No LabelBPC-157 10 Mg
| Quantity | Discount | Price |
|---|---|---|
| 3–5 | 10% | $37,80 |
| 6–9 | 15% | $35,70 |
| 10–100 | 20% | $33,60 |
Specifications
- Brand: No-Label HGH, Peptides & SARMs
- Substance: BPC-157
- Product Form: Powder
- Dosage: 10 Mg
How To Use
Laboratory Reconstitution & Research Dosing Protocols
Disclaimer: The following information is for educational and laboratory reference only. This product is strictly for in-vitro and in-vivo research and is not intended for human consumption or therapeutic use.
This bulk vial contains 10mg (10,000mcg) of lyophilized BPC-157 powder. Accurate reconstitution is required to manage this high-concentration yield.
Reconstitution Guide
For a standard, easily calculable research concentration, reconstitute the 10mg vial with 2 ml of Bacteriostatic Water.
- Preparation: Slowly inject the 2 ml of water against the glass wall of the vial.
- Dissolution: Swirl the vial gently until the solution is completely clear. Do not shake.
- Measurement Reference: Using a standard U-100 insulin syringe with 2 ml of water added, 10 Units (0.10 ml) equals exactly 500mcg of BPC-157. (5 Units = 250mcg).
Usage Tips
- Site Injection? While BPC-157 works systemically (travels through the blood), many researchers prefer to inject subcutaneously as close to the injury as safely possible (e.g., in the shoulder skin for shoulder pain). However, belly fat injections are perfectly effective.
- Storage: Once mixed, keep refrigerated. BPC-157 is stable for about 3-4 weeks in the fridge.
Experience Level Usage Guide
Beginner
🧪 Protocol A: Baseline Gut Healing & Inflammation Model
Reference dosing for studies investigating systemic inflammation, gastric ulceration, and mild tissue stress.
- Test Subject Dosage: 250mcg (5 Units) daily.
- Administration: Subcutaneous.
- Observation Period: A 10mg vial sustains this protocol for 40 days.
Intermediate
🧪 Protocol B: Active Musculoskeletal Trauma Model
Standard clinical dosage for evaluating recovery from acute muscle tears, ligament sprains, or tendonitis.
- Test Subject Dosage: 500mcg (10 Units) daily.
- Administration: Subcutaneous (administered locally near the site of injury for targeted observation).
- Observation Period: A 10mg vial sustains this protocol for 20 days.
Advanced
🧪 Protocol C: Severe Injury & Synergistic Regeneration
Advanced protocol for research involving severe structural damage or post-surgical recovery models.
- Test Subject Dosage: 1,000mcg (20 Units) daily.
- Administration: Split into two doses (500mcg AM / 500mcg PM).
- Synergy: Frequently researched in conjunction with TB-500 to observe simultaneous angiogenesis and cellular actin remodeling.
Shipping Details
Detailed Description
What Is No Label BPC-157 10mg?
No Label BPC-157 10mg is a high-concentration, synthetic pentadecapeptide engineered for advanced laboratory research. Known as Body Protection Compound-157, it is derived from a naturally occurring protective protein isolated in human gastric juices. This massive 10mg bulk vial provides researchers with a high-yield, cost-effective supply for conducting extended in vitro assays and in vivo animal models focused on systemic tissue repair and gastrointestinal health.
By providing double the volume of standard vials, the 10mg format allows laboratories to maintain absolute batch consistency across high-dose or long-term experimental protocols.
Please note: This compound is strictly formulated for laboratory research and is not intended for human consumption, therapeutic use, or dietary supplementation.
| Technical Specification | Details |
|---|---|
| Compound Name | BPC-157 (Body Protection Compound) |
| Format | 10 mg Lyophilized Powder (Bulk Vial) |
| Purity Level | >99% (HPLC & MS Verified) |
| Primary Research Area | Systemic Tissue Repair & Gut Health |
Observed Benefits of BPC-157 in Research Models
In controlled laboratory studies, BPC-157 has demonstrated unparalleled regenerative properties across multiple physiological systems. Key experimental observations include:
- Accelerated Structural Healing: Studies indicate a profound increase in fibroblast migration, rapidly accelerating the repair of transected tendons, ligaments, and muscle fibers.
