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  • Cagrilintide + Semaglutide 10MG $220.00

    Cagrilintide + Semaglutide 10MG is a 10-milligram peptide pair combining cagrilintide, an amylin analogue, with semaglutide, a GLP-1 receptor agonist peptide. Researchers study these peptides in metabolic research, including appetite signaling and glucose regulation pathways. This paired format is used in experimental designs that examine co-agonism and complementary endocrine signaling.

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  • Cagrilintide + Semaglutide 5MG $125.00

    Cagrilintide + Semaglutide 5MG is a 5-milligram combined format of two peptide research compounds: cagrilintide (an amylin analogue) and semaglutide (a GLP 1 receptor agonist peptide analogue). Researchers study this pairing in preclinical and clinical research settings focused on appetite regulation and metabolic signaling. Studies have examined how amylin and GLP 1 pathways may interact when investigated together.

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  • Cagrilintide 10MG $198.00

    Cagrilintide 10MG is a 10-milligram format of cagrilintide, a long acting amylin analogue peptide designed to engage amylin receptor pathways. Researchers study cagrilintide in preclinical and translational settings involving appetite signalling, gastric emptying models, and metabolic regulation.

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  • Cagrilintide 5MG $125.00

    Cagrilintide 5MG is a 5-milligram format of cagrilintide, a long acting amylin analogue peptide engineered for extended receptor activity. Researchers study amylin analogues in the context of metabolic signaling, appetite regulation pathways, and gastric emptying models.

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  • Cartalax 20MG $65.00

    Cartalax 20MG is a 20-milligram format of Cartalax, a short peptide fragment developed in Russian peptide bioregulator research. Researchers study Cartalax in preclinical and exploratory settings related to cartilage biology, extracellular matrix signaling, and connective tissue models. Interest often focuses on how small regulatory peptides may influence gene expression patterns in cell and tissue systems.

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  • Cerebrolysin 60MG $59.00

    Cerebrolysin 60MG is a 60-milligram format of Cerebrolysin, a neurotrophic peptide complex composed of low molecular weight peptides and free amino acids. Researchers study Cerebrolysin in the context of neurotrophic signaling, synaptic plasticity, and models of neurodegeneration and recovery. Studies have examined its peptide fraction for potential effects on neuronal viability and network function in preclinical settings.

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  • CJC 1295 With DAC 5MG $166.00

    CJC 1295 With DAC 5MG is a 5-milligram format of CJC-1295 with drug affinity complex (DAC), a synthetic growth hormone releasing hormone analogue peptide. Researchers study this modified GHRH fragment for its potential to extend peptide half life through albumin binding. Studies have examined CJC 1295 With DAC 5MG in preclinical and investigational settings focused on pulsatile GH signaling and IGF 1 related endpoints.

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  • CJC 1295 Without DAC 10MG | GHRH 1 29 Peptide Analogue $133.00

    CJC 1295 Without DAC 10MG | GHRH 1 29 Peptide Analogue is a 10 mg format of the short GHRH 1 to 29 analogue commonly referred to as Mod GRF 1 to 29. Researchers study this peptide in laboratory work focused on growth hormone signaling models and pulsatile release dynamics. It is frequently used as a reference compound in peptide endocrinology research.

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  • CJC-1295 No DAC + Ipamorelin 10MG $90.00

    CJC-1295 No DAC + Ipamorelin 10MG is a combined 10MG format pairing a CJC 1295 (no DAC) GHRH analogue with ipamorelin, a ghrelin receptor agonist peptide. This blend is commonly used in research that examines pulsatile growth hormone signaling pathways and IGF 1 related biomarkers. Studies have explored these peptides in endocrine and metabolism focused experimental models.

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  • CJC-1295 Without DAC 5MG | GHRH Peptide Analogue $77.00

    CJC-1295 Without DAC 5MG | GHRH Peptide Analogue is a 5 milligram format of a synthetic growth hormone releasing hormone analogue commonly referenced as MOD GRF 1-29. Researchers study this short GHRH fragment for its potential to model pulsatile GH signaling and IGF 1 related pathways in preclinical and laboratory settings.

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  • Dermorphin 5MG $75.00

    Dermorphin 5MG is a 5-milligram format of dermorphin, a naturally occurring opioid heptapeptide first isolated from amphibian skin secretions. Researchers study dermorphin as a mu opioid receptor agonist in receptor binding and signaling assays. It is also used as a reference peptide in neuropharmacology research involving analgesia pathways and peptide receptor selectivity.

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  • DSIP 15MG $97.00

    DSIP 15MG is a 15-milligram format of Delta Sleep Inducing Peptide, a synthetic nonapeptide originally described from biological extracts. Researchers study DSIP in the context of sleep regulation and neuroendocrine signaling, including its interactions with stress related pathways.

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  • DSIP 2MG $20.00

    DSIP 2MG is a 2-milligram format of DSIP, a nonapeptide commonly expanded as Delta Sleep Inducing Peptide. Researchers have examined DSIP in studies involving sleep regulation, stress signaling, and neuroendocrine pathways.

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  • DSIP 5MG $42.00

    DSIP 5MG is a 5-milligram format of Delta Sleep Inducing Peptide, a synthetic nonapeptide composed of nine amino acids. Researchers study DSIP in the context of sleep regulation, neuroendocrine signaling, and stress related physiology in preclinical and experimental models. Studies have also examined DSIP alongside circadian biology and peptide mediated central nervous system pathways.

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  • Epithalon 10MG $23.00

    Epithalon 10MG is a 10-milligram format of Epithalon, also called Epitalon, a synthetic tetrapeptide studied in aging and circadian biology research. Researchers have examined Epithalon in the context of pineal gland peptide analogs and telomere related cellular models.

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  • Epithalon 50MG $85.00

    Epithalon 50MG is a 50-milligram format of Epithalon, a synthetic tetrapeptide also known as Epitalon (Ala Glu Asp Gly). Researchers study Epithalon in the context of pineal peptide biology and cellular aging models, including pathways connected to telomerase activity and circadian regulation.

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