• Ipamorelin / CJC-1295
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      • Ipamorelin / CJC-1295

      • $ 80
      • Ipamorelin 10mg + CJC-1295 10mg Ipamorelin and CJC-1295 are advanced research peptides widely studied in endocrine and molecular biology contexts for their roles in growth hormone (GH) signaling modulation. Ipamorelin is a selective growth hormone secretagogue that activates the ghrelin receptor (GHSR-1a), supporting pulsatile GH release signaling in research models without broad off-target receptor activity. CJC-1295 is a long-acting growth…
    • Kisspeptin
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      • Kisspeptin

      • $ 45
      • Kisspeptin Neuroendocrine & Reproductive Signaling Research Peptide Kisspeptin is a regulatory peptide studied for its central role in hypothalamic–pituitary–gonadal (HPG) axis signaling. In laboratory settings, it is investigated for stimulating gonadotropin-releasing hormone (GnRH), influencing downstream luteinizing hormone (LH) and follicle-stimulating hormone (FSH) pathways. Because of its upstream regulatory position, kisspeptin has become a major focus in reproductive endocrinology, fertility research,…
    • KLOW
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      • KLOW

      • $ 85
      • KLOW Multi-Peptide Regenerative Research Blend KLOW is a formulated research blend combining four widely studied peptides into a single laboratory-use preparation. This multi-compound formula is designed for investigative work focused on tissue remodeling, inflammatory signaling, vascular response, and dermal biology pathways in controlled research environments. Each component has been individually examined in preclinical models related to recovery, structural integrity, and…
    • KPV
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      • KPV

      • $ 45
      • KPV (Lys-Pro-Val) Anti-Inflammatory Signaling Research Peptide KPV is a short tripeptide fragment derived from alpha-melanocyte–stimulating hormone (α-MSH). In laboratory environments, KPV is studied for its interaction with inflammatory signaling pathways and immune-modulating mechanisms. Because of its targeted peptide structure and stability, KPV has become a focus in controlled research models evaluating inflammatory response regulation and epithelial tissue integrity. This compound…
    • MOTS-C
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      • MOTS-C

      • $ 80
      • MOTS-c Mitochondrial-Derived Metabolic Research Peptide MOTS-c is a mitochondrial-derived peptide studied for its role in cellular energy regulation and metabolic signaling pathways. Encoded within mitochondrial DNA, MOTS-c has become a major focus in laboratory environments examining energy homeostasis, insulin sensitivity, and exercise-related metabolic adaptation. Because of its connection to mitochondrial function, MOTS-c is frequently investigated in research models evaluating endurance…
    • MT1 (Melanotan 1)
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      • MT1 (Melanotan 1)

      • $ 45
      • MT-1 (Melanotan I) Melanocortin Receptor Research Peptide MT-1, commonly known as Melanotan I, is a synthetic analog of alpha-melanocyte–stimulating hormone (α-MSH). In laboratory environments, it is studied for its selective interaction with melanocortin receptors, particularly MC1R, which regulate melanin production and pigmentation pathways. Because of this targeted receptor activity, MT-1 has been widely researched in models focused on enhanced pigmentation…
    • MT2 (Melanotan 2)
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      • MT2 (Melanotan 2)

      • $ 45
      • MT-2 (Melanotan II) Broad Melanocortin Receptor Research Peptide MT-2, commonly known as Melanotan II, is a synthetic analog of alpha-melanocyte–stimulating hormone (α-MSH). In laboratory settings, it is studied for its interaction with multiple melanocortin receptors (including MC1R, MC3R, and MC4R), influencing pigmentation and neuroendocrine signaling pathways. Due to its broader receptor activity compared to MT-1, MT-2 has been widely researched…
    • NAD+
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      • NAD+

      • $ 60
      • NAD+ (Nicotinamide Adenine Dinucleotide) Cellular Energy & Longevity Research Compound NAD+ (Nicotinamide Adenine Dinucleotide) is a critical coenzyme studied in laboratory settings for its central role in cellular energy production and metabolic regulation. Present in all living cells, NAD+ functions as a key electron carrier within mitochondrial respiration and redox reactions. Because NAD+ levels naturally decline with age in many…