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Anti-Aging & Longevity Peptide Therapy — Telomeres, Sleep & Biological Age | InformedPeptides
InformedPeptides — Peptide Therapy

Anti-Aging& Longevity

Biological aging is measurable — and increasingly, addressable at the cellular level. Peptide therapy targets the hallmarks of aging directly: telomere shortening, mitochondrial decline, chronic inflammation, disrupted sleep, and declining growth hormone. For the first time in history, these mechanisms are targetable without synthetic hormones or extreme interventions.

Longevity Telomere Science NAD+ & Mitochondria Gene Regulation
4.1×
Lower mortality over 6 years in the group receiving Epithalon biannually — the most compelling longevity stat in peptide research
31%
Of human aging-related genes are modulated by GHK-Cu — more than any other known compound
50%
Decline in NAD+ levels between ages 40 and 60 — directly impairing the mitochondrial function that drives cellular repair
The Science Framework

The Hallmarks of Aging — And Which Peptides Target Each

Aging isn't one thing — it's a set of interconnected biological processes. The 2023 updated Hallmarks of Aging framework identifies 12 primary drivers. Peptide therapy addresses more of them than any other class of intervention.

🧬
Telomere Shortening
→ Epithalon
The chromosomal clock. Epithalon activates telomerase — the only compound with published human data showing telomere length maintenance.
Mitochondrial Dysfunction
→ NAD+, SS-31
The energy crisis. NAD+ restores mitochondrial fuel; SS-31 repairs the membrane where ATP is made. Together they address both supply and structure.
🔥
Chronic Inflammation
→ BPC-157, GHK-Cu
"Inflammaging" — the low-level inflammatory state that accelerates every other hallmark. BPC-157 and GHK-Cu address it systemically and at the gene level.
🧫
Cellular Senescence
→ Epithalon, GHK-Cu
Zombie cells that stop dividing but keep releasing inflammatory signals. Telomere maintenance and GHK-Cu's gene regulation both reduce senescence accumulation.
🧪
Epigenetic Alterations
→ GHK-Cu
Changes in gene expression patterns without DNA changes. GHK-Cu modulates 31% of aging-tracked genes — the broadest epigenetic reach of any peptide.
💤
Disrupted Sleep & Circadian
→ Epithalon
Poor sleep accelerates every hallmark of aging. Epithalon restores pineal function and deep sleep — the overnight repair window the body depends on.
Why this matters now: The 2023 update to the Hallmarks of Aging framework added three new hallmarks — disabled macroautophagy, chronic inflammation, and dysbiosis — bringing the total to 12. Peptide therapy addresses at least 7 of these 12 directly. No pharmaceutical drug class comes close to that breadth of biological coverage.
The Longevity Stack — Four Biological Pillars
Epithalon ★ Start here Telomerase activation Deep sleep restoration Natural GH secretion Circadian regulation NAD+ Cellular fuel Mitochondrial ATP Sirtuin activation DNA repair Metabolic regulation GHK-Cu Gene regulation 31% of aging genes Collagen synthesis Anti-inflammatory Tissue remodeling BPC-157 Repair & inflammation Inflammaging control Gut barrier integrity Tissue angiogenesis Vagal tone support

The four pillars address different biological dimensions of aging — cellular clock (Epithalon), energy (NAD+), gene regulation (GHK-Cu), and inflammation/repair (BPC-157). Used together they cover more hallmarks of aging than any single intervention.

Condition Guides in This Category

Longevity-Related Conditions We Cover

Detailed research-backed guides for each condition — protocols, mechanisms, timelines, and provider conversation scripts.

Longevity · Coming Soon
Sleep Disorders & Circadian Disruption
Anchor: Epithalon

Sleep isn't just rest — it's the primary repair and maintenance window for every system in the body. Disrupted sleep accelerates telomere shortening, impairs glymphatic clearance, and suppresses growth hormone. Epithalon restores the deep sleep architecture that makes everything else work better.

Sleep Circadian GH Pulse Glymphatic
Notify Me When Live
Longevity · Coming Soon
General Anti-Aging Protocol
Anchor: Epithalon + NAD+ + GHK-Cu

For those approaching peptide therapy from a longevity standpoint — not a specific condition — this guide covers the foundational anti-aging stack, biological age testing, the telomere length baseline protocol, and how to sequence the four longevity pillars over a 12-month program.

Longevity Stack Telomere Testing Biological Age Adults 40+
Notify Me When Live
Related condition guides in other categories: Several high-impact longevity applications appear in other therapy areas — Hormonal Health (perimenopause, low testosterone), Cognitive Enhancement (brain fog, ADHD), and Skin, Hair & Aesthetics (hair loss, skin aging). The longevity stack underpins all of them.
The Peptide Stack

Core Peptides for Anti-Aging & Longevity

The longevity stack is the most well-rounded in the InformedPeptides library — six compounds addressing aging from the chromosomal level to the tissue level.

