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Certificate of Analysis — 45mgCertificate of Analysis for Coremend 45mg
Chemical StructureCoremend chemical structure
Amino Acid SequenceCoremend amino acid chain
In StockBlends
BatchCORE-CA-26D-01

Coremend - TB-500 25mg / BPC-157 10mg / KPV 10mg

TB-500 / BPC-157 / KPV Recovery Blend

Also known as CoreMend

Coremend is a research blend combining TB-500 (thymosin beta-4 fragment), BPC-157, and the tripeptide KPV in a single preparation, studied for converging tissue-repair and inflammatory-signaling pathways.

$220.00USD
Purity VerifiedLab TestedSecure
Research Use Only

This product is intended strictly for laboratory research use within the United States. It is not approved by the FDA for the diagnosis, treatment, cure, or prevention of any disease. Not for human or veterinary use.

By purchasing, you confirm the material will be used solely for lawful research purposes in accordance with applicable U.S. federal, state, and local regulations.

Coremend is a research blend combining TB-500 (thymosin beta-4 fragment), BPC-157, and the tripeptide KPV in a single preparation, studied for converging tissue-repair and inflammatory-signaling pathways.

Each component is independently characterized in the laboratory literature; the blend is studied as a combined preparation.

Purity

Third-party tested for purity, ID, quantity.

Amino Acid Sequence
Amino acid chain diagram
Chemical Structure
Chemical structure diagram
Compound Properties

Overview

Coremend combines three research peptides associated with structural-repair and inflammatory-modulation pathways: TB-500 (cellular migration and actin regulation), BPC-157 (angiogenic and cytoprotective signaling), and KPV (anti-inflammatory α-MSH-fragment activity). Research framing draws on the established literature for each component.

The blend is studied as a combined preparation in tissue-repair research models under structured conditions.

History

Coremend is formulated from three independently studied research peptides. Its components — TB-500, BPC-157, and KPV — each have distinct research lineages in structural-repair and inflammatory-signaling models.

Key Research Areas

Research framing for Coremend draws on the combined literature of its components across cellular-migration, angiogenic, cytoprotective, and anti-inflammatory pathway models under controlled conditions.

0 of the 4 areas below are addressed directly by a paper cited on this page.

Cytoskeletal and cellular-migration models (TB-500)

No paper cited on this page reports on cytoskeletal, cellular or migration. This heading marks where Coremend is discussed in the category rather than a question the cited literature answers, and it is worth knowing which of these areas has work behind it and which does not.

Angiogenic and cytoprotective signaling (BPC-157)

No paper cited on this page reports on angiogenic or cytoprotective. This heading marks where Coremend is discussed in the category rather than a question the cited literature answers, and it is worth knowing which of these areas has work behind it and which does not.

Anti-inflammatory α-MSH-fragment research (KPV)

No paper cited on this page reports on anti, inflammatory or fragment. This heading marks where Coremend is discussed in the category rather than a question the cited literature answers, and it is worth knowing which of these areas has work behind it and which does not.

Combined tissue-repair frameworks

No paper cited on this page reports on combined, tissue or repair. This heading marks where Coremend is discussed in the category rather than a question the cited literature answers, and it is worth knowing which of these areas has work behind it and which does not.

The references section of this page cites 3 primary papers published between 1993 and 2017 — a thin record. Every citation is linked to its PubMed or DOI record so it can be read rather than taken on trust, and the summaries above describe what those papers report rather than what the compound is claimed to do.

Coremend is frequently listed as a peptide by suppliers in this market. It is not one. The structure published on this page is the compound's actual chemistry, and research on it should be read against its own class rather than against peptide literature.

Research compounds attract claims that outrun their evidence. Below are the ones most often encountered for Coremend, set against what the papers cited on this page actually report. Where the record is thin or contested, that is stated rather than smoothed over.

Also called

Coremend is also referred to as coremend blend, and technically as CoreMend.

Preclinical only

Coremend is commonly described online in connection with faster healing from injury and improved recovery. In the research literature the same compound is filed under cytoskeletal and cellular-migration models (TB-500), angiogenic and cytoprotective signaling (BPC-157) and anti-inflammatory α-MSH-fragment research (KPV).

The 3 papers cited on this page, published between 1993 and 2017 (1 review) describe laboratory and animal work. None reports a controlled trial in humans. Findings in cell culture or in a rodent model describe what happened in that system; they do not establish that the same occurs in humans, and this compound is not approved for human use.

Nothing above is a statement of what this material does. It is a summary of what has been published and what has not. Eppix Labs supplies research materials only and provides no dosing, administration or protocol guidance.

Every lot of Coremend is independently assayed before it is released, and the certificate for the lot shipped is published rather than summarised. Where a certificate for a current lot is not yet posted, the lot has not yet been released against it.

Researchers who buy Coremend in the United States through Eppix Labs receive a batch-labelled vial whose certificate is published against that lot code, so the material can be matched to its analysis rather than to a generic specification.

Verify a batch code →

Lyophilized storage
−20 °C long-term; stable at room temperature in transit
After reconstitution
2–8 °C
Light
Protect from UV and direct light
Freeze-thaw
Avoid repeated cycles
Vehicle
Solvent selection depends on the compound; consult the published literature
Format
Lyophilized powder

Coremend is supplied as lyophilized powder. It is not a peptide, and solvent behaviour follows from its own chemistry rather than from the aqueous-vehicle conventions that apply to peptide material — the published literature for this compound is the reference for solvent selection, not a general peptide protocol.

Dry storage below freezing and protection from light are the general controls. As with any lyophilized material, the powder frequently sits as a thin film at the base of the vial and is easy to mistake for an empty vial before inspection.

Vials may appear empty on arrival. Lyophilized material collects at the base of the vial and is often not visible until the vial is inspected under direct light.

Reconstitution calculator →

Included
  • 1 × sealed glass vial in the strength selected (45mg / 1 Vial, 45mg / 5-Pack, 45mg / 10-Pack available), batch-labelled
  • The batch-linked Certificate of Analysis for the exact lot shipped
  • Discreet outer packaging with no product names on the exterior
  • FedEx, tracked, typically 1–3 business days domestically
Not included
  • Bacteriostatic water or any other reconstitution vehicle
  • Syringes, needles or filters
  • Dosing, administration or protocol guidance of any kind

Reconstitution materials are sourced separately. The reconstitution calculator on this site works out concentrations for a given volume, but it is an arithmetic tool for laboratory record-keeping and not a protocol.

No. Eppix Labs products are supplied exclusively for laboratory research. We do not provide dosing, administration, or usage guidance.

Each unit contains the labeled quantity of coremend. Independent third-party analysis verifies purity, identity, and net content per batch.

The unit contains only the research compound. Any laboratory materials required for reconstitution or experimental procedures must be sourced separately.

Duration depends entirely on research design, storage conditions, and laboratory protocol.

Malinda, K.M. et al.(1999)

Thymosin beta4 accelerates wound healing. J Invest Dermatol 113(3):364–368.

PubMed
Sikirić, P. et al.(1993)

A new gastric juice peptide, BPC. An overview of the stomach-stress-organoprotection hypothesis and beneficial effects of BPC. J Physiol Paris 87(5):313–327.

PubMed
Xiao, B. et al.(2017)

Orally targeted delivery of tripeptide KPV via hyaluronic acid-functionalized nanoparticles efficiently alleviates ulcerative colitis.

PubMed

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Have questions about batch verification, documentation, or research specifications? Our team is available to assist with product and compliance inquiries.