BPC-157 TB-500 20mg – Dual Peptide Research Blend (Lyophilized)

(2 customer reviews)

Original price was: $120.00.Current price is: $105.00.

  • Product: BPC-157 / TB-500 Blend

  • Total Content: 20mg per vial

Composition

  • BPC-157 – 10mg

  • TB-500 – 10mg

  • Form: Lyophilized powder

  • Appearance: White to off-white peptide cake

  • Purity: ≥99% (per component)

  • Storage: 2–8°C (36–46°F)

Each vial is sealed and labeled for laboratory identification purposes.


⚠️ Research Use Only

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NUTRIGENIX BPC-157 TB-500 Blend

The BPC-157 TB-500 Blend from Nutrigenix Scientific combines two well-known research peptides that have been studied in experimental models involving tissue repair mechanisms, angiogenesis signaling pathways, and cellular migration processes.

Both peptides have been investigated independently in laboratory research examining musculoskeletal repair biology, connective tissue regeneration, and inflammatory signaling pathways. Because these peptides influence different biological mechanisms involved in tissue repair, researchers often study them together to examine how multiple regenerative pathways interact during recovery processes.

BPC-157 is a pentadecapeptide originally isolated from gastric juice, while TB-500 is a synthetic peptide fragment derived from thymosin beta-4, a naturally occurring protein involved in cellular migration and tissue repair responses.
More information about BPC-157 and its biological origin can be found here:
https://en.wikipedia.org/wiki/BPC-157


BPC-157 Research Overview

BPC-157 (Body Protection Compound-157) is a peptide composed of 15 amino acids that has demonstrated stability in gastric environments and has been investigated in numerous preclinical studies examining tissue healing and inflammatory pathways.

Research suggests that BPC-157 may influence several biological processes involved in tissue repair, including angiogenesis, nitric oxide signaling, and fibroblast activity.

One experimental study investigating tendon healing mechanisms reported that BPC-157 enhanced tendon fibroblast outgrowth and improved healing responses in experimental models.
The research can be reviewed here:
https://pmc.ncbi.nlm.nih.gov/articles/PMC6271067/

Additional experimental research has examined the cytoprotective properties of BPC-157 and its potential influence on vascular growth and tissue regeneration signaling pathways.
A review discussing these biological properties is available here:
https://pmc.ncbi.nlm.nih.gov/articles/PMC8504390/

These findings have led researchers to examine BPC-157 in studies involving connective tissue regeneration, gastrointestinal research, and cellular repair pathways.


TB-500 Research Overview

TB-500 is a synthetic peptide fragment derived from thymosin beta-4, a naturally occurring protein that becomes upregulated during tissue injury and plays a role in cellular migration and tissue remodeling processes.

Thymosin beta-4 influences actin polymerization, which helps regulate cellular movement and structural remodeling during tissue repair.

A scientific review examining thymosin beta-4 and its biological activity in tissue regeneration can be reviewed here:
https://pmc.ncbi.nlm.nih.gov/articles/PMC3547647/

Additional studies investigating thymosin beta-4 have shown that the peptide influences angiogenesis, cell migration, and wound healing processes in experimental models.
Further research is available here:
https://pmc.ncbi.nlm.nih.gov/articles/PMC12753158/

Because TB-500 is derived from thymosin beta-4, researchers frequently study it in laboratory models examining musculoskeletal repair, connective tissue regeneration, and cellular migration signaling.


Complementary Peptide Research

Although BPC-157 and TB-500 act through different biological mechanisms, they are often examined together in laboratory research due to their complementary signaling pathways.

BPC-157 is primarily associated with vascular signaling, nitric oxide pathways, and connective tissue repair, while TB-500 is associated with cellular migration, actin regulation, and tissue remodeling processes.

Studying these peptides together allows researchers to investigate how multiple regenerative signaling pathways interact during tissue repair and recovery processes.

Research examining regenerative biology often focuses on how angiogenesis, cellular migration, and inflammatory signaling pathways work together to support tissue healing and structural repair.

Because these peptides influence different aspects of cellular repair biology, combining them in experimental models can help researchers study complex regenerative processes.


Lyophilized Research Peptide Blend

The Nutrigenix BPC-157 TB-500 Blend is supplied as a lyophilized research peptide to maintain stability during storage and transportation.

Lyophilization (freeze-drying) removes moisture from the peptide while preserving structural integrity. This process allows the peptide blend to remain stable until it is prepared for laboratory experimentation.

Each vial is sealed within a sterile glass vial equipped with a rubber stopper and aluminum crimp seal, which helps protect the peptide from environmental exposure before preparation.

Researchers typically prepare lyophilized peptides using sterile laboratory techniques prior to experimental investigation.


Reconstitution & Laboratory Preparation

Lyophilized peptide blends such as BPC-157 TB-500 blend typically require preparation prior to laboratory research depending on experimental protocols.

Researchers commonly prepare lyophilized peptides using sterile diluents and controlled laboratory techniques.

For additional information on dilution procedures and preparation calculations, refer to the Nutrigenix Reconstitution Guide, which includes a detailed preparation reference and dilution calculator commonly used when working with research peptides:

https://nutrigenixscientific.com/2026/03/10/reconstitution-guide/

This guide provides commonly used preparation information when working with lyophilized research compounds.


Quality & Packaging

Nutrigenix Scientific research peptides are packaged using sterile laboratory-grade materials designed for reliable storage and controlled laboratory handling.

Each vial is sealed with:

  • sterile rubber stopper

  • aluminum crimp seal

  • protective cap

This packaging format helps maintain peptide stability and integrity during storage and laboratory preparation.


Research Use Notice

This product is supplied strictly for laboratory research purposes only and is not intended for human or veterinary use.

VIAL SIZE

20MG

2 reviews for BPC-157 TB-500 20mg – Dual Peptide Research Blend (Lyophilized)

  1. Alekss94's avatar

    Alekss94 (verified owner)

    Very happy with this blend, thanks. 3rd time ordering this pep and wanted to leave a review, I never usually write reviews for anything, but based on the few times I’ve dealt with this company I wanted to share my experience for some of the products I’ve ordered. I really enjoyed the communication from the owner, he was always there to update me on my order, and I got tracking in like an hour. All my questions were always answered quickly.
    Will be ordering again!

  2. Anonymous's avatar

    Anonymous (verified owner)

    Great

Only logged in customers who have purchased this product may leave a review.

Research Use Only

This product is supplied strictly for laboratory research and analytical purposes and is not intended for human or animal consumption, medical use, diagnostic procedures, or therapeutic applications.

By purchasing this product, the purchaser acknowledges that they are familiar with the safe handling, storage, and use of laboratory research materials and agree to comply with all applicable laws, regulations, and laboratory safety guidelines.

These compounds have not been evaluated by Health Canada or the United States Food and Drug Administration and are not approved for the diagnosis, treatment, cure, or prevention of any disease.

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