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PrecisePepResearch Library

Research information only. PrecisePep is an educational library. It is not medical advice and is not intended to assist, encourage or enable self-administration. The compounds documented here are research chemicals — most are not approved for human use. Read the full disclaimer.

Tools

Reconstitution &dosage calculator

Enter a vial strength, a diluent volume and a target dose. The calculator returns the concentration, the draw volume, the syringe units, how many doses the vial holds and how long it lasts — with a live syringe read-out and a per-component breakdown for blends.

What this tool is

This calculator performs arithmetic on numbers you enter. It has no knowledge of any individual, makes no judgement about whether a figure is appropriate or safe, and is provided to teach reconstitution mathematics — not to plan an administration.

01

Inputs

Vial strength total peptide in the vial
mg
Blend composition for multi-component vials
Bacteriostatic water you choose this — it sets the concentration
mL
Target dose per administration
Syringe U-100 · 100 units = 1 mL
Draw to
units

1 mL · 100 units
Concentration
Per syringe unit
Draw volume
Doses in vial
Vial lasts
Reconstitution
Reconstitution guide ↓

The arithmetic

Three numbers, one division

Reconstitution mathematics is simpler than it looks, and understanding it is more useful than any calculator — because it lets you check the calculator.

1 · Concentration

vial mg ÷ diluent mL = mg/mL

A 10 mg vial in 2 mL is 5 mg/mL. This is the only number that matters, and you set it when you choose the diluent volume.

2 · Volume

dose mg ÷ mg/mL = mL

A 1 mg dose at 5 mg/mL is 0.2 mL. Units and milligrams are different things; this step converts between them.

3 · Units

mL × 100 = units

U-100 means 100 units per millilitre. 0.2 mL is 20 units. This is the only place the syringe itself enters the calculation.

Why "draw to 10 units" is meaningless on its own

Two people can use the same compound at the same dose and need completely different unit readings, because they chose different diluent volumes. A unit figure is only meaningful alongside the concentration it came from. Any protocol that states units without stating the reconstitution is incomplete.

Laboratory technique

How to reconstitute lyophilised peptide

Sterile handling reference for laboratory work with lyophilised material and bacteriostatic water. Reproduced for education. This is not an instruction to prepare anything for administration to a person.

Work out the concentration before you touch anything

Reconstitution is one division: vial strength ÷ diluent volume = concentration. A 10 mg vial in 2 mL is 5 mg/mL, which on a U-100 insulin syringe is 50 mcg per unit. Everything downstream follows from that one number.

The diluent volume is a free choice, and choosing it well is the whole skill. More diluent means a lower concentration, a larger draw volume, and a dose spread across more syringe marks — which reduces measurement error. Less diluent means smaller draws and less refrigerator space. For microgram-level doses, err toward more.

Bring everything to room temperature

Take the lyophilised vial and the bacteriostatic water out of cold storage and let them equilibrate. Cold liquid injected into a cold vial dissolves more slowly and is more likely to be handled roughly to compensate.

Inspect the powder cake. It should be intact and white to off-white. A collapsed, discoloured or melted-looking cake indicates the vial has been through a temperature excursion.

Prepare a clean field and clean hands

Wash hands. Clear and wipe down a flat surface. Lay out: the peptide vial, the diluent vial, a reconstitution syringe, alcohol pads, and a sharps container — before opening anything.

Remove the flip caps from both vials and swab both rubber stoppers with 70% isopropyl alcohol. Let them air dry; alcohol needs contact time to work, and wiping it off immediately defeats the purpose. The stopper is not sterile once the cap is off, and it stops being sterile again the moment it is touched.

Draw the diluent

Draw the calculated volume of bacteriostatic water into the reconstitution syringe. Expel air bubbles and verify the volume against the barrel markings at eye level — parallax at an angle is a real source of error.

Bacteriostatic water contains 0.9% benzyl alcohol as a preservative and permits repeated withdrawals over an extended period. Sterile water has no preservative and is appropriate only where the vial will be used once, or where a compound is documented to be incompatible with benzyl alcohol.

Add the diluent down the wall of the vial

Insert the needle through the stopper at a slight angle and direct the stream against the inside wall of the vial so it runs down onto the powder rather than jetting into it. Tilting the vial to roughly 45° makes this easier and reduces foaming.

Add the diluent slowly. Peptides are long chains held in a fragile three-dimensional shape, and the shear force of a fast stream hitting the powder directly can break them.

Swirl — never shake

Roll the vial gently between the palms or swirl it in slow circles. Leave it to stand for a few minutes if the powder has not fully dissolved; most peptides go into solution within a minute or two without any agitation at all.

