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  • Metabolic Research
  • GLP-1 & Metabolic Research Peptides

    Research compounds for metabolic and energy-balance studies. The category brings together incretin-receptor agonists supplied under GLP1-RC catalogue codes, long-acting amylin analogues, and peptides studied in mitochondrial function, NAD+ metabolism and cellular ageing. Receptor targets and half-lives differ widely between them, so compare each specification before choosing. Laboratory research use only.

    Best value per mg

    Research Compounds

    GLP1-RC-RT

    ★★★★★ ★★★★★ 4.7 13 reviews

    Reta · Triple GLP-1R / GIPR / GCGR

    Investigational triple GLP-1R / GIPR / GCGR agonist characterised in receptor-pharmacology studies. Supplied as GLP1-RC-RT laboratory research material.

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  • 5+ vials · 10% off
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  • MOTS-c

    ★★★★★ ★★★★★ 4.5 4 reviews

    (Mitochondrial-Derived Peptide)

    Mitochondrial-derived 16-amino-acid peptide studied for AMPK signalling, glucose handling and metabolic regulation in cell and rodent models.

    5-Amino-1MQ

    (5-Amino-1-methylquinolinium)

    Small-molecule NNMT inhibitor studied for NAD+ salvage and adipocyte metabolism endpoints in preclinical research models.

    GLP1-RC-TZ

    Tirz · GIPR / GLP-1R dual agonist

    Dual GIP / GLP-1 receptor agonist with imbalanced agonism characterised in published research. Supplied as GLP1-RC-TZ laboratory research material.

    GLP1-RC-SM

    Sema · GLP-1R agonist

    Long-acting GLP-1 receptor agonist characterised in published research. Supplied as GLP1-RC-SM laboratory research material.

    Cagrilintide

    (NN9838, Amylin analogue)

    Long-acting amylin analogue studied for amylin and calcitonin receptor agonism and satiety-pathway signalling, alone and alongside incretin agonists.

    Epitalon

    (Epithalon / Ala-Glu-Asp-Gly Tetrapeptide)

    Synthetic tetrapeptide (Ala-Glu-Asp-Gly) studied for telomerase activity and pineal melatonin regulation in cell and animal research models.

    FOXO4-DRI

    (Senolytic peptide)

    D-retro-inverso peptide that disrupts FOXO4–p53 binding, studied for senescent-cell apoptosis in cell and rodent research models.

    NAD+

    (Nicotinamide Adenine Dinucleotide, β-NAD)

    Central redox coenzyme of cellular metabolism and the substrate consumed by the sirtuin, PARP and CD38 enzymes studied in mitochondrial and cellular-ageing research.

    SS-31

    (Elamipretide, MTP-131)

    Mitochondria-targeted tetrapeptide that concentrates in the inner mitochondrial membrane and binds cardiolipin, studied for bioenergetic function.

    Glutathione

    (GSH, γ-glutamyl-cysteinyl-glycine)

    The body’s principal endogenous antioxidant - a tripeptide central to redox balance, detoxification and cellular oxidative-stress research.

    Pinealon

    (EDR, Glu-Asp-Arg)

    Khavinson-family tripeptide bioregulator studied in neuronal hypoxia and oxidative-stress models.

    Cartalax

    (AED, Ala-Glu-Asp)

    Khavinson-family tripeptide bioregulator studied for tissue-specific gene modulation in cartilage and connective-tissue cultures.

    Eloralintide

    (LY3841136, selective amylin receptor agonist)

    Selective, long-acting amylin-receptor agonist studied in obesity and energy-balance research models.

    What you will find here

    Metabolic Research covers incretin and amylin receptor agonists alongside compounds studied in mitochondrial and cellular-ageing models. GLP1-RC-SM (semaglutide research material) is a GLP-1 receptor agonist. GLP1-RC-TZ (tirzepatide) is a dual GIP/GLP-1 receptor agonist. GLP1-RC-RT (retatrutide) adds glucagon-receptor activity as a triple agonist. Cagrilintide is a long-acting acylated amylin analogue active at amylin and calcitonin receptors. Eloralintide is a selective, long-acting amylin-receptor agonist. MOTS-c is a mitochondrial-derived peptide studied in AMPK signalling. 5-Amino-1MQ is a small-molecule NNMT inhibitor. SS-31 binds cardiolipin in the inner mitochondrial membrane. NAD+ and glutathione are the central redox coenzyme and the principal cellular thiol. Epitalon, pinealon and cartalax are short bioregulator peptides from the Khavinson research lineage. FOXO4-DRI is studied for disrupting the FOXO4–p53 interaction in senescent cells. Choose by receptor target rather than by category label.

  • Focus: GLP-1, GIP and related metabolic signalling pathways.
  • Typical models: food intake, glucose handling and energy balance in lab studies.
  • Every listing shows strength, pack size and price; published Certificates of Analysis are listed on /coa.
  • Sold for laboratory research only - not for human use.
  • Research guides: Metabolic Research

  • GLP-1 research compound comparison
  • Retatrutide vs tirzepatide in published research
  • Cagrilintide research guide
  • 5-Amino-1MQ research guide
  • Metabolic and GLP-1 research hub
  • How to read a peptide Certificate of Analysis
  • How to store research peptides
  • Published Certificates of Analysis
  • Research peptide glossary
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  • Research use only - all claims made on this site are for testing and research use only. Purchasers must be 21 years of age or older.

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    © 2026 New-U Research Compounds · new-u.io

    [image: NAD+ research compound vial - nicotinamide adenine dinucleotide coenzyme, >99% pure]

    [image: SS-31 research peptide vial - mitochondrial tetrapeptide, >99% pure]

    [image: Glutathione research peptide vial - endogenous antioxidant tripeptide, >99% pure]

    [image: Pinealon research peptide vial - Glu-Asp-Arg tripeptide bioregulator, >98% pure]

    [image: Cartalax research peptide vial - Ala-Glu-Asp tripeptide bioregulator, >98% pure]

    [image: Eloralintide research peptide vial - amylin receptor agonist, >99% pure]

    Research use only — not for human consumption. All products are supplied strictly for laboratory research purposes.

    © 2026 New-U Research Compounds · new-u.io — Copyright held with Hilxera Distribution Services LLC. All rights reserved.