Independent education resourceInformation here does not replace care from a qualified health professional.
Peptide Therapy GuideClear peptide education

Educational guide

Humanin Dosage Chart - Peptide Dosages

Humanin (5 mg) Dosage Protocol A mitochondrial-derived peptide (and its potent HNG analog) studied for cytoprotection, metabolic health and longevity — preclinical only, not an approved drug. Mitochondrial-derived peptide (24 aa) signaling through GP130/STAT3/

Written by Peptide Therapy Guide Editorial Team
For education only

This guide cannot diagnose a condition or recommend a personal treatment plan. Discuss medical questions with a qualified professional.

Humanin (5 mg) Dosage Protocol

A mitochondrial-derived peptide (and its potent HNG analog) studied for cytoprotection, metabolic health and longevity — preclinical only, not an approved drug.

Mitochondrial-derived peptide (24 aa) signaling through GP130/STAT3/AKT/ERK to support cell survival and mitochondrial function.

No established human dose; research-community HNG conventions ~500–1000 mcg SC, 2–3× weekly in short cycles — HNG is ~1000× native potency.

Preclinical only — cell and animal data, no human trials, not FDA-approved.

Quickstart Highlights

Humanin is a mitochondrial-derived peptide (MDP) — a small 24-amino-acid peptide encoded within the mitochondrial genome, first identified for its ability to protect neurons against a wide range of Alzheimer’s-relevant insults[1]. In the research it is studied for cytoprotection, mitochondrial function, metabolic health and longevity, and it sits in the same family as MOTS-c and the SHLP peptides[5].

Most research vials are actually HNG (S14G-Humanin), a synthetic analog that a single amino-acid substitution makes roughly 1,000× more potent than native humanin — so HNG doses are far smaller than native-peptide figures, and confusing the two would mean massive overdosing[1]. Critically, the evidence is preclinical only — cell and animal models, with no established human dosing and no FDA approval. Everything below is provided strictly for research and educational reference, not medical advice.

Mix & measure Humanin · 5 mg

Pre-filled with this protocol’s recommended BAC water and documented starting dose — edit any field to run your own numbers.

Reconstitution math only — not dosing advice. U-100 syringe: 100 units = 1 mL. Full reconstitution guide → · Advanced calculator →

Supplies Needed

Everything a documented subcutaneous research protocol relies on. At these microgram doses, accurate small-volume measurement matters more than any single tool.

Protocol Overview

At 2.5 mg/mL a single 5 mg vial holds 2 mL of usable solution — roughly ten 500 mcg doses or five 1000 mcg doses, so one vial covers several weeks of a 2–3×-weekly cycle.

Always confirm whether a vial is native humanin or the HNG analog before calculating anything: the ~1,000× potency gap means a native-peptide dose applied to HNG would be a gross overdose.

Dosing Protocol

Research-community HNG conventions converted to U-100 units at 2.5 mg/mL. These are extrapolated from animal work, not validated human doses, and are shown for research reference only.

Conservative start

500 mcg, 2× weekly

20 units (0.20 mL)

Common range

1000 mcg, 2–3× weekly

40 units (0.40 mL)

Cycle length

4–8 weeks, then off

Why Humanin draws research interest

These are the directions researchers and the peptide community most often explore Humanin for — so you know you’re in the right place. They describe what is being studied, not proven benefits, approved uses, or promised results.

Neuroprotection

Protected neurons against amyloid-beta and other insults in preclinical models by preserving mitochondrial function — not human-proven.

Metabolic health

Improved insulin sensitivity and lowered glucose in rodent studies via centrally-mediated STAT-3 signaling.

Longevity interest

Circulating humanin declines with age and tracks with lifespan across species; twice-weekly HNG improved healthspan markers in mice.

Evidence ranges from early laboratory work to clinical trials depending on the use — the sections below cover the actual data and sources.

Add 2.0 mL bacteriostatic water to one 5 mg (HNG) vial → 2.5 mg/mL (2,500 mcg/mL).

