Triple Helix Science

Longevity

Targeting conserved cellular aging drivers, epigenetic instability, and metabolic decline to extend human healthspan and delay age-associated physiological decay.

Longevity

Biological Focus & Mechanisms

Cellular Senescence

Investigating senotherapeutic modalities to selectively clear dysfunctional senescent cells and reduce pro-inflammatory SASP burden.

NAD+ & Sirtuins

Modulating critical metabolic co-factors and mitochondrial sirtuin pathways to sustain bioenergetic capacity and DNA repair.

Epigenetic Reprogramming

Exploring transient, controlled transcription factor expression to restore youthful chromatin landscapes without dedifferentiation.

Mitochondrial Quality

Enhancing mitophagy kinetics and mitochondrial biogenesis to maintain cellular energy homeostasis and reduce oxidative stress.

Development Pipeline & Logic

01

Pathway Discovery

Profiling conserved longevity pathways in human cell models and aging biomarkers.

02

Target Engagement

Assessing metabolic biomarkers, epigenetic clock metrics, and target binding affinity.

03

Preclinical Models

Testing durability, systemic toxicity, and physiological resilience in vivo.

04

Clinical Framework

Designing ethics-governed clinical observational cohorts and safety registries.

Connect with our translational research team at contact@triplehelixscience.com

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