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Tetrapeptide-30

Tetrapeptide-30 is a synthetic peptide sequence consisting of four amino acids, investigated in non-clinical research for its proposed role in modulating melanocyte signaling and influencing melanin biosynthesis pathways. Laboratory studies often evaluate its capacity to downregulate melanogenesis-related enzymes and disrupt melanocortin-mediated pigmentation cascades. This compound is provided exclusively for in vitro scientific research by qualified personnel and is not approved for therapeutic, cosmetic, or in vivo applications.

For laboratory research use only. Not for human or veterinary use. Not intended for diagnostic, therapeutic, or clinical applications.

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Tetrapeptide-30

Form: Scientific-grade, Lyophilized Powder

Purity: ≥99%

CAS Number: 1036207-61-0

Tetrapeptide-30 is a research-use-only peptide under investigation for its ability to influence melanin dispersion and pigmentation signaling. It is studied in vitro for applications in hyperpigmentation models and melanocyte regulation pathways.

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Chemical Structure & Identifiers

PubChem CID: 20013940 Structure: Laboratory Chemical Safety Summary (LCSS) Datasheet Molecular Formula: C22H40N6O7 Synonyms: Tetrapeptide-30, CAS 1036207-61-0, SCHEMBL29364969, LYHZXMVNRVAAJA-UHFFFAOYSA-N Molecular Weight: 500.6 g/mol Computed by PubChem: (PubChem release 2021.05.07) Date Created: 2007-12-05 Last Modified: 2025-07-28

Tetrapeptide-30 is provided for non-clinical research applications involving pigment regulation pathways, melanogenesis signaling, and biochemical analysis. This compound is strictly for in vitro laboratory use and not for diagnostic, therapeutic, or in vivo applications.

Tetrapeptide-30 Molecular Structure

Mechanism of Action

Tetrapeptide-30 is a synthetic peptide composed of four amino acids, studied for its ability to influence melanin synthesis pathways and reduce skin pigmentation through non-cytotoxic modulation of cellular signaling. Its proposed mechanisms of action include:

  • Inhibition of Melanogenesis: Research suggests that Tetrapeptide-30 may downregulate tyrosinase activity and melanocyte-stimulating factors such as α-MSH, resulting in reduced melanin production in epidermal cells.
  • Selective Depigmentation: Unlike harsh depigmenting agents, Tetrapeptide-30 is believed to inhibit melanin synthesis without affecting cell viability, making it useful in formulations targeting hyperpigmentation and uneven skin tone.
  • Interruption of Signaling Cascades: It may interfere with key biochemical pathways such as MITF (Microphthalmia-associated transcription factor), reducing transcription of melanogenic enzymes.
  • Improved Skin Uniformity: Through these mechanisms, the peptide is under investigation for its potential to brighten skin appearance, reduce discoloration, and promote a more uniform complexion.

These properties make Tetrapeptide-30 a peptide of interest in the field of dermatological and cosmetic research focused on pigmentation disorders and skin tone modulation.

Clinical Development & Research Focus

Tetrapeptide-30 is the focus of preclinical and cosmetic dermatology research due to its observed ability to reduce hyperpigmentation through targeted biological signaling. It is investigated for its role in supporting a more even skin tone, particularly in formulations addressing melasma, dark spots, and post-inflammatory pigmentation.

  • Hyperpigmentation Reduction: Studies indicate that Tetrapeptide-30 may attenuate melanin production in melanocytes without cytotoxic effects, making it suitable for cosmetic applications targeting uneven skin tone.
  • Skin Brightening: In vitro models and cosmetic trials explore its utility in brightening dull or discolored skin, particularly in cases of photoaging or hormone-induced pigmentation.
  • Melanin Pathway Modulation: Research evaluates how the peptide interacts with regulators such as tyrosinase, MITF, and α-MSH, potentially downregulating the genes responsible for melanin biosynthesis.
  • Safety & Tolerability: Preliminary data supports its non-irritating profile and compatibility with sensitive skin, contributing to its use in dermocosmetic product development.
  • Topical Formulation Use: It is included in advanced cosmetic emulsions, gels, and serums designed for localized application on areas of discoloration.