Community HNG range 0.5–1 mg (500–1000 mcg) 2–3× weekly in 4–8 week cycles; native humanin would need far higher, potency differs ~1,000×.

Subcutaneous in research use; rotate abdomen / thigh / upper-arm sites.

Preclinical only — cell and animal data; no human trials, no established human dose, not FDA-approved.

Dosing & Reconstitution Guide

Because there are no human trials, there is no validated human dose — only animal figures and the extrapolations the research community works from. The single most important point is potency: nearly all vials sold are the HNG analog, which is roughly 1,000× stronger than native humanin.

Standard / Gradual Approach

The defining animal reference dosed the potent HNG analog at ~4 mg/kg intraperitoneally twice weekly in middle-aged mice, improving metabolic healthspan markers[6]. Research-community practice for HNG works far below any direct body-weight conversion — commonly 500–1000 mcg subcutaneously, 2–3 times per week, run in short 4–8 week cycles. Reconstituted at 2.5 mg/mL, a 500 mcg dose equals 0.20 mL (20 units on a U-100 syringe) and 1000 mcg equals 0.40 mL (40 units). These are conventions, not evidence-based human doses.

Reconstitution Steps

Reconstitution is standard for a lyophilized peptide; a modest diluent volume keeps a 5 mg vial physically sensible and makes the small microgram doses measurable.

▪Sanitize: Swab the vial stopper and the bacteriostatic-water vial with fresh alcohol pads and let them dry.

▪Add diluent slowly: Draw 2.0 mL bacteriostatic water and let it run down the inside wall of the vial — do not spray it directly onto the powder.

▪Dissolve gently: Swirl; do not shake. The solution should clear within a minute or two.

▪Store: Label with the date and refrigerate at 2–8 °C; the reconstituted vial holds ~2.5 mg/mL.

Storage Instructions

Store the lyophilized vial in the freezer or refrigerator away from light until reconstitution.

After reconstitution, keep the vial refrigerated at 2–8 °C and use within the bacteriostatic-water window (commonly cited as up to ~28 days). Discard if the solution becomes cloudy or discolored.

Important Notes

Practical points that keep small-microgram dosing consistent and honest about the evidence.

▪Know your peptide: HNG (S14G) is ~1,000× more potent than native humanin — verify which one a vial contains before dosing anything[1].

▪No human dose exists: Every figure here is extrapolated from cell and animal research; there are no human trials establishing a safe or effective human dose.

▪Sterile technique: Fresh U-100 syringe each time, straight into a puncture-proof sharps container afterward.

▪Preclinical, unknown safety: Long-term safety, drug interactions and rare risks are simply unknown for humanin in people; treat it as an experimental research tool, not a therapy.

How This Works

Humanin is encoded within the mitochondrial 16S rRNA gene and secreted as a cytoprotective signal. It acts partly through a cell-surface receptor complex involving GP130/IL6ST, activating the STAT3, AKT and ERK1/2 pathways that support cell survival — and in animals this signaling shows age-dependent effects in the hippocampus[4].

In preclinical models these pathways translate into neuroprotection against amyloid-beta toxicity by preserving mitochondrial membrane potential and blocking apoptosis[3], and into metabolic effects — centrally-mediated improvements in insulin sensitivity and lower blood glucose in rodent studies[2]. Circulating humanin declines with age in several species, which is the basis for the longevity interest — but none of this has been demonstrated as a human therapy[6].

Lifestyle Factors

The pathways humanin engages — mitochondrial resilience and insulin sensitivity — are also strongly shaped by ordinary inputs: regular exercise, sleep and a whole-food diet all independently support mitochondrial and metabolic health.

Given the preclinical-only evidence, any research use is best understood as sitting on top of, not replacing, the foundational habits that actually have human data behind them.

Potential Benefits & Side Effects

What the preclinical literature reports; none of this is human-proven, the data come from cells and animals, and outcomes in people are unknown.

