The Science of Ageing Programme — London School of Multiomics & AI
4-Week Online Programme

The Science of Ageing Programme

Molecular Biology · Biochemistry of Longevity · Biomarkers · Omics · AI · Prevention. Understand ageing from molecules to prevention — a theory-led journey from cellular ageing mechanisms to evidence-based healthy ageing.

4 weeks · self-paced Fully online Certificate included

The Science of Ageing Programme

By London School of Multiomics & AI

Duration4 weeks
DeliveryFully online
StyleTheory-led
CodingNot required
FinalReflection framework
CertificateIncluded
Programme Overview

Understand ageing from molecules to prevention.

This programme introduces ageing as a biological process driven by molecular damage, impaired repair, metabolic dysfunction, inflammation, cellular senescence and changes in tissue communication.

Learners move from cellular ageing mechanisms to biochemical longevity pathways, then to biomarkers, biological age, omics technologies, AI and evidence-based prevention.

4 WeeksStructured journey
Fully OnlineFlexible learning
Theory-LedVisual + case-based
No CodingAccessible learning
No Wet-LabConceptual focus
Final ReflectionPrevention framework
What you will learn

From ageing biology to preventive longevity.

Six interconnected learning pillars + a final preventive longevity framework — built to take you from cellular mechanisms to healthy ageing.

Molecular Biology of Ageing

DNA damage, telomeres, epigenetics, senescence and mitochondrial dysfunction.

Biochemistry of Longevity

mTOR, AMPK, insulin / IGF-1, NAD⁺, sirtuins, autophagy and inflammageing.

Biomarkers & Biological Age

Clinical biomarkers, biological age, epigenetic clocks and responsible interpretation.

Omics in Ageing Research

Genomics, epigenomics, transcriptomics, proteomics, metabolomics and microbiome science.

AI in Longevity Science

Pattern recognition, biological-age prediction, risk stratification and personalised prevention.

Lifestyle & Prevention

Exercise, nutrition, sleep, stress, supplements and evidence-based healthy ageing frameworks.

Final Mini-Assignment

Build a Preventive Longevity Framework

Learners bring together molecular ageing concepts, biomarkers, omics, AI and lifestyle science into a personal, responsible preventive longevity framework with a 500–700 word reflection.

  • Molecular ageing concepts
  • Biomarker interpretation
  • Lifestyle and prevention factors
  • Responsible AI / omics interpretation
  • 500–700 word reflection
Enrol and Build Your Framework
Who should enrol

Designed for learners curious about healthy ageing.

Built for those who want to understand ageing biology, longevity science, biomarkers, omics, AI and prevention in a scientific but accessible way. No coding or wet-lab experience required.

Biomedical Students

Undergraduates and postgraduates exploring ageing biology through a modern molecular lens.

Pharmacy Students

Build longevity-pathway fluency relevant to prevention, healthy ageing and lifestyle prescribing.

Pharmacists

Connect drug biology with ageing pathways, biomarkers and patient-facing prevention conversations.

Health & Life Science Graduates

Add molecular ageing, biomarkers and AI thinking to a strong life-science foundation.

Researchers

Bring longevity-science depth into research on ageing, prevention and translational health.

Nutrition Professionals

Anchor nutrition advice in molecular ageing, metabolism, inflammageing and biomarker thinking.

Lifestyle & Wellness

Coaches and practitioners who want evidence-based foundations behind longevity recommendations.

Longevity Curious

Lifelong learners who want a scientific, hype-free understanding of ageing and prevention.

4-Week Curriculum

A structured weekly learning pathway.

From molecular ageing mechanisms to biochemical longevity pathways, biomarkers, omics, AI, lifestyle and prevention.

01
Molecular Biology of AgeingCellular and molecular mechanisms

Understand ageing as a cellular and molecular process.

  • Chronological age vs biological age
  • Hallmarks of ageing
  • DNA damage and genomic instability
  • Telomeres and epigenetic changes
  • Cellular senescence and mitochondrial dysfunction
Week activityInterpret a simple ageing hallmarks case study.
OutcomeUnderstand how molecular damage, impaired repair and cellular dysfunction contribute to ageing and age-related disease.
02
Biochemistry of LongevityPathways of repair, metabolism and inflammation

Explore the biochemical pathways that regulate ageing, repair and metabolism.

