ICTQual Level 5 Diploma

Biotechnology Engineering 240 Credits – Two Years

Awarding Body

ICTQual AB

Credits

240 Credits

Course

Biotechnology Engineering

study mode

Online Learning

Course overview

The ICTQual Level 5 Diploma in Biotechnology Engineering (240 Credits – Two Years) is an advanced professional qualification designed for learners aiming to develop high-level technical skills in biotechnology and bioengineering. This two-year programme builds on foundational knowledge, focusing on bioprocessing, genetic engineering, molecular biology, bioinformatics, and industrial biotechnology applications. Learners gain an in-depth understanding of how biotechnological innovations advance healthcare, pharmaceuticals, agriculture, and environmental sustainability, preparing them for senior technical, managerial, and research-focused roles.

The course combines comprehensive theoretical study with practical laboratory training, industry projects, and research-based assignments to develop professional competence. Core modules include molecular biology techniques, bioprocess design, genetic manipulation, bioinformatics applications, quality and regulatory compliance, and health and safety in biotechnological operations. Through hands-on experiments, case studies, and applied 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 4 diplomas or relevant experience in biotechnology seeking career progression. Graduates can pursue roles such as Bioprocess Engineer, Genetic Engineering Specialist, Biotech Research Scientist, or Quality and Regulatory Coordinator. The Level 5 Diploma also provides pathways to professional certifications, higher-level diplomas, and postgraduate study, supporting long-term career growth in biotechnology, pharmaceutical, and environmental bioengineering sectors.

ICTQual AB

Approved Training centre of ICTQual AB

Centre # : ATC24001

Entry Requirments

Entry Requirements for the ICTQual Level 5 Diploma in Biotechnology Engineering 240 Credits – Two Years:

  • Educational Qualifications:Applicants should hold a Level 4 Diploma in Biotechnology Engineering or an equivalent 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 practical and research-based learning.
  • English Language Proficiency:Since the program is delivered in English, learners must show competence in reading, writing, and communication.

ICTQual Level 5 Diploma in Biotechnology Engineering 240 Credits – Two Years in Personal Protective Equipment qualification consists of 24 mandatory units.

Year 1:

  1. Introduction to Biotechnology Engineering
  2. Molecular Biology and Genetics
  3. Principles of Biochemistry
  4. Cell Biology and Biotechnology Applications
  5. Bioinformatics and Data Analysis
  6. Bioprocessing Techniques and Technologies
  7. Genetic Engineering and Recombinant DNA Technology
  8. Biotechnology Equipment and Instrumentation
  9. Laboratory Safety and Quality Control
  10. Microbiology and Biotechnology
  11. Plant and Animal Biotechnology
  12. Industrial Biotechnology and Biomanufacturing

Year 2:

  1. Biostatistics and Experimental Design
  2. Environmental Biotechnology
  3. Bioethics and Regulatory Considerations
  4. Biochemical Engineering Principles
  5. Protein Engineering and Expression Systems
  6. Fermentation Technology in Biotechnology
  7. Bioprocess Control and Optimization
  8. Biotechnology in Drug Development
  9. Biotechnology in Agriculture and Food Production
  10. Biotechnology in Waste Management
  11. Research and Development in Biotechnology
  12. Professional Practice and Career Development in Biotechnology

What You Will Gain

Year 1 Learning Outcomes

Introduction to Biotechnology Engineering

  • Understand the history, scope, and applications of biotechnology in various sectors.
  • Identify key areas of biotechnology, including healthcare, agriculture, and industrial processes.

Molecular Biology and Genetics

  • Explain the structure and function of nucleic acids and proteins.
  • Understand genetic inheritance, mutations, and the molecular basis of diseases.

Principles of Biochemistry

  • Analyze the chemical properties and functions of biomolecules.
  • Apply biochemistry principles to understand metabolic pathways and energy production.

Cell Biology and Biotechnology Applications

  • Demonstrate knowledge of cell structure, function, and communication.
  • Apply cellular principles to biotechnology applications, such as tissue engineering.

