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“Laboratory Research Compounds”

Dipeptide-2

Dipeptide-2 is a synthetic peptide composed of two amino acids, examined in non-clinical research for its potential role in supporting microcirculation, modulating inflammatory mediators, and influencing lymphatic flow in in vitro models. Studies often investigate its activity in biochemical assays related to fluid balance, vascular signaling, and peptide–cell interactions. 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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Dipeptide-2

Form: Scientific-grade, Lyophilized Powder

Purity: ≥99%

CAS Number: 24587-37-9

Dipeptide-2 is a research-use-only synthetic peptide composed of two amino acids, examined for its potential activity in modulating microcirculation, fluid balance, and inflammatory mediators in in vitro models. It is commonly studied in biochemical assays related to vascular signaling and peptide–cell interactions.

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Chemical Structure & Identifiers

Peptide Name:Dipeptide-2 Synonyms:Valyl-Tryptophan, Val-Trp, L-Valyl-L-tryptophan, UNII-J5Q9A02W4D CAS Number:2005-46-1 PubChem CID:168182 Molecular Formula:C16H21N3O3 Molecular Weight:303.36 g/mol
Structure of Dipeptide-2

Mechanism of Action

Dipeptide-2 is a synthetic dipeptide composed of valine and tryptophan, examined in non-clinical research for its potential to influence microcirculation, lymphatic activity, and inflammatory mediator balance in vitro. Investigations focus on its role in biochemical pathways relevant to tissue fluid regulation and vascular signaling.

  • Microcirculation Support: Studied for its ability to affect vascular tone and endothelial signaling, potentially improving nutrient and oxygen exchange in model systems.
  • Modulation of Inflammatory Mediators: Research explores how Dipeptide-2 may influence cytokines, prostaglandins, and other molecules linked to tissue inflammation and fluid retention.
  • Lymphatic Flow and Drainage: Investigated in in vitro models for its possible role in promoting lymphatic activity and reducing interstitial fluid buildup.
  • Periorbital and Tissue Edema Models: Used in laboratory assays to evaluate its effect on fluid accumulation and swelling in connective tissue frameworks.

These research observations position Dipeptide-2 as a compound of interest in the study of vascular physiology, edema reduction strategies, and fluid balance regulation. For laboratory research use only; not for human or veterinary use.

Clinical Development & Research Focus

Dipeptide-2 is the focus of preclinical biochemical and dermatological research due to its observed influence on microcirculation, lymphatic activity, and inflammatory mediator balance in in vitro models. It is studied for its role in supporting tissue fluid regulation and vascular function, particularly in areas prone to edema or fluid retention.

  • Microcirculation Modulation: Investigated for potential effects on endothelial signaling pathways, which may help optimize nutrient and oxygen exchange in model systems.
  • Lymphatic Flow Support: Examined for its ability to promote lymphatic activity and assist in the reduction of excess interstitial fluid in laboratory assays.
  • Inflammatory Mediator Influence: Research explores how Dipeptide-2 may affect cytokines, prostaglandins, and other biochemical markers associated with tissue inflammation.
  • Periorbital Swelling Models: Frequently used in experimental designs aimed at assessing fluid accumulation and puffiness around delicate tissue regions.
  • Topical Research Formulation Studies: Included in model emulsions and gels for the evaluation of compound delivery and distribution in ex vivo or simulated skin systems.

While Dipeptide-2 is not approved as a drug or therapeutic compound, its role in non-clinical science continues to expand, particularly as a tool for studying vascular physiology, edema mechanisms, and fluid balance regulation. All use of this material must remain within a controlled research setting.

Guidelines for Experimental Use

Dipeptide-2 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 environment.

This peptide should be managed in accordance with institutional protocols, safety regulations, and chemical handling guidelines applicable to investigational compounds. Appropriate personal protective equipment (PPE)—including gloves, lab coats, and eye protection—must be worn at all times when working with this material. Researchers should review the Safety Data Sheet (SDS) prior to initiating any experimental procedures.

Note: Misuse of Dipeptide-2 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 Dipeptide-2 primarily focuses on its potential influence on microcirculation, lymphatic activity, and inflammatory mediator balance in in vitro and experimental models. Below is a curated selection of peer-reviewed literature, compound summaries, and related research discussing its biochemical properties and laboratory applications:

Note: References often appear in the broader context of cosmetic and experimental peptides. Dipeptide-2 remains an investigational compound, and all use must be conducted within controlled research environments.

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)

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