Shaking denatures peptides. It also creates foam, and foam at the air–liquid interface is where denaturation happens fastest. If the solution foams, let it settle before drawing.

Inspect the solution

The solution should be clear and free of particulate. Exceptions worth knowing: GHK-Cu and any blend containing it will be distinctly blue — that is the copper complex, and its absence is the red flag rather than its presence.

Cloudiness, haze, visible fibrils or floating particulate indicate aggregation, degradation or contamination. Amylin-family peptides such as cagrilintide are particularly aggregation-prone. A hazy vial is not a cosmetic problem.

Label the vial immediately

Write on the vial: compound, vial strength, diluent volume, resulting concentration, and the date of reconstitution. Do it now, not later.

An unlabelled vial in a fridge two months from now is unusable — not because the contents have necessarily degraded, but because nothing can be calculated from it and nothing recorded about it means anything. This is the single most common failure in self-directed work, and it is free to avoid.

Store correctly

Reconstituted: refrigerate at 2–8 °C, protected from light. Store toward the back of a shelf, not in the door — the door cycles through the widest temperature swings.

Lyophilised (unreconstituted): −20 °C for long-term storage, refrigerated for shorter periods, protected from light. Lyophilised peptide is dramatically more stable than solution, which is why vials are supplied that way.

Avoid repeated freeze–thaw cycles of reconstituted solution. Each cycle is a stress event.

Understand the in-use window

General reference figures for peptide solutions are on the order of weeks at 2–8 °C and months at −20 °C — but stability is compound-specific and the figures circulating in the research community are largely unverified for the specific molecules on this site.

The practical issue is arithmetic: a 10 mg vial at a 1 mg weekly dose is ten weeks in the refrigerator. That is well beyond the in-use period any approved peptide product would carry. The calculator flags this when it happens.

Failure modes

The errors that actually happen

Most reconstitution mistakes are not exotic. They are unit confusion, poor concentration choices, and unlabelled vials.

Confusing units with millilitres

An insulin syringe is marked in units, not millilitres. On a U-100 syringe, 100 units = 1 mL, so 20 units = 0.2 mL. Reading "20" as 20 mL, or as 20 mcg, is a ten- to hundred-fold error and it is the single most dangerous misreading in this entire process.

Confusing mcg with mg

1 mg = 1000 mcg. A dose written as "250" means completely different things in the two units. Every figure on this site states its unit explicitly for exactly this reason.

Assuming the diluent volume is fixed

It is not. It is a free choice that sets the concentration. Two people using the same vial and the same dose can have completely different unit readings because they chose different diluent volumes — which is why sharing "draw to 10 units" between people is meaningless without the concentration.

Choosing a concentration that makes doses unmeasurable

Putting 1 mL into a 10 mg vial gives 10 mg/mL — so a 100 mcg dose is 1 unit. One unit is a single mark on the syringe, and ordinary error there is enormous in percentage terms. Use more diluent for small doses.

Reusing the syringe used for reconstitution

Use a separate syringe for transferring diluent and for drawing doses. The reconstitution needle has passed through two stoppers.

Not letting the alcohol dry

Isopropyl needs contact time. Swabbing and immediately piercing gives you the ritual without the disinfection.

Trusting the label without any verification

Research-grade material is not manufactured to pharmaceutical standard. Identity, purity and content vary between suppliers and between batches. A batch-specific third-party certificate of analysis is the only meaningful check, and even that is not a guarantee.

Mixing two peptides in one syringe for convenience

Compatibility, pH interaction and stability between two separately reconstituted peptides are not characterised for any combination on this site. It is common practice and it is untested practice.

Reference

Storage & stability

General reference figures. Stability is compound-specific and most figures circulating for research peptides are unverified for the specific molecules involved.

StateTemperatureGeneral reference periodNotes
Lyophilised (sealed)−20 °CMonths to yearsMost stable state; protect from light
Lyophilised (sealed)2–8 °CWeeks to monthsAdequate for shorter-term storage
Reconstituted2–8 °CWeeksCompound-specific; the practical working state
Reconstituted−20 °CMonthsAvoid repeated freeze–thaw cycles
AnyRoom temperatureHours to daysShipping tolerance, not a storage condition
Bacteriostatic versus sterile water

Bacteriostatic water contains 0.9% benzyl alcohol, which suppresses microbial growth and permits repeated withdrawals from one vial over an extended period. It is the standard choice for any vial that will be drawn from more than once.

Sterile water for injection contains no preservative. Once entered it offers no protection against microbial growth and is appropriate only for single-use preparation, or where a specific compound is documented to be incompatible with benzyl alcohol.

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