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Third-Party HPLC Tested HPLC Tested
Dual-Vial Reconstitution Tool

Wolverine Stack
Peptide Calculator

Accurately measure your Wolverine Stack (BPC-157 & TB-500) tissue repair protocols. Since these compounds are provided in separate vials to preserve stability, use this tool to calculate the exact reconstitution and syringe draw for both peptides simultaneously.

Protocol Parameters

BPC-157 Vial

TB-500 Vial

Applies to both syringe calculations.

BPC-157 Draw Volume

1mL Syringe
10
Units
0 10 U 100
Draw to the 10 unit mark on a 1mL (100 Unit) syringe.

TB-500 Draw Volume

1mL Syringe
100
Units
0 100 U 100
Draw to the 100 unit mark on a 1mL (100 Unit) syringe.

Administration Tip Most researchers prefer to draw both peptides into the same syringe to reduce injection frequency. To do this, simply draw the required units from the BPC-157 vial, then insert that same syringe into the TB-500 vial and draw the additional required units.

Standard Dosage Charts

Select a Wolverine Stack research protocol below to view its specific dosing schedule.

Acute Injury Repair

PhaseTimelineBPC-157 DosingTB-500 Dosing
Active HealingWeeks 1 - 4500mcg (2x Daily)2.5mg (2x Weekly)
Taper DownWeeks 5 - 6250mcg (1x Daily)2.5mg (1x Weekly)
ResolutionWeek 7+DiscontinueDiscontinue

Clinical Notes

Because BPC-157 clears the system rapidly, it requires daily dosing. TB-500 has a much longer half-life, meaning it only needs to be administered twice a week to achieve full systemic saturation.

Compound Profile & Data

Peptide Combo Intermediate Sub-Q / IM

Wolverine Stack

BPC-157 + TB-500 Combination

The famous Wolverine stack combines BPC-157's localized healing with TB-500's systemic muscle repair properties for rapid injury recovery.

Varies Custom Dose
1-2x Daily / Wkly
4-8 Wks Cycle
Rapid Recovery Joint Healing Tissue Repair

Risk Profile

Systemic Toxicity
2
Injection Site Pain
3
Lethargy
2
Offers total-body systemic healing. TB-500 upregulates actin for muscle and generalized tissue repair, while BPC-157 intensely focuses on angiogenesis (blood flow) directly at the injury site and heals gastric tissue.
Mild lethargy, temporary head rush immediately following injection, and occasional localized injection site irritation. Very well tolerated in most clinical models.
When utilizing separate vials, researchers often draw BPC-157 daily as required by its short half-life. TB-500 is drawn and administered independently (or in the same syringe) just twice weekly to achieve systemic saturation.

Pharmacodynamics Explained

The synergy of the Wolverine Stack lies in its dual-pathway approach to tissue regeneration. TB-500 provides the raw materials and systemic signaling (Actin upregulation) required to build new cellular structures anywhere in the body.

BPC-157 acts as the logistical supervisor. It forces angiogenesis (new blood vessels) precisely where the body is inflamed or damaged, ensuring the building materials provided by TB-500 are rapidly delivered to the injury site.

Result: Exponentially faster healing times for severe muscular tears, tendon ruptures, ligament damage, and post-operative surgical incisions.

Handling & Reconstitution

Like all lyophilized peptides, these compounds are fragile in their powder state. Store unmixed vials in the freezer (-20°C). Once reconstituted with Bacteriostatic Water, the peptides must be refrigerated (2°C - 8°C).

  • Vacuum Seal: Release the vacuum pressure in the vial by injecting air *before* injecting your BAC water to prevent the water from shooting violently onto the powder.
  • Gentle Mixing: Direct the water stream to the side of the glass vial. Do not spray directly onto the powder puck. Roll gently between hands to dissolve.

Clinical Contraindications

Because this stack potently encourages the proliferation of cells and rapid new blood vessel formation (angiogenesis), it should be strictly avoided in subjects with active cancers or highly proliferative tumor diseases.

Caution: While neither peptide is inherently carcinogenic, providing intense growth signals and increased blood supply can theoretically feed pre-existing malignant cells.

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