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(BPC-157 5mg + TB-500 5mg) – 10mg

$94.99 Regular Price
$79.99Sale Price
Pack Size
Single Vial
10-Pack (Ships in 2 Weeks)
Quantity

Research-grade Wolverine Stack, a pre-blended combination of BPC-157 (5mg) and TB-500 (5mg) studied for complementary tissue repair and recovery signaling pathways. 10mg total lyophilized powder, 99%+ purity verified by Janoshik Analytical via HPLC and mass spectrometry.


  • For laboratory research use only.

  • Not for human or veterinary use.

  • Not intended for diagnosis, treatment, cure, or prevention of any disease.

  • Use only in controlled laboratory settings by qualified personnel following appropriate safety procedures.

  • The Wolverine Stack is Durham Peptides' most popular healing blend — BPC-157 (5mg) and TB-500 (5mg) combined in a single research vial, stocked and shipped domestically to researchers across Canada. The name originates from fitness and recovery communities referencing the Marvel character's regenerative abilities, and the combination has been widely discussed across biohacking circles and podcasts like the Joe Rogan Experience.


    For researchers who prefer to work with each compound separately, Durham Peptides also stocks the individual peptides — BPC-157 (10mg) and TB-500 (10mg).


    BENEFITS

    • Combined mechanism — studied for complementary tissue-repair pathways in a single formulation

    • Convenience — eliminates the need to source and reconstitute two separate vials

    • Recovery research — explored for combined effects on connective tissue and muscle models

    • Anti-inflammatory — linked to dual anti-inflammatory pathways from both compounds

    • Wound healing — associated with accelerated recovery timelines in preclinical models


    WHAT RESEARCHERS LOOK AT

    • Synergistic vs additive effects of BPC-157 and TB-500 co-administration

    • Angiogenesis promotion from the dual-peptide combination

    • Comparative recovery timelines: blend vs individual compounds

    • Optimal dosing ratios in combined formulations

    • Fibroblast migration and collagen deposition from dual pathways

Frequently Paired With

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