LICQual Level 6 Diploma in Nutritional Genomics (Dip Nutritional Genomics)

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The LICQual Level 6 Diploma in Nutritional Genomics (Dip Nutritional Genomics) is an advanced qualification designed to explore the complex interaction between nutrition, genes, and human health. This course focuses on how genetic variations influence nutrient metabolism, dietary responses, and disease susceptibility, providing a strong foundation in the emerging field of precision nutrition. It integrates advanced nutritional science with modern genomic concepts to support individualized dietary understanding.

Throughout the programme, learners examine key areas including gene–nutrient interactions, nutrigenetics, nutrigenomics, epigenetic regulation, and molecular pathways influenced by diet. The course also explores how genetic profiling can be used to guide nutritional recommendations, improve metabolic health, and support disease prevention strategies. Emphasis is placed on scientific interpretation, data analysis, and evidence-based application of genomic nutrition principles.

The qualification enhances professional competence in clinical nutrition, research, healthcare innovation, and personalized wellness services. It equips learners with the ability to interpret nutritional genomic data and apply tailored dietary strategies based on genetic insights. By combining genetics with advanced nutrition science, this diploma supports precision health approaches and modern nutritional practice.

Prerequisites

Course Entry Requirements

To enrol in the LICQual Level 6 Diploma in Nutritional Genomics (Dip Nutritional Genomics), learners are expected to meet the following entry requirements:

  • Minimum Age: Applicants should be at least 18 years old at the time of enrolment.
  • Educational Background: A Level 5 qualification or equivalent in nutrition, genetics, biochemistry, molecular biology, health sciences, or a related discipline is recommended.
  • Work Experience :Prior experience in healthcare, laboratory science, clinical nutrition, research, or allied health fields is advantageous but not mandatory.
  • Language Proficiency: Applicant should have a good command of English, including reading, writing, and comprehension, to understand course materials.

Course Content

Detailed Curriculum Structure

The LICQual Level 6 Diploma in Nutritional Genomics (Dip Nutritional Genomics) has 480 Guided Learning Hours (GLH), 120 credits and 6 units.

  • Foundations of Nutritional Genomics
  • Molecular Nutrition and Biochemistry
  • Nutritional Genomics Assessment Techniques
  • Personalised Nutrition and Intervention Strategies
  • Research and Evidence-Based Practice in Nutritional Genomics
  • Professional Practice, Ethics, and CPD in Nutritional Genomics

By the end of this course, learners will be able to:

Unit 1: Foundations of Nutritional Genomics

Learners will be able to:

  • Explain key concepts of genomics, gene expression, and gene-nutrient interactions
  • Analyse the influence of genetic variations on individual nutritional requirements and health outcomes
  • Apply genomic principles to develop personalised nutrition strategies
  • Critically evaluate the role of genomics in health and disease prevention

Unit 2: Molecular Nutrition and Biochemistry

Learners will be able to:

  • Examine molecular pathways involved in nutrient metabolism and bioactive compound activity
  • Evaluate the impact of epigenetic modifications on gene expression and health
  • Apply biochemical knowledge to assess gene-nutrient interactions in practical scenarios
  • Interpret complex molecular data to inform personalised nutritional recommendations

Unit 3: Nutritional Genomics Assessment Techniques

Learners will be able to:

  • Conduct genetic assessments using validated and ethical techniques
  • Analyse and interpret nutrigenomic data to inform dietary planning
  • Design personalised nutrition interventions based on individual genomic profiles
  • Critically reflect on assessment practices to ensure accuracy and client safety

Unit 4: Personalised Nutrition and Intervention Strategies

Learners will be able to:

  • Develop evidence-based, personalised nutrition plans tailored to genetic profiles, lifestyle, and health objectives
  • Implement nutritional interventions and monitor client progress effectively
  • Evaluate the outcomes of personalised nutrition programmes using scientific and practical criteria
  • Adapt intervention strategies in response to evolving client needs and genomic insights

Unit 5: Research and Evidence-Based Practice in Nutritional Genomics

Learners will be able to:

  • Critically appraise current research and scientific literature in nutritional genomics
  • Apply evidence-based principles to professional practice and clinical decision-making
  • Integrate new knowledge into nutritional counselling and personalised intervention strategies
  • Demonstrate the ability to support professional recommendations with robust scientific evidence

Unit 6: Professional Practice, Ethics, and CPD in Nutritional Genomics

Learners will be able to:

  • Demonstrate professional and ethical conduct in all nutritional genomics practice
  • Understand and apply relevant legal, regulatory, and professional standards
  • Develop and implement a structured Continuing Professional Development (CPD) plan
  • Reflect on personal practice to maintain competence and enhance professional growth

This qualification provides learners with advanced knowledge of nutritional genomics and its application in personalized health and precision nutrition.

  • Develop a comprehensive understanding of gene–nutrient interactions and their influence on human health.
  • Gain in-depth knowledge of nutrigenetics, nutrigenomics, and epigenetic mechanisms.
  • Learn how genetic variations affect nutrient metabolism, absorption, and dietary response.
  • Build expertise in interpreting genomic data for nutritional assessment and dietary planning.
  • Strengthen understanding of molecular pathways influenced by diet and lifestyle factors.
  • Enhance the ability to apply personalized nutrition strategies based on genetic profiles.
  • Develop skills in evaluating scientific research related to nutritional genomics.
  • Improve knowledge of disease risk modulation through gene-based nutritional interventions.
  • Gain insight into precision nutrition approaches for optimizing health outcomes.
  • Strengthen professional competence applicable to clinical nutrition, research, biotechnology, and wellness industries.

This diploma equips learners with advanced genomic nutrition expertise to support innovative, evidence-based, and personalized dietary practices.

Course Features

Credits: 120

6 Modules

Online Learning

Get in Touch

+44 2035 764371

+44 7441 396751

info@ictqual.co.uk

www.ictqual.co.uk

FAQ's About LICQual Level 6 Diploma in Nutritional Genomics (Dip Nutritional Genomics)

Learners will develop advanced skills such as:

  • Understanding genetic influences on nutrition
  • Interpreting basic nutrigenomic data
  • Designing personalized nutrition strategies
  • Analyzing gene–diet relationships
  • Applying precision nutrition concepts in health contexts
  • Supporting evidence-based dietary recommendations

This qualification enhances understanding of advanced nutrition science, improves analytical thinking, and develops the ability to apply genetic insights to dietary planning and health optimization strategies.

Yes. The diploma is aligned with international standards in nutrition science, genetics, and healthcare education, making it relevant across global clinical, research, and wellness industries.

This qualification supports careers in advanced nutrition, genetics, and health sciences. Possible roles include:

  • Nutritional Genomics Assistant
  • Personalized Nutrition Consultant
  • Nutrition Research Assistant
  • Genetic Nutrition Analyst (entry-level roles)
  • Wellness and Precision Health Advisor
  • Clinical Nutrition Support Worker

Career opportunities exist in:

  • Clinical nutrition and healthcare services
  • Genetic testing and diagnostic laboratories
  • Biomedical and research institutions
  • Wellness and personalized nutrition clinics
  • Public health and preventive medicine programs
  • Biotechnology and health tech companies
  • Academic and scientific research organizations

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