Reported Effects

▪Neuroprotection (preclinical): HNG protected neurons from amyloid-beta and other Alzheimer’s-relevant insults in vitro by preventing mitochondrial dysfunction and apoptosis[3].

▪Metabolic effects (animal): Humanin and its analogs improved insulin sensitivity and lowered glucose in rodent models, including diabetic rats[2].

▪Healthspan signal (mice): Twice-weekly HNG improved metabolic healthspan markers and reduced inflammatory markers in middle-aged mice, and humanin levels track with longevity across species[6].

▪Eye/mitochondrial research: As a mitochondrial-derived peptide it is being explored for cytoprotection in age-related macular degeneration models[5].

Common Side Effects

▪Unknown human profile: With no human trials, the side-effect profile in people is simply not characterized — the honest headline caution.

▪Injection-site reactions: Local redness, soreness or swelling are the predictable effects of any subcutaneous injection.

▪Overdose from potency confusion: Using native-humanin figures with the HNG analog would deliver a massively excessive dose — a real, avoidable hazard.

▪Unverified purity: Grey-market peptide identity and purity vary; a Certificate of Analysis is the only meaningful check.

Injection Technique

Subcutaneous injection technique is identical to insulin. Accuracy matters most at these small volumes.

Pre-Injection Preparation

▪Wash hands; let the refrigerated vial come toward room temperature to reduce sting.

▪Swab the stopper and injection site; let the alcohol dry fully.

▪Draw your (microgram) dose into a fresh U-100 syringe and tap out air bubbles — double-check the unit mark at these small volumes.

Injection Procedure

▪Pinch a skinfold at the chosen site (abdomen, outer thigh or back of the upper arm).

▪Insert the needle at 45–90° and inject the solution at a steady, even pace.

▪Withdraw and apply light pressure with a clean swab — do not rub.

Post-Injection Care

▪Drop the used syringe straight into a puncture-proof sharps container.

▪Rotate sites to avoid local irritation.

▪Return the vial to the refrigerator promptly.

Recommended Source

For high-purity research peptides, we point researchers to Prime Lab Peptides for Humanin (5 mg Vial).

Why Prime Lab Peptides?

▪Top-rated on Trustpilot: Independently reviewed as the highest-rated peptide lab on Trustpilot — making it the best current source in the USA.

▪Third-party tested: Every batch ships with a Certificate of Analysis (COA) confirming purity and composition.

▪Consistent quality: ISO-aligned manufacturing and handling keep product integrity reliable batch to batch.

▪Cold-chain integrity: Temperature-controlled shipping and storage across the whole fulfilment chain.

▪Research-grade purity: Fit for educational and research use that demands high-quality peptides.

Note: Product availability and specifications subject to change. Verify current product details on supplier website.

References

View Source ↗

Humanin — frequently asked questions

Wipe the stopper with an alcohol swab, then inject your bacteriostatic water slowly down the inside wall of the vial. Let it sit and gently swirl until dissolved — never shake. Store the mixed vial in the refrigerator and draw doses with an insulin syringe. Use the calculator above to turn any dose into syringe units.

There is no single correct amount — more water simply spreads the same 5 mg of peptide across a larger volume, which makes small doses easier to measure accurately. 1 to 3 mL per vial is typical. Enter your chosen volume in the calculator above to see the resulting concentration and syringe units.

On a U-100 insulin syringe, 100 units equal 1 mL, so 1 unit equals 0.01 mL. The calculator above converts your draw volume into these units automatically so you can measure without doing the math by hand.

Keep the reconstituted vial refrigerated at roughly 2 to 8 degrees Celsius, away from light, and avoid freezing it. Reconstituted research peptides are generally used within a few weeks. Always follow the specific guidance supplied with your product.

Divide the vial strength of 5 mg by the amount you use per injection. The calculator above reports this as "doses per vial" the moment you enter a dose.

