Emideltide

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Description

Emideltide

Emideltide is a small peptide. It consists of nine amino acids that were first isolated in neurophysiology research in the 1970s. It has been studied as a neuropeptide associated with biological rhythm regulation. It is also studied in central nervous system signaling.

In laboratory environments, Emideltide is commonly examined in experimental models. This study explores:

  • circadian biology
  • peptide signaling pathways
  • and interactions

All these are done between neurochemical systems involved in physiological regulation. Due to its small peptide structure, Emideltide is also used as a reference compound. This comes in handy in peptide receptor interaction studies and biochemical pathway analysis.

Chemical and Molecular Properties

Property Description
Product Name Emideltide
Synonyms Emideltide; DSIP Nonapeptide
CAS Number 62568-57-4
Molecular Formula C35H48N10O15
Molecular Weight 848.81 g/mol
Peptide Length Nonapeptide (9 amino acids)
Structural Classification Neuropeptide
Research Classification Experimental peptide for neurochemical signaling studies

Working Mechanism of "Emideltide"

Interaction with Neurochemical Signaling Systems

In experimental research, Emideltide has been evaluated for its interaction with neurochemical signaling pathways. This is done within the central nervous system. Laboratory studies suggest that the peptide may affect communication between neurons. The effect takes place by interacting with neurotransmitter systems involved in regulating biological rhythms.

Modulation of Neurotransmitter Activity

Experimental models have explored the potential influence of Emideltide on several neurotransmitter systems. These include those associated with serotonin, dopamine, and norepinephrine signaling pathways. These pathways are frequently studied in neurobiology research. This is because they regulate neuronal communication and signal transmission.

Influence on Peptide and Hormonal Signaling

Some controlled studies have examined whether Emideltide may affect:

  • peptide-mediated signaling and
  • regulation of certain biochemical messengers (within experimental models) 

These observations are typically explored in vitro or in controlled laboratory environments. This is done to understand peptide interactions with molecular signaling pathways.

All mechanistic descriptions above are derived from controlled laboratory investigations. They do not imply clinical relevance or therapeutic application.

"Delta Sleep Inducing Peptide (Emideltide)" Research Applications (Laboratory Use Only)

  • Peptide–receptor interaction studies
    • Neurotransmitter signaling pathway research
    • Experimental investigations of circadian rhythm regulation
    • Molecular studies of peptide-mediated cellular communication

These applications are strictly confined to laboratory research and analytical investigations.

Why Choose Purerawz for Delta Sleep Inducing Peptide (Emideltide)?

Buy Delta Sleep Inducing Peptide (Emideltide) for laboratory research use from our online shop. At Purerawz, we provide high-quality reference materials. Each research compound comes with a Certificate of Analysis for verification of purity and concentration.

Note: Delta Sleep Inducing Peptide (Emideltide) is an investigational compound currently undergoing clinical evaluation and has not been established as safe or effective for any therapeutic use.

Disclaimer

This information is for educational purposes only and not medical advice. Products are for research use only. Research must follow IRB or IACUC guidelines. Verify information independently before purchasing. By ordering, you agree to our Terms and Conditions. If you are not 100% satisfied with the product you received, please contact us at support@purerawz.co

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

Reference Links

Monnier, M., Dudler, L., & Schönenberger, G. A. (1977). The delta sleep-inducing peptide (Emideltide): Isolation, structure, and biological properties. Neuroscience Letters, 7(1), 27 32. https://doi.org/10.1016/0304-3940(77)90022-7/

Graf, M. V., Kastin, A. J., & Schally, A. V. (1980). Distribution and characterization of delta sleep-inducing peptide in the central nervous system. Peptides, 1(4), 351 356. https://doi.org/10.1016/0196-9781(80)90043-0/

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