ICTQual Level 4 Diploma

Biotechnology Engineering 120 Credits – One Year

Awarding Body

ICTQual AB

Credits

120 Credits

Course

Biotechnology Engineering

study mode

Online Learning

Course overview

The ICTQual Level 4 Diploma in Biotechnology Engineering (120 Credits – One Year) is an intermediate professional qualification designed for learners seeking to build solid technical expertise in biotechnology and bioengineering. This one-year programme provides a strong foundation in bioprocessing, molecular biology, genetic techniques, bioinformatics, and industrial biotechnology applications. Learners gain practical and theoretical knowledge of how biotechnology supports healthcare, pharmaceuticals, agriculture, and environmental sustainability, preparing them for technical roles and further progression in the field.

The course combines structured theoretical study with hands-on laboratory training, industry-focused projects, and research-based assignments to develop practical competence. Core modules include molecular biology techniques, basic bioprocess design, genetic manipulation, bioinformatics applications, quality control, and health and safety in biotechnology operations. Through laboratory experiments, case studies, and applied research activities, learners strengthen problem-solving abilities, technical accuracy, and understanding of industry standards critical for modern biotechnology practice.

This qualification is ideal for learners with Level 3 diplomas or relevant experience in biotechnology who wish to advance their technical skills. Graduates can pursue roles such as Biotechnology Technician, Laboratory Assistant, Research Support Officer, or Quality Control Assistant. The Level 4 Diploma also provides pathways to Level 5 diplomas, professional certifications, and further study, supporting career development in biotechnology, pharmaceuticals, and environmental bioengineering sectors.

ICTQual AB

Approved Training centre of ICTQual AB

Centre # : ATC24001

Entry Requirments

Entry Requirements for the ICTQual Level 4 Diploma in Biotechnology Engineering 120 Credits – One Year:

  • Educational Qualifications:Applicants should hold a Level 3 Diploma in Biotechnology Engineering or an equivalent qualification in biotechnology, molecular biology, or related life sciences.
  • Professional Experience:Some practical experience in laboratory work or biotechnology settings is recommended but not mandatory for enrollment.
  • English Language Proficiency:Since the program is delivered in English, learners must show competence in reading, writing, and communication.

ICTQual Level 4 Diploma in Biotechnology Engineering 120 Credits – One Year in Personal Protective Equipment qualification consists of 12 mandatory units.

  • Introduction to Biotechnology
  • Bioprocess Engineering Fundamentals
  • Cell Biology and Genetics
  • Microbial Biotechnology
  • Biochemical Engineering
  • Laboratory Techniques in Biotechnology
  • Bioinformatics and Computational Biology
  • Genetic Engineering and Biotechnology Applications
  • Bioengineering Principles
  • Environmental Biotechnology
  • Industrial Biotechnology
  • Project Management in Biotechnology

What You Will Gain

1. Introduction to Biotechnology

  • Understand the core principles of biotechnology, including its historical development and future potential.
  • Identify key areas where biotechnology is applied, such as healthcare, agriculture, food production, and environmental management.
  • Explain the role of biotechnology in solving global challenges, including improving human health and sustainability.

2. Bioprocess Engineering Fundamentals

  • Comprehend the principles of bioprocessing, including fermentation, upstream and downstream processing, and bioreactor design.
  • Apply bioprocessing techniques in the production of biopharmaceuticals, biofuels, and other bioproducts.
  • Evaluate the challenges and limitations of bioprocess engineering, including scalability, cost-efficiency, and product quality.

3. Cell Biology and Genetics

  • Understand the structure and function of cells and their relevance to biotechnology applications.
  • Explain the fundamentals of genetics, including gene structure, function, and inheritance.
  • Identify how genetic principles are applied in biotechnology, including genetic engineering and cloning.

4. Microbial Biotechnology

  • Identify different types of microorganisms used in biotechnology, including bacteria, fungi, and yeast.
  • Understand the role of microorganisms in biotechnology processes, including fermentation, bioremediation, and enzyme production.
  • Apply techniques for isolating, culturing, and utilizing microorganisms for various biotechnology applications.

5. Biochemical Engineering

  • Comprehend the role of biochemical engineering in the design and optimization of biological systems for industrial applications.
  • Apply principles of biochemistry to the production of biopharmaceuticals, enzymes, and biofuels.
  • Analyze the process of converting biological materials into useful products through biotechnological means.

6. Laboratory Techniques in Biotechnology

  • Demonstrate proficiency in laboratory techniques used in biotechnology, such as PCR, gel electrophoresis, and chromatography.
  • Understand the importance of good laboratory practices (GLP) in maintaining safety and accuracy in experiments.
  • Apply scientific methods to design experiments, analyze data, and draw conclusions in biotechnology-related research.

7. Bioinformatics and Computational Biology

  • Understand the role of bioinformatics in analyzing biological data, including DNA and protein sequences.
  • Apply computational tools to interpret and model complex biological data.
  • Identify how bioinformatics aids in the discovery of new drugs, genes, and biomarkers.

8. Genetic Engineering and Biotechnology Applications

  • Comprehend the principles and techniques of genetic engineering, including gene cloning, CRISPR technology, and recombinant DNA technology.
  • Apply genetic engineering methods in various industries, such as pharmaceuticals, agriculture, and environmental biotechnology.
  • Evaluate the ethical and regulatory issues surrounding genetic modification and biotechnology applications.

9. Bioengineering Principles

  • Understand the principles of bioengineering, including the integration of biological systems with engineering technologies.
  • Design and optimize bioengineered systems, such as bioreactors and prosthetics, for practical use in medical, agricultural, and industrial applications.
  • Assess the technical challenges in bioengineering, such as biocompatibility and system efficiency.

10. Environmental Biotechnology

  • Understand how biotechnology is applied to solve environmental problems, such as pollution control, waste management, and sustainable agriculture.
  • Analyze the environmental impact of biotechnological processes and products.
  • Apply biotechnology techniques like bioremediation and phytoremediation to improve environmental sustainability.

11. Industrial Biotechnology

  • Understand the industrial applications of biotechnology, including the production of biofuels, biochemicals, and biopharmaceuticals.
  • Comprehend the principles of large-scale biotechnological production, including fermentation and upstream and downstream processing.
  • Evaluate the challenges of industrial biotechnology, including scalability, cost-effectiveness, and environmental impact.

12. Project Management in Biotechnology

  • Understand the principles of project management, including planning, budgeting, scheduling, and risk management in biotechnology projects.
  • Apply project management tools and techniques to biotechnology research and development projects.
  • Analyze how effective project management can influence the success of biotechnology initiatives, from laboratory research to commercial production.

Want to know more?

This diploma is a one-year course comprising 120 credits, combining classroom instruction, laboratory training, industry projects, and applied research activities.

Learners gain skills in molecular biology techniques, basic bioprocess design, genetic manipulation, bioinformatics, laboratory safety, and quality control in biotechnology operations.

Graduates can pursue roles such as Biotechnology Technician, Laboratory Assistant, Research Support Officer, or Quality Control Assistant in biotechnology, pharmaceutical, and environmental sectors.

Yes, learners can advance to Level 5 diplomas, professional certifications, or further academic study to enhance their career prospects in biotechnology and bioengineering.

This course is ideal for learners with Level 3 qualifications or relevant experience who want to build technical expertise and prepare for higher-level biotechnology roles.

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