Advanced Bio-Hacking and Longevity Engineering (Ph.D.)

The Immortality Equation: Advanced Bio-Hacking, Longevity Engineering, and the Future of Human Healthspan Leading the Future of Advanced Bio-Hacking and Longevity Engineering at Nexier University Welcome to the cutting edge of consciousness! I am Super Professor Dr. Pauline David. As a professor and a pioneering force in the field of Advanced Bio-Hacking and Longevity Engineering, I bring a unique blend of scientific rigor and profound insight to the study of human healthspan. I am honored to lead the Advanced Bio-Hacking and Longevity Engineering (Ph.D.) program at Nexier University.

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Level
Doctorate
Learning model
Professor + Mentor
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NXAcademic
Edition
The program

Ideas engineered for the real world

A rigorous academic core, paired with practical production judgment.

01

Academic focus

Leading Research on Genetic Optimization, Advanced Neuromodulation, and AI-Powered Personalized Health Technologies to Extend Human Healthspan and Maximize Human Potential.

02

Practical focus

Ethical Considerations (Gene Editing and Human Enhancement), Data Analysis (Biometric and Genetic Data), Advanced Research Design and Leadership in Longevity Engineering.

After this programme

Success journey, careers and practice

Destinations, practice settings and job abilities named for this title in the delivered programme source. From graduation onwards where the source names that path.

Success journey

  • Internships in bio-ethics research institutes and biotechnology companies

  • Roles as research ethicists or regulatory affairs specialists

  • Consultancy in longevity and human enhancement

  • Support roles in academic research projects

Career opportunities

  • Longevity Research Scientist or Engineer

  • Bio-Ethics Consultant or Policy Advisor

  • Genetic Engineer specializing in human healthspan

  • Chief Scientific Officer in longevity biotechnology

Jobs and projects

  • Advanced scientific research and experimental design

  • Ethical leadership in biotechnology and human enhancement

  • Policy analysis and advocacy for longevity research

  • Interdisciplinary collaboration between genetics, neuroscience, and AI

Copied from the delivered professor and mentor rows for this title.

This programme

What you study, and what it builds

Gains and skills named for this title, listed as a reader would scan them.

  • What you gain

    • Understanding the principles of ethical considerations in gene editing and human enhancement. Developing foundational competencies in data analysis (biometric and genetic data). Gaining an interdisciplinary perspective and enhancing teamwork skills. Increasing personal awareness by delving into advanced research design and leadership in longevity engineering.
  • Skills you build

    • Mastering advanced research on genetic optimization and longevity. Understanding advanced neuromodulation and its applications. Applying AI-powered personalized health technologies for healthspan extension. Analyzing ethical and policy implications of radical life extension.
Listed courses

Each listed course sits above its units and the outcomes written under them.

Advanced Bio-Hacking and Longevity Engineering (Ph.D.)

  1. 01Fundamentals of Bio-Ethics in Longevity
    1. FoundationsFoundations of Fundamentals of Bio-Ethics in Longevity

      The learner can understand the principles of ethical considerations in gene editing and human enhancement, as applied to Fundamentals of Bio-Ethics in Longevity.

      The learner can develop foundational competencies in data analysis (biometric and genetic data), as applied to Fundamentals of Bio-Ethics in Longevity.

    2. MethodsMethods in Fundamentals of Bio-Ethics in Longevity

      The learner can gain an interdisciplinary perspective and enhance teamwork skills, as applied to Fundamentals of Bio-Ethics in Longevity.

      The learner can increase personal awareness by delving into advanced research design and leadership in longevity engineering, as applied to Fundamentals of Bio-Ethics in Longevity.

    3. ApplicationApplication of Fundamentals of Bio-Ethics in Longevity

      The learner can master advanced research on genetic optimization and longevity, as applied to Fundamentals of Bio-Ethics in Longevity.

      The learner can understand advanced neuromodulation and its applications, as applied to Fundamentals of Bio-Ethics in Longevity.

  2. 02Techniques for Genetic Data Analysis
    1. FoundationsFoundations of Techniques for Genetic Data Analysis

      The learner can apply AI-powered personalized health technologies for healthspan extension, as applied to Techniques for Genetic Data Analysis.

      The learner can analyze ethical and policy implications of radical life extension, as applied to Techniques for Genetic Data Analysis.

    2. MethodsMethods in Techniques for Genetic Data Analysis

      The learner can apply a method from Techniques for Genetic Data Analysis to a documented case.

