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Multi Vial Bundle

Original price was: $100.00.Current price is: $90.00.

BPC-157 is a synthetic peptide fragment derived from a naturally occurring body protection compound and has been the focus of extensive preclinical and experimental research.

Within research settings, BPC-157 is studied for its role in biological signaling processes associated with tissue integrity, cellular protection, and adaptive repair mechanisms. Its stability and broad signaling activity have made it a compound of interest across multiple investigational domains involving physical stress and structural disruption models.

This product is supplied strictly for research and investigational use.

100 in stock

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Description

100 in stock

What Is the Research Multiplier Bundle?

BPC-157 is a synthetic peptide fragment derived from a naturally occurring body protection compound and has been the focus of extensive preclinical and experimental research.

Within research settings, BPC-157 is studied for its role in biological signaling processes associated with tissue integrity, cellular protection, and adaptive repair mechanisms. Its stability and broad signaling activity have made it a compound of interest across multiple investigational domains involving physical stress and structural disruption models.

This product is supplied strictly for research and investigational use.

COA / HPLC / MS

Important Disclaimer

For Research Use Only. Not for human consumption or therapeutic treatment.

Original price was: $100.00.Current price is: $90.00.

Peptide Individual Price
BPC-157 (10 vials) $00.00
TOTAL (If Purchased Separately) $00.00
BUNDLE PRICE (20% OFF) $00.00
YOU SAVE $00.00

100 in stock

Buy 5 and save 5%
$00.00 each
Buy 10 and save 10%
$000.00 each
Pairs well with

Peptides are not ready to use. Must purchase BAC water for reconstitution.

Research Multiplier
Bundle

Structural Tissue Signaling

Investigates the peptide-mediated communication involved in maintaining tissue integrity and cellular protection during structural disruption models.

Angiogenic & Vascular Research

Utilizes the combination of CJC-1295 (No DAC) and Ipamorelin to study the amplification of endogenous Growth Hormone pulses. This pairing is the gold standard for researching lean tissue accretion and systemic recovery without the desensitization seen in sustained-release analogs.

Adaptive Stress Response

Utilizes the combination of CJC-1295 (No DAC) and Ipamorelin to study the amplification of endogenous Growth Hormone pulses. This pairing is the gold standard for researching lean tissue accretion and systemic recovery without the desensitization seen in sustained-release analogs.

Gut-Systemic Axis Signaling

Utilizes the combination of CJC-1295 (No DAC) and Ipamorelin to study the amplification of endogenous Growth Hormone pulses. This pairing is the gold standard for researching lean tissue accretion and systemic recovery without the desensitization seen in sustained-release analogs.

EXPLORE RESEARCH MULTIPLIER
BUNDLE

WHAT’S INCLUDED

Research Multiplier Bundle Contents

  • BPC-157 — 10mg per vial
  • Quantity: 10 individual vials
Each vial is supplied as a discrete research unit to support controlled usage across experiments, study arms, or investigative timelines.

Ipamorelin

  • BPC-157 — 10mg per vial
  • Quantity: 10 individual vials
ach vial is supplied as a discrete research unit to support controlled usage across experiments, study arms, or investigative timelines.

MOTS-c

  • BPC-157 — 10mg per vial
  • Quantity: 10 individual vials
Each vial is supplied as a discrete research unit to support controlled usage across experiments, study arms, or investigative timelines.

PRIMARY AREAS OF
RESERACH ONTEREST

In laboratory and preclinical research environments, BPC-157 has been investigated in relation to:

  • Cellular signaling involved in tissue repair and structural integrity
  • Peptide-mediated communication during adaptive biological responses
  • Experimental models of connective tissue stress and recovery
  • Research into angiogenic and vascular signaling pathways
  • Interaction with nitric oxide–related signaling systems
  • Gut-associated peptide activity and systemic signaling effects
  • Protective signaling responses observed in non-human research models

These areas reflect research focus and scientific interest only and do not imply approved medical or therapeutic use.

WHY BPC-157 IS OF INTEREST IN HEALING-ORIENTED RESEARCH

BPC-157 is frequently explored in healing-oriented research models due to its observed involvement in signaling pathways related to:

  • Structural tissue support
  • Cellular adaptation following stress or disruption
  • Coordinated repair responses across multiple biological systems

Researchers study BPC-157 not as a treatment, but as a tool for understanding how peptide signaling may influence repair-oriented biological processes in controlled experimental settings.

