BPC-157 Reconstitution Calculator

Enter your vial size, bacteriostatic water, and dose to get your exact draw in insulin syringe units.

Reconstitution calculator

Enter your peptide amount, diluent volume, and target dose to see your draw.

Units
0102030405060708090100
Target Dose
Syringe Fill
Doses per compound

Nothing leaves your device.

Draw 0.10 ml (10 units on a U-100 insulin syringe) for a 250 mcg dose.

You've got the math. Now the hard part is the schedule.

PepKit tracks doses, pins, and vial expirations — on the App Store.

Mixing BPC-157: What to Know Before You Reconstitute

BPC-157 is typically sold as a lyophilized (freeze-dried) powder in a small vacuum-sealed vial, most commonly in 5 mg or 10 mg sizes. In that state it is shelf-stable but not usable. The powder has to be reconstituted with a liquid before it can be drawn into a syringe. That liquid is almost always bacteriostatic water, and the mixing step is where most of the questions and most of the mistakes happen.

  1. Bacteriostatic water vs. sterile water

    Bacteriostatic water is sterile water with 0.9% benzyl alcohol added, which inhibits bacterial growth in the vial after it has been punctured. That is the reason it is the standard choice for peptides used across multiple doses. The same vial gets drawn from repeatedly over days or weeks, and plain sterile water offers no protection once the seal is broken. Sterile water is generally treated as a single-use diluent. If a vial of BPC-157 will be used over more than one session, which is nearly always the case, bacteriostatic water is what people use.

  2. How much water to add

    There is no single correct amount, and this trips people up more than anything else. The volume of water you add does not change how much BPC-157 is in the vial. A 5 mg vial contains 5 mg whether you add 1 mL or 3 mL. What the water volume changes is the concentration, and therefore how much liquid you draw for a given dose. Less water means a more concentrated solution and a smaller draw. More water means a more dilute solution and a larger, easier-to-measure draw.

    A common starting point for a 5 mg vial is 2 mL of bacteriostatic water, which produces a 2.5 mg/mL solution. At that concentration, each unit on a U-100 insulin syringe holds 25 mcg. But the right volume depends on your target dose and how many units you want to be counting on the syringe. That is precisely what the calculator above is for. Enter the vial size, the water volume, and your protocol's dose, and it shows the exact draw in units, with the syringe fill so you can sanity-check it visually.

  3. Mixing technique

    The convention with peptides is to be gentle. Rather than injecting the water directly into the powder, people typically angle the needle so the stream runs down the inside wall of the vial, then let it sit or swirl it slowly until the powder fully dissolves. Shaking is generally avoided. It causes foaming and is widely considered bad practice with peptides. A fully dissolved vial of BPC-157 should be clear, with no visible particles. If it stays cloudy or has floating material after gentle swirling, something is off, and most people will not use it.

  4. Storage before and after mixing

    Unopened lyophilized vials are typically stored somewhere cool and dark. Refrigeration in that state is common, though vendors vary in their guidance. After reconstitution the picture changes. The mixed vial goes in the refrigerator, and the widely followed convention is to discard it after about 28 days. That number comes from the bacteriostatic water itself, since 28 days is the standard window applied to punctured bacteriostatic vials, so the clock starts when you mix, not when you first draw. It is worth writing the mix date on the vial, because three weeks in, nobody remembers. Tracking vial age and expiration automatically is one of the things PepKit does, alongside logging each dose.

  5. The syringe

    BPC-157 doses are small volumes, so the standard tool is a U-100 insulin syringe, usually the 1 mL 100-unit size, sometimes 0.5 mL or 0.3 mL. On a U-100 syringe, 100 units equal 1 mL, so each unit is 0.01 mL. Doses are usually communicated in mcg for BPC-157, which is why the math from mg in the vial to mcg per unit to units to draw is where people reach for a calculator instead of doing it at the counter.

  6. Common mistakes worth avoiding

    The ones that come up constantly: shaking the vial instead of swirling, using single-use sterile water for a multi-week vial, forgetting to note the reconstitution date, redoing the dose math from memory each time instead of working it out once and saving it, and changing the water volume on a new vial without recalculating. The same vial size with different water is a different draw.

FAQ

How much bacteriostatic water do I mix with 5 mg of BPC-157?
There is no single right amount. Water volume sets the concentration, not the total peptide. A common choice is 2 mL, giving 2.5 mg/mL, which works out to 25 mcg per unit on a U-100 syringe. Use the calculator above with your target dose to pick a volume that gives you an easy draw to measure.
Can I use sterile water instead of bacteriostatic water?
Sterile water is generally treated as single-use because it has no preservative. For a vial drawn from over days or weeks, bacteriostatic water is the standard choice.
How long does reconstituted BPC-157 last in the fridge?
The widely followed convention is about 28 days refrigerated, based on the standard discard window for punctured bacteriostatic water. The clock starts at mixing. Writing the date on the vial, or tracking it in PepKit, avoids the guessing.
Why is my BPC-157 cloudy after mixing?
A properly dissolved vial should be clear. Cloudiness or particles after gentle swirling usually means incomplete dissolution or a problem with the vial, and most people will not use a vial that does not clear.
What size syringe do people use for BPC-157?
U-100 insulin syringes, most commonly the 1 mL 100-unit size. On U-100, one unit is 0.01 mL, which is why doses are counted in units.

PepKit's calculator is an arithmetic tool for reconstitution math. It does not provide dosing recommendations or medical advice. Follow the guidance of your provider or protocol.