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BPC-157 | 10mg

BPC-157 | 10mg

Regular price $49.00
Regular price $49.00 Sale price
SAVE Sold out

check_circle Selective Ghrelin Activation

check_circle Guaranteed >99% Purity

check_circle High-Stability 10mg

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Research Disclaimer: Not for human or Veterinary Consumption

BPC-157  | 10mg

BPC-157 | 10mg

Regular price $49.00
Regular price $49.00 Sale price
SAVE Sold out

Description

Protection. Repair. Purity.

VitraNova Research introduces BPC-157 Core, a 10mg formulation of the stable gastric pentadecapeptide. Renowned in scientific literature for its role in tissue healing and cytoprotection, our BPC-157 is synthesized to ensure high stability and bioavailability in research settings.

Each vial contains 10mg of the lyophilized compound, rigorously tested to meet or exceed 99% purity.

  1. Purity Verified: >99% purity confirmed via analysis.
  2. High Potency: 10mg of active research reagent.
  3. Research Grade: Intended strictly for laboratory use.
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Specifications

Product Name: BPC-157 Core

Net Content: 10 mg

Compound Type: Stable gastric pentadecapeptide

Purity: >99% (analytically verified)

Form: Lyophilized powder

Grade: Research use only

Potency: High-stability 10 mg active compound

Packaging: Medical-grade glass vial

Stability: Lyophilized for long-term molecular stability

Intended Use: Laboratory and scientific research applications

Storage: Store in a cool, dry place away from light

Compliance: Not for human or veterinary consumption

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Optimizing Growth Hormone Secretagogue Pathways

VitraNova Research presents Ipamorelin Core as a highly specific tool for investigating the physiology of growth hormone release. As a selective pentapeptide, it acts as a potent ghrelin receptor agonist, allowing researchers to study the stimulation of the pituitary gland with exceptional precision. Unlike less specific compounds, our synthesized Ipamorelin is designed to facilitate the isolation of growth hormone pathways without significantly impacting cortisol or prolactin levels, ensuring that data regarding cellular growth and metabolic regulation remains unclouded by off-target hormonal spikes.