- Gastrointestinal Protection: Highly effective in research models focusing on the reversal of mucosal damage, gastric ulcers, and the restoration of the intestinal barrier.
- Angiogenesis Stimulation: Promotes the formation of new blood vessels, critically improving oxygen and nutrient delivery to ischemic or severely damaged tissues.
- Systemic Anti-Inflammatory Action: Modulates inflammatory cytokines without inhibiting the body’s natural healing signals, unlike standard NSAID compounds.
Mechanism of Action
The biological mechanism of BPC-157 centers on the upregulation of Growth Factor Receptors (such as VEGFR2) and the modulation of the nitric oxide (NO) pathway. This synergistic interaction provides a stable biological environment for cellular migration. Functioning as a molecular scaffold, it enables the test subject’s body to rapidly rebuild damaged collagen and structural matrices from the inside out, while simultaneously neutralizing acute oxidative stress in the gut lining.
Comparison: Recovery & Regenerative Research Peptides
| Research Peptide | Primary Focus | Comparison to BPC-157 |
|---|---|---|
| TB-500 | Systemic Cell Migration | TB-500 manages broad systemic cell mobility; BPC-157 is frequently stacked with it to handle the localized “knitting” of deep structural injuries. |
| GHK-Cu | Collagen & Epigenetics | GHK-Cu focuses on surface collagen and DNA repair signaling, whereas BPC-157 is the primary tool for deep mechanical and gastrointestinal healing. |
| BPC-157 | Structural Tissue Repair | The foundational standard for studying the rapid reconstruction of tendons, ligaments and the gut barrier. |
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BPC-157 is frequently referenced in research examining tissue-related peptide signaling and cellular response pathways. To explore related formulations grouped under this research focus, visit our Recovery & Healing Peptides collection.
Beyond tissue-focused research, BPC-157 is also discussed within longevity-oriented research frameworks examining age-associated cellular signaling processes. You may explore related formulations in our Anti-Aging & Longevity Peptides collection.
Potential Side Effects of BPC-157 in Toxicology Studies
Toxicological assessments in research models indicate that BPC-157 is exceptionally well-tolerated, largely because it is bio-identical to compounds naturally found in the subject’s gastric juices. Lethal dose limits have not been established. Occasional, minor localized erythema (redness) at the site of administration may be observed during testing.
Where to Buy No Label BPC-157 10mg Online
When conducting long-term regenerative assays, the purity and batch consistency of your compound dictate the validity of your data. Peptidesline supplies laboratory-grade No Label BPC-157 10mg, verified for 100% purity and structural integrity.
- Rapid US Logistics: Shipped directly from our USA facility, ensuring secure delivery in 4-7 business days.
- Secure Transactions: Checkout seamlessly with Zelle or Venmo for laboratory privacy.
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FAQ
The 10mg bulk vial provides a higher total yield, making it more cost-effective for laboratories conducting long-term studies or high-dose experimental protocols, reducing the need for frequent reordering and ensuring batch consistency.
For a 10mg vial, researchers typically add 2ml to 4ml of bacteriostatic water. This creates a highly concentrated solution that allows for precise, easily calculable micro-dosing during daily research protocols.
Soft tissue takes time to heal. A typical BPC-157 cycle lasts 4 to 6 weeks. Discontinuing use too early (as soon as the pain stops) may leave the tissue structurally weak, leading to re-injury. Finish the full course.
Absolutely. BPC-157 and TB-500 are the Wolverine Stack. They work synergistically: BPC-157 repairs the structure (hardware), and TB-500 improves cell mobility and flexibility (software). We sell pre-mixed blends of these as well.
Yes, BPC-157 is widely researched for its profound ability to strengthen the intestinal barrier, heal the mucosal lining, and reduce systemic inflammation originating from the digestive tract in animal models.
