Solve biological problems using bioinformatics approaches.

Year 2: Advanced Biotechnology Concepts

Genetic Engineering and Applications

  • Implement genetic modification techniques in agriculture, medicine, and industry.
  • Evaluate the ethical and environmental considerations of genetic engineering.

Environmental Biotechnology

  • Develop sustainable solutions for waste management and pollution control.
  • Assess the role of biotechnology in environmental conservation.

Industrial Biotechnology

  • Optimize processes for biofuels, pharmaceuticals, and bioplastics production.
  • Apply engineering principles to large-scale industrial operations.

Ethics and Regulatory Compliance

  1. Navigate ethical dilemmas and regulatory frameworks in biotechnology.
  2. Ensure compliance with local and international standards.

Year 3: Professional Expertise and Research

Emerging Technologies in Biotechnology

  • Explore cutting-edge advancements such as CRISPR, synthetic biology, and nanobiotechnology.
  • Assess the potential and challenges of emerging technologies in biotechnology applications.

Bioengineering Systems

  • Integrate biology and engineering principles to design innovative systems and devices.
  • Develop prototypes for biotechnology applications.

Project Management in Biotechnology

  • Plan, execute, and manage biotechnology projects efficiently.
  • Apply project management tools to ensure timely and effective outcomes.

Capstone Project

  1. Conduct independent research addressing a real-world biotechnology challenge.
  2. Present findings through a comprehensive report and oral presentation.

Want to know more?

This diploma is a three-year course comprising 360 credits, combining advanced theoretical study, hands-on laboratory training, research projects, and industry-focused case studies.

Learners gain expertise in molecular and genetic techniques, bioprocess design, bioinformatics, quality and regulatory compliance, laboratory safety, and industrial biotechnology operations.

Yes, the programme emphasizes hands-on laboratory work, industrial projects, research assignments, and real-world case studies to develop professional competence in biotechnology engineering.

Yes, learners can advance to professional certifications, postgraduate degrees, or leadership programmes, supporting career growth in biotechnology and bioengineering industries.

This course is ideal for learners with Level 5 qualifications or substantial biotechnology experience who want to progress into senior technical, research, or leadership roles.

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