While Tetrapeptide-30 is not approved as a drug or therapeutic compound, its role in non-clinical cosmetic science continues to grow, particularly as a tool for understanding pigment biology and developing safe depigmenting solutions. All use of this material must remain within a controlled research setting.

Guidelines for Experimental Use

Tetrapeptide-30 is provided strictly for scientific laboratory research purposes only. It is not approved for human ingestion, therapeutic intervention, or veterinary use. All handling, experimentation, and storage must be conducted by qualified research professionals within a properly equipped laboratory setting.

This peptide should be managed in accordance with institutional protocols, safety regulations, and chemical handling guidelines relevant to investigational compounds. Personal protective equipment (PPE) such as gloves, lab coats, and eye protection must be used at all times when working with this material. SDS documentation should be reviewed prior to experimental use.

Note: Misuse of Tetrapeptide-30 outside a controlled scientific context is strictly prohibited. It is not intended for diagnostic, therapeutic, or cosmetic application in humans or animals.

Key Scientific References

Scientific investigation into Tetrapeptide-30 primarily focuses on its potential role in skin tone modulation, anti-hyperpigmentation activity, and melanogenesis regulation. Below is a curated selection of peer-reviewed research articles, compound summaries, and product-specific studies related to its biochemical properties and experimental applications:

Note: Tetrapeptide-30 is a relatively new investigational peptide, and its mentions in the literature often appear under proprietary formulations (e.g., White Ten™). Scientific validation is ongoing, and references may include broader context around synthetic tetrapeptides used for pigmentation regulation and cosmetic research.

Important Compliance Statement

This product, Tetrapeptide-30, is sold exclusively for **research and development purposes**. It is classified as a research chemical and is **not a drug, food, or cosmetic**. It has not been evaluated or approved by the FDA or any other regulatory authority for safety, efficacy, or any other use in humans or animals. By purchasing this product, the user acknowledges and agrees to comply with all applicable local, national, and international laws and regulations regarding the handling, storage, and use of research compounds. Any use of this product for purposes other than legitimate scientific research is strictly prohibited and may lead to severe legal and health consequences.

Analytical Validation & Documentation (COA, HPLC, MS)

Each production lot is subjected to rigorous analytical validation to confirm quality, purity, and molecular identity under research-grade standards. Full supporting documentation is available upon request.

  • COA (Certificate of Analysis): Includes batch number, purity percentage, traceability of each constituent ingredient, storage instructions, and full QC test results.
  • HPLC (High-Performance Liquid Chromatography): Provides chromatographic confirmation of purity and compound homogeneity.
  • MS (Mass Spectrometry): Confirms molecular weight and verifies structural integrity of the compound.
  • Traceability: Documents are traceable to their respective manufacturing lot and are intended to support reproducibility and transparency in scientific investigation.
  • COA Page 1 COA Page 2 COA Page 3

    Displayed above: Sample Certificate of Analysis – AOD-9604 (3-page image preview)

Storage & Shipping

All of our products are manufactured using the Lyophilization (Freeze Drying) process, which ensures stability during transit and long-term storage. Below are the official recommendations:

  • Stability During Shipping: Products are 100% stable for shipping for up to 3–4 months at ambient temperature.
  • After Reconstitution: Once reconstituted with bacteriostatic water, the peptide must be stored in a refrigerator and will remain stable for up to 30 days.
  • Room Temperature Storage: Lyophilized powder can be safely stored at room temperature until reconstitution, provided it remains sealed and protected from light.
  • Refrigerated Storage (Short Term): Store under 4°C (39°F) if not used immediately. Suitable for storage up to several weeks or months.
  • Frozen Storage (Long Term): For extended stability (months to years), store in a freezer at -80°C (-112°F).

Note: Avoid repeated freeze-thaw cycles. Always aliquot after reconstitution when necessary. Follow institutional safety protocols for handling all research compounds.

For advanced storage tips and reconstitution guidance, contact us or refer to our extended documentation.

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