Bioinformatics and Data Analysis

  • Utilize computational tools to analyze biological data.
  • Interpret genomic, proteomic, and transcriptomic datasets for biotechnological research.

Bioprocessing Techniques and Technologies

  • Understand the fundamentals of bioprocessing, including fermentation and downstream processing.
  • Operate basic bioprocessing equipment and optimize production systems.

Genetic Engineering and Recombinant DNA Technology

  • Design and implement experiments involving gene cloning and recombinant DNA.
  • Evaluate the applications and ethical considerations of genetic engineering.

Biotechnology Equipment and Instrumentation

  • Operate and maintain essential biotechnology laboratory equipment.
  • Interpret results obtained from analytical instruments like spectrophotometers and centrifuges.

Laboratory Safety and Quality Control

  • Adhere to laboratory safety protocols and quality assurance standards.
  • Develop risk assessments and manage laboratory waste safely.

Microbiology and Biotechnology

  • Understand the role of microorganisms in biotechnology.
  • Isolate, culture, and utilize microbes for biotechnological applications.

Plant and Animal Biotechnology

  • Apply biotechnological methods to improve plant and animal health, yield, and productivity.
  • Explore techniques such as micropropagation, transgenics, and cloning.

Industrial Biotechnology and Biomanufacturing

  1. Examine the role of biotechnology in industrial processes, such as biofuels and biomaterials.
  2. Develop strategies for scaling up biomanufacturing systems.

Year 2 Learning Outcomes

Biostatistics and Experimental Design

  • Apply statistical methods to analyze and interpret experimental data.
  • Design experiments with reproducible and accurate results.

Environmental Biotechnology

  • Understand the role of biotechnology in addressing environmental challenges.
  • Develop biotechnological solutions for waste management and pollution control.

Bioethics and Regulatory Considerations

  • Evaluate ethical and legal considerations in biotechnology practices.
  • Understand global regulatory frameworks governing biotechnology.

Biochemical Engineering Principles

  • Integrate engineering principles with biotechnology processes.
  • Analyze systems such as fluid dynamics and heat transfer in bioprocessing.

Protein Engineering and Expression Systems

  • Design and produce recombinant proteins for industrial and therapeutic use.
  • Optimize expression systems for improved protein yields.

Fermentation Technology in Biotechnology

  • Operate fermentation systems and optimize conditions for microbial growth.
  • Analyze the role of fermentation in producing biofuels, enzymes, and pharmaceuticals.

Bioprocess Control and Optimization

  • Implement control strategies for bioprocess monitoring.
  • Optimize yield and efficiency in biotechnological production systems.

Biotechnology in Drug Development

  • Explore the role of biotechnology in designing and producing biopharmaceuticals.
  • Apply principles of molecular biology to drug discovery and vaccine development.

Biotechnology in Agriculture and Food Production

  • Implement biotechnological solutions to enhance crop yield and resistance.
  • Develop sustainable and innovative approaches to food production.

Biotechnology in Waste Management

  • Utilize microbial and enzymatic methods for waste treatment and recycling.
  • Design biotechnological systems for sustainable waste management.

Research and Development in Biotechnology

  • Conduct independent research projects in biotechnology.
  • Develop innovative solutions to real-world biotechnological challenges.

Professional Practice and Career Development in Biotechnology

  1. Build effective communication, teamwork, and leadership skills for professional growth.
  2. Explore career opportunities and develop strategies for continuous learning and industry engagement.

Want to know more?

This diploma is a two-year course comprising 240 credits, combining theoretical study, hands-on laboratory training, industry projects, and research-based assignments.

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

Graduates can pursue roles such as Bioprocess Engineer, Genetic Engineering Specialist, Biotech Research Scientist, or Quality and Regulatory Coordinator in biotechnology, pharmaceutical, and environmental sectors.

Yes, the programme emphasizes laboratory experiments, industrial projects, research assignments, and applied case studies to develop professional competence.

This course is ideal for learners with Level 4 qualifications or relevant biotechnology experience seeking progression into senior technical, research, or specialist roles.

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