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ECS Restore

Understanding
the biology
of adaptation.

A scientific framework exploring how cellular environments shape signalling and adaptive capacity.

The Missing Layer

Modern medicine
measures disease.Butadaptationremains largely invisible.

We can now measure biological components with extraordinary precision.

Yet the cellular context that determines how those components interact remains dynamic, complex and difficult to capture.

ECS Restore investigates this missing layer: the relationship between cellular environments, signalling systems and adaptive physiology.

From biological information to physiological response

Increasing biological context and complexity

01

Genome

Biological information

The instructions encoded within living systems.

02

Proteome

Molecular machinery

The proteins that execute biological functions.

03

Metabolome

Biochemical state

The molecules and pathways reflecting current conditions.

04

Cellular environment

The missing layer

The dynamic biological context where membranes, lipids and receptors shape how signals are interpreted.

05

Adaptive capacity

Physiological response

The ability of biological systems to respond to changing conditions.

The scientific question: how does biological context shape the way cells sense, respond and adapt?

The adaptive interface →

The Adaptive Biology Platform

From biological context to measurable adaptation.

ECS Restore is developing a scientific platform to investigate how environmental conditions shape cellular context, signalling behaviour and physiological adaptation over time.

The framework connects biological context, receptor-level signalling and longitudinal physiology to generate and test hypotheses about adaptive capacity.

Conceptual framework showing how environmental inputs influence cellular context, physiological state and measurable adaptive responses

Conceptual framework

Environmental inputs influence cellular organisation. Cellular organisation shapes signalling dynamics. Physiological systems reveal the resulting adaptive state.

This framework represents a scientific hypothesis architecture. Individual biological relationships and measurement approaches require independent validation.

Founder & Scientific Advisory

Scientific conviction, strengthened through independent perspective.

ECS Restore is founder-led and hypothesis-driven. Its scientific advisory structure is designed to broaden the questions, challenge assumptions and improve the path from biological reasoning to responsible research.

Advisory participation signals scientific engagement—not independent validation of every hypothesis, formulation or future clinical claim.

Founder-led research

Founder & Translational Scientist

Stefan BroselidPh.D.

Stefan founded ECS Restore to investigate a systems-level question: how cellular environments shape receptor signalling, physiological resilience and the capacity to adapt. His work bridges molecular pharmacology and human physiology, combining expertise in GPCR signalling, lipid biology and longitudinal measurement approaches to investigate how biological state influences adaptive capacity.

  • GPCR pharmacology
  • Translational research
  • Adaptive physiology
  • Scientific education
Open

Executive co-founder opportunity

Chief Executive Officer

The scientific architecture is taking shape. ECS Restore is actively looking for an entrepreneurial counterpart who can help turn that architecture into a focused company, research programme and durable platform.

The mandate

  • Company formation and operating strategy
  • Research and commercial partnerships
  • Financing and platform development
  • Translation from hypothesis to execution
Explore the CEO opportunity

Scientific advisory

Shabnam Sarshar

Scientific Advisor

Shabnam SarsharPh.D.

Profile →

Dr. Shabnam Sarshar advises on questions at the intersection of women's health and the endocannabinoid system. Her perspective broadens the programme's scope and helps keep sex-specific biology, clinical relevance and responsible translation visible as the research develops.

  • Women's health
  • Endocannabinoid system
  • Scientific translation
  • Research strategy
Paul Clayton

Scientific Advisor

Paul ClaytonPh.D.

Profile →

Dr. Paul Clayton advises on the intersection of nutritional biology, pharmacology and human health. His perspective contributes expertise in pharmaco-nutrition and biological adaptation, complementing the programme's focus on how cellular environments influence physiological regulation.

  • Nutritional pharmacology
  • Biological adaptation
  • Human health
  • Translational science

The founder's mission

Make ECS science more rigorous, legible and testable.

ECS education

Translate complex endocannabinoid and GPCR biology without reducing uncertainty or overstating what the evidence can support.

ECS Restore vision

Build a translational framework that connects cellular context, non-invasive physiology and experiments capable of testing the model.

Scientific culture

Credibility is built by exposing ideas to better questions.

The advisory board will grow deliberately—adding expertise where it can sharpen the research programme, strengthen safeguards and reveal what the current model may be missing.

Start a conversation

Start a conversation

Help build the next layer.

We welcome thoughtful conversations with potential executive partners, researchers, advisors, investors and organisations interested in testing or developing the platform. We also welcome athletes, coaches and performance teams who want to explore carefully designed, measurement-led work around training, recovery and adaptive physiology.

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