No. Humanin is sold strictly for laboratory and research purposes and is not approved by the FDA or other regulators for human use. Everything on this page is research information, not medical advice — consult a licensed healthcare professional before any use.

New protocols & dosing updates

Reconstitution charts, new peptide protocols and safety updates — straight to your inbox. No spam, unsubscribe anytime.

Written by Dr. Aimen Arij, PharmD

Related Longevity protocols

Connected reading

Helpful context for this guide

Source-derived material selected through this article’s indexed topics.

Related questions

01Thymogen — frequently asked questions

Wipe the stopper with an alcohol swab, then inject your bacteriostatic water slowly down the inside wall of the vial. Let it sit and gently swirl until dissolved — never shake. Store the mixed vial in the refrigerator and draw doses with an insulin syringe. Use the calculator above to turn any dose into syringe units. There is no single correct amount — more water simply spreads the same 10 mg of peptide across a larger volume, which makes small doses easier to measure accurately. 1 to 3 mL per vial is typical. Enter your chosen volume in the calculator above to see the resulting concentration and syringe units. On a U-100 insulin syringe, 100 units equal 1 mL, so 1 unit equals 0.01 mL. The calculator above converts your draw volume into these units automatically so you can measure without doing the math by hand. Keep the reconstituted vial refrigerated at roughly 2 to 8 degrees Celsius, away from light, and avoid freezing it. Reconstituted research peptides are generally used within a few weeks. Always follow the specific guidance supplied with your product. Divide the vial strength of 10 mg by the amount you use per injection. The calculator above reports this as "doses per vial" the moment you enter a dose. No. Thymogen is sold strictly for laboratory and research purposes and is not approved by the FDA or other regulators for human use. Everything on this page is research information, not medical advice — consult a licensed healthcare professional before any use.

Source: dosagepeptide.com ↗
02Pemvidutide — frequently asked questions

Wipe the stopper with an alcohol swab, then inject your bacteriostatic water slowly down the inside wall of the vial. Let it sit and gently swirl until dissolved — never shake. Store the mixed vial in the refrigerator and draw doses with an insulin syringe. Use the calculator above to turn any dose into syringe units. There is no single correct amount — more water simply spreads the same 5 mg of peptide across a larger volume, which makes small doses easier to measure accurately. 1 to 3 mL per vial is typical. Enter your chosen volume in the calculator above to see the resulting concentration and syringe units. On a U-100 insulin syringe, 100 units equal 1 mL, so 1 unit equals 0.01 mL. The calculator above converts your draw volume into these units automatically so you can measure without doing the math by hand. Keep the reconstituted vial refrigerated at roughly 2 to 8 degrees Celsius, away from light, and avoid freezing it. Reconstituted research peptides are generally used within a few weeks. Always follow the specific guidance supplied with your product. Divide the vial strength of 5 mg by the amount you use per injection. The calculator above reports this as "doses per vial" the moment you enter a dose. No. Pemvidutide is sold strictly for laboratory and research purposes and is not approved by the FDA or other regulators for human use. Everything on this page is research information, not medical advice — consult a licensed healthcare professional before any use.

Source: dosagepeptide.com ↗
03Amycretin — frequently asked questions

Wipe the stopper with an alcohol swab, then inject your bacteriostatic water slowly down the inside wall of the vial. Let it sit and gently swirl until dissolved — never shake. Store the mixed vial in the refrigerator and draw doses with an insulin syringe. Use the calculator above to turn any dose into syringe units. There is no single correct amount — more water simply spreads the same 5 mg of peptide across a larger volume, which makes small doses easier to measure accurately. 1 to 3 mL per vial is typical. Enter your chosen volume in the calculator above to see the resulting concentration and syringe units. On a U-100 insulin syringe, 100 units equal 1 mL, so 1 unit equals 0.01 mL. The calculator above converts your draw volume into these units automatically so you can measure without doing the math by hand. Keep the reconstituted vial refrigerated at roughly 2 to 8 degrees Celsius, away from light, and avoid freezing it. Reconstituted research peptides are generally used within a few weeks. Always follow the specific guidance supplied with your product. Divide the vial strength of 5 mg by the amount you use per injection. The calculator above reports this as "doses per vial" the moment you enter a dose. No. Amycretin is sold strictly for laboratory and research purposes and is not approved by the FDA or other regulators for human use. Everything on this page is research information, not medical advice — consult a licensed healthcare professional before any use.

