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Research Peptides

  • GHK-Cu / BPC-157 / TB-500 Research Blend is a multi-peptide research complex supplied as a lyophilized reference standard for in-vitro multi-target pathway interaction profiling and comparative signaling cascade studies. For in vitro laboratory research use only. Not for use in any living organism.

  • A synthetic growth hormone-releasing hormone receptor-binding peptide analog supplied as a lyophilized research reference standard for in-vitro GHRH receptor binding kinetics and downstream endocrine signaling pathway analysis. For in vitro laboratory research use only. Not for use in any living organism.

    Select options This product has multiple variants. The options may be chosen on the product page Details
  • Glutathione (Reduced) is a tripeptide composed of glutamine, cysteine, and glycine, utilized in advanced research models for its central role in redox regulation and cellular defense mechanisms. It is widely studied for its interaction with reactive oxygen species and its involvement in oxidative stress modulation and detoxification pathways within controlled research environments.
  • HCG (Human Chorionic Gonadotropin) is a glycoprotein hormone analog studied in non-clinical in vitro models for its interaction with LH receptor binding kinetics and downstream intracellular signaling pathway dynamics. For in vitro laboratory research use only. Not for human or animal use.

  • IGF-1 LR3 is a synthetic analog of insulin-like growth factor-1 with a 13-amino acid N-terminal extension, supplied as a lyophilized research reference standard for in-vitro IGF-1 receptor binding kinetics assays, receptor-ligand interaction profiling, and downstream signaling cascade analysis. For in vitro laboratory research use only. Not for use in any living organism.

  • Ipamorelin is a synthetic pentapeptide with selective GHS-R1a receptor affinity, studied in controlled non-clinical in vitro models for its interaction with ghrelin receptor binding kinetics and downstream intracellular signaling pathway dynamics. For in vitro laboratory research use only. Not for human or animal use.
  • Kisspeptin-10 is a precision-engineered synthetic decapeptide studied in non-clinical in vitro models for its interaction with GPR54 (KISS1R) receptor binding kinetics and downstream neuroendocrine signaling pathway dynamics. For in vitro laboratory research use only. Not for human or animal use.

  • KPV (Lys-Pro-Val) is a precision-engineered synthetic tripeptide derived from α-MSH, utilized in advanced research models for its targeted modulation of inflammatory signaling and immune response pathways. It is widely studied for its role in cytokine regulation, antimicrobial-associated mechanisms, and localized cellular defense processes within controlled research environments.
  • Lipo-C Lipotropic Research Complex is a precision-formulated lipotropic research complex combining Methionine, Inositol, Choline, and Vitamin B12, utilized in advanced research models to investigate lipid metabolism, cellular energy regulation, and hepatic-associated metabolic pathways. It is widely studied for its role in lipid transport, methylation processes, and coordinated metabolic signaling within controlled research environments.
  • A synthetic melanocortin receptor agonist peptide with selective affinity for MC3R and MC4R receptor subtypes, supplied as a lyophilized research reference standard for in-vitro receptor binding selectivity profiling. For in vitro laboratory research use only. Not for use in any living organism.
  • Melanotan II is a synthetic alpha-MSH analog peptide supplied as a lyophilized research reference standard for in-vitro melanocortin receptor subtype binding selectivity profiling (MC1R, MC3R, MC4R, MC5R) and downstream cAMP signaling cascade quantification. For in vitro laboratory research use only. Not for use in any living organism.

  • MOTS-C

    $68.00
    MOTS-c  a mitochondria-derived peptide engineered for advanced research into metabolic regulation, energy utilization, and cellular signaling. Known for its role in mitochondrial communication and adaptive stress response pathways, MOTS-c is a key compound in studies focused on glucose metabolism, insulin signaling, and metabolic efficiency within controlled laboratory environments.
    Select options This product has multiple variants. The options may be chosen on the product page Details
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