Agmatine Sulfate

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Description

Agmatine Sulfate Overview

Agmatine sulfate is a naturally occurring biogenic amine. It comes from the amino acid L-Arginine. In biochemical and neurochemical research, it is studied for its role in cellular signaling systems. It's also done in neuromodulatory mechanisms in experimental models.

In laboratory environments, Agmatine sulfate is studied as a reference molecule. This is done for examining intracellular signaling pathways associated with nitric oxide regulation, receptor-mediated signaling, and metabolic coordination. Researchers frequently employ this compound in controlled experimental systems. They do it to analyze neurotransmitter modulation and molecular communication pathways.

In research models, Agmatine sulfate is commonly used to explore:

  • nitric oxide–related signaling processes
  • receptor-mediated neuromodulatory activity, and
  • intracellular metabolic signaling interactions (in in vitro assays and preclinical models)

Agmatine sulfate formulations are supplied strictly as research materials intended for analytical and laboratory investigation.

Agmatine Sulfate

Property Description
Compound Name Agmatine Sulfate
Class Biogenic amine
Molecular Formula C5H14N4 H2SO4
Molecular Weight 228.27 g/mol
Research Category Neuromodulatory and nitric oxide signaling research compound
Structural Class Arginine-derived decarboxylation product
Formulation Research-grade powder

Mechanism of Action

Nitric Oxide Signaling Regulation

Agmatine is investigated in laboratory studies for its interaction with nitric oxide synthase (NOS) enzymes. They are the ones involved in cellular signaling pathways. Experimental research models analyze their influence on nitric oxide–related biochemical processes that regulate vascular signaling and intracellular communication.

Receptor Interaction and Neuromodulatory Signaling

In controlled research systems, Agmatine is studied for its interaction with imidazoline receptor sites and alpha-2 adrenergic receptor pathways. These receptor systems are associated with neuromodulatory signaling and intracellular communication mechanisms in experimental models.

Ion Channel and NMDA Receptor Interaction

Laboratory investigations have also examined Agmatine for its interaction with ion channel–associated receptor systems, including the NMDA receptor. These receptor complexes are frequently studied in molecular neuroscience research due to their involvement in synaptic signaling and neuronal communication.

Research Applications

In controlled laboratory settings, Agmatine sulfate may be utilized for investigations involving:

  • nitric oxide signaling pathway analysis
  • receptor-mediated neuromodulatory signaling studies
  • intracellular metabolic signaling investigations
  • molecular neuroscience research involving receptor systems
  • biochemical pathway analysis in cellular communication models

All applications are strictly confined to experimental and analytical research environments.

Why Choose Purerawz?

Buy Agmatine Sulfate for laboratory research use from our online shop. At Purerawz, we provide high-quality reference materials. Each compound is supplied with an independent third-party Certificate of Analysis verifying identity, purity, and concentration.

Note: Agmatine Sulfate (C5H14N4 · H2SO4) is an investigational compound currently undergoing scientific evaluation and has not been established as safe or effective for any therapeutic application.

Disclaimer
This information is for educational purposes only and does not constitute medical advice.

THE PRODUCTS DESCRIBED HEREIN ARE FOR LABORATORY AND RESEARCH USE ONLY. All clinical research must be conducted with oversight from the appropriate Institutional Review Board (IRB). All preclinical research must be conducted with oversight from the Institutional Animal Care and Use Committee (IACUC) in accordance with the guidelines of the Animal Welfare Act (AWA).

Our content is intended to be used for informational purposes only. It is important to conduct independent analysis and review research from trusted sources before making any purchase decision.

By completing and paying for your order, you agree to our Terms and Conditions. Customer satisfaction is our priority. If you are not fully satisfied with the product you received, please contact support@staging.purerawz.co/

ATTENTION: All products are for LABORATORY AND RESEARCH PURPOSES ONLY, not for veterinary or human use.

References

Reis DJ, Regunathan S. Agmatine: an endogenous ligand at imidazoline receptors and its implications for neuromodulation–Annals of the New York Academy of Sciences
https://pubmed.ncbi.nlm.nih.gov/7848216/

Piletz JE, Ivanov TR, Sharp JD, et al. Agmatine: clinical applications after 100 years in translation–Drug Discovery Today
https://pubmed.ncbi.nlm.nih.gov/18342984/

Dr. Helma Wennemers

Dr. Helma Wennemers is a globally recognized chemist shaping modern peptide science and molecular design through highly original research in applied biosciences.

Her work explores how precise molecular architecture can be engineered to create new functional systems in chemistry and life sciences. Her contributions continue to redefine contemporary chemical research through creativity, depth, and structural innovation.

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