CJC-1295 and ipamorelin are often sold as a blend in one vial. Reconstituting a blend works the same as a single peptide — what matters is the total peptide milligrams in the vial and the water you add. Here’s how the units work out, with a free calculator. It is mixing-math, not a dose recommendation.
A blend vial lists a total, for example 5 mg CJC-1295 + 5 mg ipamorelin (10 mg total). The concentration and the units to draw come from that total and your water: Concentration = total mg × 1000 ÷ water mL (mcg/mL); Units = dose ÷ concentration × 100 on a U-100 syringe. Both peptides are dissolved together, so one draw contains both in the vial’s ratio.
Illustrative only, not a recommendation. A 10 mg blend (5+5) in 2 mL of bacteriostatic water is 5 mg/mL total. A 0.4 mg total draw = 0.08 mL = 8 units — which delivers the two peptides in the vial’s built-in ratio.
Blends are commonly reconstituted with bacteriostatic water, then kept refrigerated and out of the light; don’t freeze the mixed solution. See how long a reconstituted vial lasts.
Enter the blend’s total mg and your water in the free calculator for the exact units.
The same way as a single peptide: add bacteriostatic water to the powder. The units come from the vial’s total milligrams and the water you add.
There is no single right amount — more water is more dilute. Pick a volume that gives a clean unit count; the calculator can solve for it.
No. You read units the same way. One draw simply contains both peptides in the vial’s fixed ratio.
Refrigerate it, keep it out of the light, and do not freeze the solution; use within its window.
No — mixing-math only. Dose decisions belong with your clinician.