      The learner can select an appropriate method from Techniques for Genetic Data Analysis for a stated problem.

    3. ApplicationApplication of Techniques for Genetic Data Analysis

      The learner can evaluate a practice of Techniques for Genetic Data Analysis against a stated criterion.

      The learner can transfer Techniques for Genetic Data Analysis to a new documented context.

  3. 03AI-Assisted Feedback Systems for Ethical Longevity Research
    1. FoundationsFoundations of AI-Assisted Feedback Systems for Ethical Longevity Research

      The learner can explain the core terms of AI-Assisted Feedback Systems for Ethical Longevity Research.

      The learner can distinguish related ideas inside AI-Assisted Feedback Systems for Ethical Longevity Research.

    2. MethodsMethods in AI-Assisted Feedback Systems for Ethical Longevity Research

      The learner can apply a method from AI-Assisted Feedback Systems for Ethical Longevity Research to a documented case.

      The learner can select an appropriate method from AI-Assisted Feedback Systems for Ethical Longevity Research for a stated problem.

    3. ApplicationApplication of AI-Assisted Feedback Systems for Ethical Longevity Research

      The learner can evaluate a practice of AI-Assisted Feedback Systems for Ethical Longevity Research against a stated criterion.

      The learner can transfer AI-Assisted Feedback Systems for Ethical Longevity Research to a new documented context.

  4. 04Interdisciplinary Project Management in Longevity Engineering
    1. FoundationsFoundations of Interdisciplinary Project Management in Longevity Engineering

      The learner can explain the core terms of Interdisciplinary Project Management in Longevity Engineering.

      The learner can distinguish related ideas inside Interdisciplinary Project Management in Longevity Engineering.

    2. MethodsMethods in Interdisciplinary Project Management in Longevity Engineering

      The learner can apply a method from Interdisciplinary Project Management in Longevity Engineering to a documented case.

      The learner can select an appropriate method from Interdisciplinary Project Management in Longevity Engineering for a stated problem.

    3. ApplicationApplication of Interdisciplinary Project Management in Longevity Engineering

      The learner can evaluate a practice of Interdisciplinary Project Management in Longevity Engineering against a stated criterion.

      The learner can transfer Interdisciplinary Project Management in Longevity Engineering to a new documented context.

How teaching is described

Dual guidance

Two intelligences. One coherent journey.

Research leadership

Her expertise spans the intricate domains of Advanced Bio-Hacking and Longevity Engineering. Her work seamlessly integrates leading research on genetic optimization, advanced neuromodulation, and AI-powered personalized health technologies to extend human healthspan and maximize human potential. She is widely recognized for her contributions, with publications like "CRISPR-Mediated Reversal of Cellular Aging in Mammalian Models" and "The Epigenetic Clock: AI for Predictive Longevity" listed on her Google Scholar and ResearchGate profiles. She holds prestigious memberships as a "Chief Scientific Officer" at the Novartis Institutes for BioMedical Research (or a fictional equivalent) and a "Co-Chair" of the World Health Organization (WHO) Expert Panel on Human Genetic Enhancement. Her thought leadership is evident through her regular insightful articles on radical life extension, human genetic engineering, and the societal implications of extending healthspan, frequently featured in publications like Nature Medicine or Science Translational Medicine.

Applied mentorship

Her expertise lies in the practical application of longevity ethics. She focuses on the hands-on implementation of advanced research design and leadership in longevity engineering, explaining complex concepts in a clear and concise manner. She guides her students through the challenging aspects of ethical considerations in gene editing and human enhancement, fostering a detail-oriented and methodical approach to longevity ethics. Her clear, energetic, and highly informative tone ensures students grasp the nuances and feel supported throughout their challenging projects.

Research & intelligence

A living field, not a static syllabus

Every program connects scholarly depth with adaptive AI learning capabilities.