Epithalon
★ Anchor — Start Here
40+ years of research. 4.1× lower mortality in a 6-year clinical study. Activates telomerase, restores deep sleep, and supports natural GH production. The most universally recommended longevity starting point.
Full Profile
NAD+
Cellular Energy
Declines 50% between ages 40–60. Powers the mitochondrial electron transport chain, activates sirtuins (longevity genes), and drives cellular DNA repair. The metabolic foundation of biological youth.
Full Profile
GHK-Cu
Gene Regulation
Modulates 31% of human aging-tracked genes. Stimulates collagen synthesis, controls inflammation, and drives tissue remodeling. Declines 60% between ages 20–60 — tracking directly with visible aging.
Full Profile
BPC-157
Repair & Inflammation
200+ studies. Addresses inflammaging — the chronic low-level inflammation that accelerates every hallmark of aging. Heals gut barrier, promotes angiogenesis, and protects telomeres by reducing oxidative stress.
Full Profile
Sermorelin
GH Restoration
FDA history. Stimulates the pituitary to restore natural GH production — with the body's feedback loop intact. Addresses the GH decline driving body composition changes, poor recovery, and sleep disruption after 35.
Full Profile
MOTS-c
Mitochondrial Peptide
A mitochondria-derived peptide that regulates metabolic homeostasis and stress response. Levels decline with age. Supports insulin sensitivity, muscle metabolism, and the mitochondrial-nuclear communication that coordinates aging.
Full Profile

"In a 6-year clinical study, the group receiving Epithalon twice annually showed 4.1 times lower mortality than controls. That single data point changed how the longevity field thinks about peptide therapy."

Where to Start

The Longevity Protocol — How to Sequence It

The longevity stack works best as a phased approach — each layer building on the one before.

Step 1 — Baseline Labs
Before starting anything, establish your baseline. Key markers: IGF-1 (GH axis), hsCRP (inflammation), NAD+ levels, Omega Index (neuroinflammation), and ideally telomere length testing (Life Length or Repeat Diagnostics). These give you objective data to track against — and reveal which pillars need the most attention.
Step 2 — Start Epithalon
The universal first step. A 10-day Epithalon course establishes the deep sleep foundation, begins telomerase activation, and restores the natural GH pulse. Most people notice sleep improvement within the first week. Run 2–4 courses per year ongoing — the telomere maintenance benefit is cumulative.
Step 3 — Add NAD+
The cellular energy layer. An IV loading series (4–10 infusions) followed by maintenance with subcutaneous NMN or intranasal NAD+ provides the mitochondrial fuel that makes cellular repair possible. The energy boost is often felt rapidly; the longevity benefits (sirtuin activation, DNA repair) accrue over months.
Step 4 — Add GHK-Cu
The gene regulation and structural layer. Begin with topical GHK-Cu for skin and hair while oral liposomal provides systemic gene regulation benefit. Injectable for maximum systemic reach under physician guidance. The aesthetic benefits begin in 8–12 weeks; the gene modulation effects are ongoing.
Step 5 — Add BPC-157
The inflammation and repair layer. Oral BPC-157 addresses gut barrier integrity (the upstream driver of inflammaging) while providing systemic anti-inflammatory coverage. This reduces the oxidative burden that accelerates telomere shortening — making it directly synergistic with Epithalon.
Step 6 — GH Optimization
If IGF-1 testing shows GH decline. Sermorelin (or CJC-1295 + Ipamorelin for stronger response) restores the anabolic GH environment that supports body composition, recovery, and the downstream repair processes that aging progressively undermines. Retest IGF-1 at 3 months to confirm response.
Protocol Guides

Go Deeper — The Full Protocol Guides

Detailed dosing, cycling, lab interpretation, and provider conversation scripts for the longevity peptide stack.

Complete Protocol Guide
Epithalon Protocol Guide

Dosing protocols, cycling schedules, how to stack with NAD+ and GHK-Cu, telomere testing guidance, and a full provider conversation script for your first longevity appointment.

$27— Instant download
Get the Guide
Complete Protocol Guide
NAD+ Protocol Guide
Everything in one place — delivery methods, dosing protocols, stacking strategies, lab testing, and the doctor conversation framework. Not a PDF. An interactive experience

$27 — Instant download
Get the Guide
Related Resources

Tools & Further Reading

Start Your Longevity Protocol
Where to Begin —
The Longevity Starter Stack

Read the Epithalon profile, download the protocol guide, and use the dosing calculator to prepare for your first provider conversation.

Start with Epithalon