Source: dosagepeptide.com ↗
04IGF-1 DES — frequently asked questions

Wipe the stopper with an alcohol swab, then inject your bacteriostatic water slowly down the inside wall of the vial. Let it sit and gently swirl until dissolved — never shake. Store the mixed vial in the refrigerator and draw doses with an insulin syringe. Use the calculator above to turn any dose into syringe units. There is no single correct amount — more water simply spreads the same 1 mg of peptide across a larger volume, which makes small doses easier to measure accurately. 1 to 3 mL per vial is typical. Enter your chosen volume in the calculator above to see the resulting concentration and syringe units. On a U-100 insulin syringe, 100 units equal 1 mL, so 1 unit equals 0.01 mL. The calculator above converts your draw volume into these units automatically so you can measure without doing the math by hand. Keep the reconstituted vial refrigerated at roughly 2 to 8 degrees Celsius, away from light, and avoid freezing it. Reconstituted research peptides are generally used within a few weeks. Always follow the specific guidance supplied with your product. Divide the vial strength of 1 mg by the amount you use per injection. The calculator above reports this as "doses per vial" the moment you enter a dose. No. IGF-1 DES is sold strictly for laboratory and research purposes and is not approved by the FDA or other regulators for human use. Everything on this page is research information, not medical advice — consult a licensed healthcare professional before any use.

Source: dosagepeptide.com ↗
05AHK-Cu — frequently asked questions

Wipe the stopper with an alcohol swab, then inject your bacteriostatic water slowly down the inside wall of the vial. Let it sit and gently swirl until dissolved — never shake. Store the mixed vial in the refrigerator and draw doses with an insulin syringe. Use the calculator above to turn any dose into syringe units. There is no single correct amount — more water simply spreads the same 50 mg of peptide across a larger volume, which makes small doses easier to measure accurately. 1 to 3 mL per vial is typical. Enter your chosen volume in the calculator above to see the resulting concentration and syringe units. On a U-100 insulin syringe, 100 units equal 1 mL, so 1 unit equals 0.01 mL. The calculator above converts your draw volume into these units automatically so you can measure without doing the math by hand. Keep the reconstituted vial refrigerated at roughly 2 to 8 degrees Celsius, away from light, and avoid freezing it. Reconstituted research peptides are generally used within a few weeks. Always follow the specific guidance supplied with your product. Divide the vial strength of 50 mg by the amount you use per injection. The calculator above reports this as "doses per vial" the moment you enter a dose. No. AHK-Cu is sold strictly for laboratory and research purposes and is not approved by the FDA or other regulators for human use. Everything on this page is research information, not medical advice — consult a licensed healthcare professional before any use.

Source: dosagepeptide.com ↗
Research context

Read sources and limitations before applying a claim.

