Convert a research vial into an accurate nasal spray with a known mcg-per-spray dose.
Adjust each field to match your vial and target dose.
Peptides commonly delivered as nasal sprays — Selank, Semax, PT-141, Kisspeptin-10, Epithalon — need a two-step calculation: first the reconstituted vial concentration, then the volume drawn into a spray bottle and the mcg-per-spray delivered by that bottle.
This calculator does both. Enter the peptide mg, the mL you extracted into the spray bottle, the bottle's total volume, and either the total number of sprays the bottle delivers or your target dose per spray. You'll get the exact mcg (or mg) per spray, the saline volume to top up with, and the total sprays available.
Typical spray bottles deliver 0.1 mL per pump; a 30 mL bottle gives roughly 300 sprays. If your vial was 10 mg and you drew 2 mL into a 30 mL bottle (topped up with 28 mL of sterile saline), the whole bottle contains 10 mg — divided over 300 sprays, that's about 33 mcg per spray.
Most 30 mL nasal spray pumps deliver ~0.1 mL per spray, giving roughly 300 sprays. Check your bottle's spec — some deliver 0.05 mL (600 sprays) or 0.14 mL (~215 sprays).
Saline dilutes the reconstituted peptide up to your bottle's total volume, giving you a predictable mcg-per-spray dose. Sterile saline (0.9%) is the standard choice.
For very short-term use bacteriostatic water works, but sterile saline is closer to intranasal-physiological pH and osmolarity for regular research spraying.
Selank, Semax, PT-141, Kisspeptin-10, Oxytocin, and Epithalon are the most common — anything with reasonable intranasal bioavailability where a small mcg dose is desired.
Reconstitute a 5 mg or 10 mg BPC-157 vial and see the exact insulin syringe units for your research dose.
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Titrate a tirzepatide vial from 2.5 mg to 15 mg with clean insulin-unit doses.
Compute exact retatrutide titration doses in insulin units.
Dial in GHK-Cu concentration and dose in insulin units.