What the 'Superhuman Blend' actually contains, how the components are typically dosed, how to reconstitute a multi-peptide vial, and the cycle length most…
What the 'Superhuman Blend' actually contains, how the components are typically dosed, how to reconstitute a multi-peptide vial, and the cycle length most protocols use.
'Superhuman Blend' is a marketing name, not a standardised formula. In practice it almost always refers to a single vial combining a tissue-repair peptide, a systemic recovery peptide, and — in most versions — a copper peptide for skin and connective tissue. The most common composition sold in the U.S. is BPC-157 with TB-500, frequently with GHK-Cu added. Because the name is not standardised, the only figure that matters is the mg-per-component printed on the vial and its COA.
Two vials both labelled 'Superhuman Blend' can differ by a factor of five per component. Before calculating anything, confirm three numbers: total mg in the vial, mg of each individual component, and the COA lot that verifies both. If a supplier cannot give you the per-component breakdown, no dosing guide can be applied safely — the math has nowhere to start.
The ranges below are the ones documented across the research literature for each component individually. A blend does not change the per-component logic; it simply means one injection delivers all of them at whatever ratio the vial was compounded at.
Note the frequency mismatch. BPC-157 is a near-daily compound; TB-500 is twice weekly; GHK-Cu sits in between. A fixed blend forces all three onto one schedule, which is the single biggest trade-off of buying a blend instead of separate vials. Most blend protocols resolve this by following the TB-500 cadence and accepting a lower cumulative BPC-157 exposure.
Reconstitution works on the total volume of bacteriostatic water you add, not on the number of components. Add your chosen volume, then divide each component's total mg by that volume to get its concentration. Example: a 10 mg BPC-157 / 10 mg TB-500 vial reconstituted with 2 mL of bacteriostatic water yields 5 mg/mL of each; 0.1 mL on an insulin syringe (10 units) therefore delivers 500 mcg of each component. Our reconstitution calculator does this arithmetic for any vial size and target dose.
Repair-oriented blend protocols in the literature run in defined blocks rather than continuously — commonly four to eight weeks, followed by an equivalent off period. Continuous year-round administration is not something the research base supports, and it removes your ability to judge whether the compound is doing anything at all.
Lyophilised (powder) vials are stable refrigerated and should be kept out of light. Once reconstituted with bacteriostatic water, keep the vial refrigerated at 2–8 °C and treat the working window as roughly 28 days — the same window the preservative in bacteriostatic water is rated for. Never freeze a reconstituted vial and never reconstitute with sterile (non-bacteriostatic) water if you intend to use it across multiple days.
We stock BPC-157 and TB-500 as individual vials and as a BPC-157/TB-500 10 mg/10 mg combination vial, plus GHK-Cu separately. Every lot ships with its COA. Separate vials cost slightly more but let you dose each component on its own cadence — which is what most experienced users end up doing.
Editorial overview only. All peptide products referenced are intended solely for research, investigational, or licensed professional use. Conduct your own research and consult a trusted, licensed medical practitioner before any personal or clinical use.
| Peptide | Category | Summary |
|---|---|---|
| BPC-157 | Healing & Recovery | BPC-157 is a synthetic 15-amino-acid peptide derived from a protein in human gastric juice. It is among the most-studied research peptides for soft-tissue repair, tendon healing, and gastrointestinal protection — almost entirely in animal models to date. |
| TB-500 | Healing & Recovery | TB-500 is a synthetic peptide fragment of Thymosin Beta-4 (TB4), a naturally occurring protein. It is studied for actin regulation, cell migration, and wound healing — and is the most common stack partner for BPC-157 in recovery research. |
| GHK-Cu | Skin, Hair & Aesthetic | GHK-Cu is a naturally occurring copper-binding tripeptide with decades of dermatological literature. Research focuses on collagen synthesis, wound healing, and hair-follicle biology. |
Published 2026-08-31 by the Clarity Wellness editorial team. Approximate reading time: 8 minutes. Our sourcing and review policy is published at /editorial-standards.
All peptide products referenced are intended solely for research, investigational, or licensed professional use. They are not FDA-approved and are not intended to diagnose, treat, cure, or prevent any disease. Consult a licensed medical practitioner before any personal or clinical use.