  • Metabolism, growth mode and repair mode
  • mTOR, AMPK and insulin / IGF-1 signalling
  • NAD⁺, sirtuins and cellular repair
  • Autophagy, mitophagy and proteostasis
  • Oxidative stress and inflammageing
Week activityAnalyse a metabolic ageing case study involving insulin resistance, inflammation and lifestyle factors.
OutcomeUnderstand how biochemical pathways connect metabolism, repair, inflammation and longevity.
03
Biomarkers, Omics & Biological AgeMeasuring ageing with molecular data

Learn how ageing can be measured using biomarkers and molecular data.

  • Clinical biomarkers in healthy ageing
  • Biological age and epigenetic clocks
  • Genomics and epigenomics of ageing
  • Transcriptomics, proteomics and metabolomics
  • Microbiome and single-cell ageing concepts
Week activityReview a fictional longevity biomarker profile and identify possible ageing-related patterns.
OutcomeUnderstand how biomarkers and omics technologies support ageing research, prevention and biological age interpretation.
04
AI, Preventive Health & Lifestyle LongevityBringing it all into a prevention framework

Bring ageing biology, biomarkers, omics and lifestyle together into a prevention framework.

  • AI in ageing and longevity science
  • Multi-omics and personalised prevention
  • Exercise, muscle and healthy ageing
  • Nutrition, sleep, stress and circadian biology
  • Supplements, evidence and longevity hype
Week activityDesign a basic preventive longevity framework for a fictional individual.
OutcomeUnderstand how AI, omics, biomarkers and evidence-based lifestyle strategies can support healthier ageing while avoiding overclaiming.
Practical Skills

Skills you will actually build.

Practical thinking skills across four interconnected domains — from ageing biology to responsible prevention design.

Ageing Biology

  • Hallmarks of ageing
  • DNA damage and repair
  • Telomeres and epigenetics
  • Senescence and SASP
  • Mitochondrial dysfunction

Biomarker Interpretation

  • Clinical biomarker thinking
  • Biological age concepts
  • Epigenetic clock limits
  • Metabolic risk patterns
  • Inflammation markers

Omics & AI Thinking

  • Multi-omics logic
  • Omics layers in ageing
  • AI as decision support
  • Pattern recognition
  • Responsible interpretation

Prevention & Lifestyle

  • Exercise and muscle ageing
  • Nutrition and metabolism
  • Sleep and stress biology
  • Evidence vs hype judgement
  • Longevity framework design
Certificate

A Certificate of Completion from London School of Multiomics & AI.

Learners who complete the weekly learning activities and final mini-assignment receive a certificate of completion.

Completion requires

  • Weekly learning content
  • Quizzes and case activities
  • Final reflection framework
  • Responsible interpretation

The certificate adds a credible signal to academic CVs, healthcare-adjacent portfolios and lifestyle / wellness practice.

Certificate of Completion

The Science of Ageing Programme

Awarded by London School of Multiomics & AI
Awarded
2026 Cohort
Enrolment

Enrol in The Science of Ageing Programme.

Founder's launch price — limited cohort. Includes all four weeks, final mini-assignment and certificate.

Founder's Launch

The Science of Ageing Programme

4 weeks · Online · Theory-led

£399 one-time
4 weeksDuration
Theory-ledLearning style
No codingPractical level
IncludedReflection + cert
Enrolment Opening Soon

Have a question? Contact us

What's included

  • 4-week structured curriculum
  • Molecular biology of ageing
  • Biochemistry of longevity
  • Biomarkers and biological age
  • Omics and AI in ageing
  • Lifestyle and prevention
  • Visual lessons and case studies
  • Quizzes and discussion questions
  • Biomarker interpretation activities
  • Final preventive longevity framework
  • Certificate of completion
  • Lifetime access to materials

Understand ageing from molecules to prevention.

Learn molecular ageing, longevity pathways, biomarkers, omics, AI and evidence-based prevention — and build your own responsible longevity framework.

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