Safety and Tolerability in the Research Setting

Safety and efficacy are separate questions, and it is entirely possible for a compound to be well tolerated while remaining unproven for the condition of interest. That is the current situation for NAD+ precursors in Parkinson’s disease. The short-term tolerability data, particularly for oral nicotinamide riboside, are reassuring within the limits of the trials conducted, but they are not a statement about long-term safety, about frail or elderly populations over years, or about drug interactions in people taking multiple Parkinson’s medications. The most directly relevant safety dataset is NR-SAFE, which was explicitly designed to probe tolerability at a high dose. Over four weeks, 3,000 mg of NR daily produced only mild adverse events, with no moderate or severe events and no significant excess over placebo; the most frequently reported events in the NR arm included extrapyramidal symptoms, headache, tremor, muscle cramps, fatigue, nausea, and dyspepsia, several of which overlap with the underlying disease and its treatment.2 The absence of painful flushing is notable because flushing is a classic dose-limiting effect of nicotinic acid (niacin); NR and nicotinamide generally avoid the flushing that niacin causes, which is one reason they are favored for chronic dosing. The lower-dose NADPARK trial similarly reported that 1,000 mg daily was well tolerated over 30 days.1 Broader supplement-safety literature on NR in non-Parkinson populations has generally supported tolerability at commonly studied doses, and NMN has likewise been reported to raise blood NAD+ safely in short studies of healthy adults.13 These reassurances come with substantial caveats that a careful reader should hold in mind. First, the trials are small and short. Twenty participants over four weeks, or thirty over one month, cannot detect uncommon adverse events or effects that only emerge with months to years of exposure, which is exactly the exposure that disease modification would require. Second, the populations were selected: early-stage, often newly diagnosed patients able to participate in a trial, not the full spectrum of advanced disease, multimorbidity, and polypharmacy seen in practice. Third, theoretical concerns exist that have not been resolved in humans. Because NAD+ metabolism intersects with cell proliferation and with the kynurenine pathway, and because some preclinical work has raised tissue-specific concerns about chronic high-dose precursor exposure (for example, questions about metabolite accumulation with sustained oral NMN in animal models), long-term safety cannot be assumed from short-term tolerability.13 Fourth, methylation load is a plausible consideration: clearance of excess nicotinamide consumes methyl groups, and the metabolic consequences of chronically high precursor intake over years are not well characterized in this population. There is also the matter of source and quality. In a research context, the identity, purity, and endotoxin status of a compound materially affect both the validity of an experiment and the safety of any handling. Injectable NAD+ preparations used outside regulated trials vary widely in provenance, and intravenous NAD+ administration in particular has been associated with infusion-related discomfort (nausea, chest tightness, flushing) that is typically managed by slowing the infusion rate but underscores that route and formulation matter.4 None of this constitutes clinical guidance. The appropriate summary is that oral NR appears well tolerated in the short term at the doses tested in early Parkinson’s trials, that other precursors and routes have thinner safety records, and that long-term safety in Parkinson’s disease specifically remains unestablished pending completed, published, adequately long trials.

Source: dosagepeptide.com ↗

How should Sermorelin be handled in a research setting?

As a lyophilized powder, it is reconstituted with sterile or bacteriostatic water using gentle technique (swirl, do not shake), stored cold and dark, and protected from freeze-thaw cycles — and, because its DPP-4-sensitive structure makes it relatively fragile, care with temperature and timing matters more than for hardier peptides.3 Handling quality preserves activity but has no bearing on the unresolved questions of long-term benefit and safety.

Source: dosagepeptide.com ↗
Practical and safety references

These excerpts are educational, not personalised medical instructions.

How-to reference

How to convert mcg to mg (and back)

Because the factor is exactly 1000, every conversion is a decimal-point move of three places — no calculator strictly required once you see the pattern: mcg → mg: divide by 1000, i.e. move the decimal point three places to the left. 500 mcg → 0.5 mg; 100 mcg → 0.1 mg; 1500 mcg → 1.5 mg. mg → mcg: multiply by 1000, i.e. move the decimal point three places to the right. 0.5 mg → 500 mcg; 2 mg → 2000 mcg; 1.25 mg → 1250 mcg. The tool above does the same move for you and trims trailing zeros, so you can paste in any value — whole or fractional — and read the exact counterpart.

Source: dosagepeptide.com ↗
Dosage reference

SLU-PP-332 (5mg Vial) Dosage Protocol

Experimental ERR-agonist "exercise mimetic" (small molecule) — preclinical (mouse) only; not approved.

Source: dosagepeptide.com ↗
P

About the author

Peptide Therapy Guide Editorial Team

Editorial team for Peptide Therapy Guide.

View all articles →