Hexarelin

What a Hexarelin dose actually costs

Cost per dose is the vial price divided by the whole doses that vial holds. At a 0.2 mg dose, a 2 mg Hexarelin vial yields 10 whole doses and a 5 mg vial yields 25, both with 0 mg stranded. Nothing is paid for and then discarded at that dose.

Hexarelin: doses per vial at 0.2 mg, and what is stranded
VialDoseWhole dosesStrandedWasted
2 mg0.2 mg100 mg0%
5 mg0.2 mg250 mg0%

Computed by the DoseGraph engine at build time, not written by hand. Run your own numbers in the reconstitution calculator.

The only equation that matters

Cost per dose is not the price per milligram printed on a listing. It is the vial price divided by the number of complete doses you can actually draw from that vial. Those two figures diverge whenever a dose does not divide evenly into the vial contents.

The gap is stranded product. If a vial holds a run of whole doses plus a fraction left over, that fraction was paid for at the same rate as everything else and cannot be used as a dose. It is prepaid waste. The honest cost per dose spreads the entire vial price across only the doses you can use.

That is why the table on this page reports whole doses and stranded milligrams side by side. The first tells you what you get. The second tells you what you bought and cannot use.

What the computed table shows

The two rows cover the vial sizes Hexarelin is sold in, both measured against a 0.2 mg dose. Notice first that neither row strands anything. Both report 0 mg left over and 0% wasted. That is the clean case, and it means cost per dose here is governed entirely by what you pay for the vial, not by any hidden remainder.

Second, the dose counts differ by more than the vial sizes suggest at a glance: 10 whole doses from the 2 mg vial, 25 from the 5 mg vial. If the larger vial does not cost more than two and a half times the smaller one, its cost per dose is lower. That comparison is the whole purchasing decision, and it is arithmetic you can run against any two listed prices.

Third, the summary flags the 2 mg vial as dividing most evenly at a 0.2 mg dose. Both divide without remainder, so evenness is not the deciding factor between them. What separates them is total outlay per vial and how long a vial stays usable once reconstituted, which is a storage question rather than a cost calculation.

Listings also show a 0.1 mg dose. The computed data here covers the 0.2 mg case only, so we publish no dose counts or stranded figures for the smaller amount.

Water volume changes the syringe reading, not the cost

Hexarelin vials are reconstituted with bacteriostatic water, commonly at 1 mL, 2 mL, or 3 mL. It is worth being explicit about what that choice does and does not affect.

More water lowers the concentration, so the same dose occupies more volume and reads as more units on a syringe. Less water raises the concentration and shrinks the reading. The milligrams in the vial do not change. The number of whole doses does not change. Stranded product does not change. Water volume is a measurement convenience, chosen so a dose lands somewhere readable on the syringe barrel rather than crowded against the plunger.

None of the three water volumes alters the cost figures on this page. If you see a cost claim that varies with reconstitution volume, the arithmetic behind it is wrong.

Costs this page does not compute

The table accounts for peptide only. A real per dose cost also absorbs bacteriostatic water, syringes, alcohol swabs, shipping, and anything discarded because a reconstituted vial was not used in time. We publish no figures for those, because they vary by supplier and country and we have no verified source for them. Peptide cost per dose is a floor, not a full accounting.

What we do not know about Hexarelin

Hexarelin is not approved by any regulator for human use. There is no approved label, no approved dose, and no clinical guidance behind the amounts that appear in listings.

We hold no reliable human pharmacokinetic data for Hexarelin. This site therefore makes no claim about its half life, how long it takes to clear, or whether it accumulates with repeated administration. Everything here concerns concentration, volume, and the division of a vial into whole doses. That is arithmetic, and arithmetic is all it is.

This site has no medical review. It does not tell you what dose to take, what to expect, what adverse effects occur, or whether Hexarelin is safe or effective. Those are clinical questions and they need a clinician, not a calculator.

What we do not know

We hold no reliable human pharmacokinetic data for Hexarelin, so this site makes no claims about its half life, how long it takes to clear, or how it accumulates. The arithmetic below concerns concentration and volume only.

This page answers arithmetic and handling questions. It does not tell you what dose to take, what to expect, or whether anything is appropriate for you, and there is no medical review behind it.

Common questions

How do I work out my own cost per Hexarelin dose?
Take the price you paid for the vial and divide it by the whole doses that vial holds at your dose size. Use the whole dose count so that any stranded product is absorbed into the price of the doses you can actually use. The table on this page supplies the whole dose counts for a 0.2 mg dose.
Is the 5 mg vial cheaper per dose than the 2 mg vial?
Only if its price is less than two and a half times the 2 mg vial price, because it yields 25 whole doses at a 0.2 mg dose against 10 from the smaller vial. Below that ratio the larger vial wins on cost per dose. Above it, the smaller vial does. Run the comparison against the prices in front of you.
Does adding more bacteriostatic water make a vial go further?
No. Water changes concentration, so the same dose reads as a different number of units on the syringe, but the milligrams in the vial are fixed. The number of whole doses at 1 mL, 2 mL, or 3 mL is identical. Cost per dose is unaffected by reconstitution volume.
Why is stranded product listed as 0 mg for both vials?
Because a 0.2 mg dose divides evenly into both the 2 mg and 5 mg vial contents, leaving no remainder. With no remainder, nothing is paid for and then discarded. Stranded product becomes a factor only when a dose and a vial size do not divide cleanly.
How long does Hexarelin last in the body?
We do not answer that. There is no reliable human pharmacokinetic data for Hexarelin that we can stand behind, so this site makes no claim about half life, clearance, or accumulation. The figures here are limited to how a vial divides into doses.
Which dose should I use?
This page will not tell you. Hexarelin is not approved by any regulator for human use, there is no approved label to reference, and this site has no medical review. The 0.1 mg and 0.2 mg figures appear here because they are what listings show, not as a recommendation. Ask a clinician.

Published 2026-08-24. Last reviewed 2026-08-24. Tier C compound. How we compute this.

When a number here changes, you hear about it

Occasional email: new calculators, new reference tables, and a note whenever a constant on this site is revised. No schedule, nothing else.