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6 products
6 products
Neuropeptide hormone.
Classification
Naturally occurring cyclic nonapeptide hormone and neurotransmitter. Oxytocin is involved in neuroendocrine signaling and is studied for its role in social behavior, stress response, bonding pathways, smooth muscle signaling, and central nervous system regulation.
Target Receptors
• Oxytocin receptor / OXTR – A G-protein-coupled receptor involved in oxytocin-mediated cellular signaling.
• Gq/PLC signaling pathways – Oxytocin receptor activation commonly engages intracellular calcium and phospholipase C-related signaling.
• Central and peripheral oxytocin pathways – Studied in both nervous system and peripheral tissue signaling models.
Structure
Oxytocin is a cyclic nonapeptide composed of nine amino acids with a disulfide bridge, giving it a stable ring-like structure important for receptor binding.
Research Focus
Studied for its potential effects on social signaling, stress response, emotional processing, reproductive biology, smooth muscle signaling, lactation-related pathways, and neuroendocrine regulation.
Regenerative peptide blend.
Classification
Multi-peptide research blend. GLOW combines BPC-157 10mg, GHK-Cu 50mg, and TB-500 10mg, bringing together peptides studied for tissue repair signaling, skin regeneration, collagen support, inflammation balance, and connective tissue recovery pathways.
Target Receptors
• Copper-dependent enzymatic systems – GHK-Cu influences pathways involved in collagen synthesis, antioxidant defense, skin repair, and tissue remodeling.
• Cellular repair and angiogenic pathways – BPC-157 is studied for signaling related to tissue protection, vascular response, tendon and soft tissue repair, and healing models.
• Actin and cell-migration pathways – TB-500 is studied for cellular movement, tissue regeneration, wound repair, and recovery-related signaling.
Structure
GLOW is a blended formulation containing BPC-157, GHK-Cu, and TB-500 in a single vial. Each peptide has a distinct structure and mechanism of interest, with the blend designed to combine regenerative, connective tissue, and skin-support research pathways.
Research Focus
Studied for its potential effects on skin quality, collagen production, wound-healing models, hair follicle support, connective tissue recovery, soft tissue repair, inflammation balance, and overall tissue rejuvenation.
Melanocortin receptor agonist.
Classification
Synthetic melanocortin peptide analogue. MT2, commonly known as Melanotan II, is a synthetic analogue of alpha-melanocyte-stimulating hormone studied for its interaction with melanocortin receptor pathways involved in pigmentation, metabolic signaling, and neuroendocrine activity.
Target Receptors
• MC1R melanocortin receptors – Associated with melanogenesis and pigmentation-related signaling.
• MC3R and MC4R melanocortin receptors – Involved in appetite, energy balance, and neuroendocrine signaling pathways.
• Broader melanocortin receptor activity – MT2 is considered non-selective across multiple melanocortin receptor subtypes.
Structure
MT2 is a synthetic cyclic peptide analogue of alpha-MSH designed to increase stability and receptor activity compared with naturally occurring melanocortin peptides.
Research Focus
Studied for its potential effects on melanogenesis, pigmentation pathways, appetite-related signaling, energy balance, and melanocortin receptor biology.
Copper-binding tripeptide.
Classification
Naturally occurring copper peptide complex. GHK-Cu is a biologically active tripeptide that binds copper ions and is involved in multiple regenerative and signaling pathways related to skin, hair, and connective tissue health.
Target Receptors
• Copper-dependent enzymatic systems – Influences pathways involved in collagen synthesis, antioxidant defense, and tissue remodeling.
• Cellular repair signaling pathways – Modulates gene expression related to inflammation, healing, and regeneration.
Structure
GHK-Cu is a tripeptide composed of glycine, histidine, and lysine bound to a copper ion, forming a stable complex that enhances biological activity and cellular signaling.
Research Focus
Studied for its potential effects on skin regeneration, collagen production, hair follicle support, wound healing, inflammation balance, and overall tissue rejuvenation.
Synthetic actin-regulating peptide fragment.
Classification
Cell migration and tissue repair research peptide. TB-500 belongs to a class of peptides derived from thymosin beta-4, involved in cellular movement, tissue remodeling, and repair processes.
Target Receptors
• No single defined receptor. Research indicates activity through actin-binding pathways and cellular migration signaling mechanisms involved in tissue regeneration and repair.
Structure
TB-500 is a synthetic peptide fragment of thymosin beta-4 designed to replicate key functional regions responsible for actin regulation and cellular migration activity.
Research Focus
Studied for its potential effects on tissue repair, recovery acceleration, inflammation modulation, wound healing, and flexibility support.
Synthetic gastric-derived peptide.
Classification
Cytoprotective and regenerative research peptide. BPC-157 belongs to a class of synthetic peptides derived from protective proteins found in the gastric system, commonly studied for their role in tissue protection and repair mechanisms.
Target Receptors
• No single confirmed receptor target. Research suggests interaction with multiple biological pathways including nitric oxide modulation, growth factor signaling, and inflammatory regulation pathways.
Structure
BPC-157 is a 15-amino-acid peptide sequence derived from a naturally occurring protective protein found in gastric juice. Its structure is highly stable and resistant to enzymatic breakdown, allowing it to remain active in biological environments.
Research Focus
Studied for its potential effects on tissue repair, inflammation modulation, tendon and ligament support, muscle recovery, and gastrointestinal protection.
Four travel-sized remedies for jet lag, tension, dry skin, and summer stress.
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