WHY RESEARCHERS CHOOSE A MULTIPLIER BUNDLE FORMAT

Because BPC-157 research is often conducted across extended timelines or repeated experimental phases, researchers may require:

  • Consistent material across longitudinal studies
  • Reduced variability between experimental runs
  • Reliable access to the same compound batch
  • Planned allocation of material for multi-phase research

The Research Multiplier Bundle is designed to support these needs by providing a standardized, multi-vial supply format.

INTENDED RESEARCH APPLICATIONS

This product is supplied exclusively for laboratory research and investigational purposes. Intended research settings include:

  1. In-vitro studies
  2. Ex-vivo research
  3. Non-human experimental models

This product is not intended for human or veterinary use, and is not approved for diagnosis, treatment, cure, or prevention of any disease or condition.

BUNDLE SUMMARY

Product: BPC-157 (10mg)

  • BPC-157 — 10mg per vial
  • Quantity: 10 individual vials
Each vial is supplied as a discrete research unit to support controlled usage across experiments, study arms, or investigative timelines.

Format: Research Multiplier Bundle

  • BPC-157 — 10mg per vial
  • Quantity: 10 individual vials
Each vial is supplied as a discrete research unit to support controlled usage across experiments, study arms, or investigative timelines.

Quantity: 10 vials

  • BPC-157 — 10mg per vial
  • Quantity: 10 individual vials
Each vial is supplied as a discrete research unit to support controlled usage across experiments, study arms, or investigative timelines.

Classification: Research Use Only (RUO)

  • BPC-157 — 10mg per vial
  • Quantity: 10 individual vials
Each vial is supplied as a discrete research unit to support controlled usage across experiments, study arms, or investigative timelines.

Designed for researchers conducting structured, healing-oriented biological research involving peptide signaling and tissue-related pathways.

COMPLIANCE DISCLAIMER

Research Use Only (RUO). Not for human or veterinary use.

Not intended for diagnosis, treatment, cure, or prevention of any disease. All use must comply with applicable laboratory safety
standards and regulatory guidelines.

FAQs

What is the Research Multiplier Bundle?

Multi-Receptor Metabolic Activation Utilizing GLP-3 RT (10mg) to research the activation of receptor signaling pathways involved in glucose-dependent insulin secretion and appetite regulation.

Why is BPC-157 studied in healing-oriented research?

Multi-Receptor Metabolic Activation Utilizing GLP-3 RT (10mg) to research the activation of receptor signaling pathways involved in glucose-dependent insulin secretion and appetite regulation.

Title

Multi-Receptor Metabolic Activation Utilizing GLP-3 RT (10mg) to research the activation of receptor signaling pathways involved in glucose-dependent insulin secretion and appetite regulation.

What is the concentration of each vial?

Multi-Receptor Metabolic Activation Utilizing GLP-3 RT (10mg) to research the activation of receptor signaling pathways involved in glucose-dependent insulin secretion and appetite regulation.

Is this product suitable for human studies?

Multi-Receptor Metabolic Activation Utilizing GLP-3 RT (10mg) to research the activation of receptor signaling pathways involved in glucose-dependent insulin secretion and appetite regulation.

How should the BPC-157 vials be stored?

Multi-Receptor Metabolic Activation Utilizing GLP-3 RT (10mg) to research the activation of receptor signaling pathways involved in glucose-dependent insulin secretion and appetite regulation.

Why is batch consistency important for researchers?

Multi-Receptor Metabolic Activation Utilizing GLP-3 RT (10mg) to research the activation of receptor signaling pathways involved in glucose-dependent insulin secretion and appetite regulation.

What specific pathways are researched with BPC-157?

Multi-Receptor Metabolic Activation Utilizing GLP-3 RT (10mg) to research the activation of receptor signaling pathways involved in glucose-dependent insulin secretion and appetite regulation.

Is Bacteriostatic (BAC) Water included in the bundle?

Multi-Receptor Metabolic Activation Utilizing GLP-3 RT (10mg) to research the activation of receptor signaling pathways involved in glucose-dependent insulin secretion and appetite regulation.

Does this product have quality verification?

Multi-Receptor Metabolic Activation Utilizing GLP-3 RT (10mg) to research the activation of receptor signaling pathways involved in glucose-dependent insulin secretion and appetite regulation.

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