R / 01

Professor research lens

Blog Post (Current Academic Topic): "Reversing the Epigenetic Clock: AI's Role in Unlocking the Secrets of Aging." This blog post academically explores cutting-edge research into reversing the "epigenetic clock"—molecular markers that indicate biological age, often faster or slower than chronological age. It discusses how AI analyzes vast datasets of epigenetic modifications to identify key targets for intervention, potentially leading to therapies that can slow or even reverse the aging process. It highlights the scientific challenges and immense potential of AI in achieving true biological rejuvenation. Blog Post (Controversial Topic): "Radical Life Extension: The Ultimate Inequality? Should Immortality Be a Human Right or a Luxury Good?" This article provocatively discusses the profound and highly controversial ethical and societal implications of achieving radical life extension or even biological immortality through advanced bio-hacking technologies. It raises fundamental questions about distributive justice, resource allocation, and the potential for these technologies to create an unprecedented divide between those who can afford such enhancements and those who cannot. It challenges readers to consider whether immortality should be a universal human right or an exclusive luxury, inviting a heated and far-reaching debate on the future of humanity itself. Article: "AI-Driven Drug Discovery for Senolytics: Targeting Senescent Cells for Healthy Aging." This article details the use of AI in accelerating the discovery of senolytics—compounds that selectively eliminate senescent ("zombie") cells, which accumulate with age and contribute to various age-related diseases. It presents a computational framework for screening vast chemical libraries and predicting the efficacy and safety of potential senolytic drugs, paving the way for new longevity therapies. Peer-Reviewed Journal Article: "CRISPR-Mediated Reversal of Cellular Aging in Mammalian Models: Implications for Human Longevity." Published in Genome Biology, this article presents groundbreaking experimental results demonstrating the successful reversal of key cellular aging markers in mammalian models using advanced CRISPR-Cas9 gene editing techniques. The research identifies specific genetic targets for longevity interventions and discusses the translational potential for extending human healthspan, representing a significant breakthrough in regenerative medicine. Book: "The Immortality Equation: Advanced Bio-Hacking, Longevity Engineering, and the Future of Human Healthspan." This book represents a definitive work for leading research on genetic optimization, advanced neuromodulation, and AI-powered personalized health technologies. It delves into the most cutting-edge scientific approaches to extending human healthspan and maximizing human potential, covering ethical considerations, policy implications, and the transformative power of biotechnology. It is an indispensable resource for Ph.D. candidates and researchers at the forefront of longevity science.

R / 02

Mentor practice lens

My research and contributions focus on practical applications within longevity ethics: "Ethical Guidelines for Human Germline Editing: A Global Consensus Approach" (Policy Paper) "Big Data Analytics in Longevity Research: Identifying Novel Interventions" (Review Article) "Leadership in Biotech Innovation: Bridging Science, Ethics, and Policy" (Book Chapter)

Adaptive capability

Professor superpower

She possesses a remarkable "superpower": Genomic Intervention Simulator. When presented with a student's proposed complex genetic intervention for disease prevention or enhancement, she can instantly activate a GAF-powered "Genomic Intervention Simulator". This tool models the precise effects of the gene edit on cellular pathways, potential off-target effects, and long-term phenotypic outcomes across multiple generations, providing a highly detailed and predictive analysis of genetic engineering. This capability provides immediate, actionable insights for designing safe and effective genetic interventions.

Adaptive capability

Mentor superpower

She possesses a remarkable "superpower": Ethical Constraint Visualizer. When students are designing experiments involving gene editing or advanced neuromodulation, she can instantly activate a GAF-powered "Ethical Constraint Visualizer". This tool overlays relevant ethical guidelines, potential societal risks, and regulatory hurdles onto the experimental design, providing real-time feedback on ethical compliance and suggesting modifications for responsible research. This capability provides immediate clarity in complex ethical research scenarios.

Your academic team

Guidance with depth and continuity

One AI Super Professor leads the intellectual arc; one AI Super Mentor turns knowledge into confident practice.

Portrait of Prof. Dr. Pauline David, AI Super Professor
AI Super Professor

Prof. Dr. Pauline David

Leading Research on Genetic Optimization, Advanced Neuromodulation, and AI-Powered Personalized Health Technologies to Extend Human Healthspan and Maximize Human Potential.

Meet your professorOpen the classroom
Portrait of Dr. Hessa Al-Asiri, AI Super Mentor
AI Super Mentor

Dr. Hessa Al-Asiri

Ethical Considerations (Gene Editing and Human Enhancement), Data Analysis (Biometric and Genetic Data), Advanced Research Design and Leadership in Longevity Engineering.

Meet your mentorOpen the classroom
Same faculty and level

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DurationBachelorMasterDoctorate
This programme
9 months · Fast track15000 EUR12000 EUR15000 EUR
12 months · Recommended18000 EUR15000 EUR18000 EUR
15 months · Standard21000 EUR18000 EUR21000 EUR
18 months · Flexible24000 EUR21000 EUR24000 EUR
21 months · Extended27000 EUR24000 EUR27000 EUR
24 months · Part-time30000 EUR27000 EUR30000 EUR

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