PEPTIDE NOVA

DSIP 5MG (Delta Sleep-Inducing Peptide)

Original price was: $59.99.Current price is: $38.99.

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Description

Product Overview

DSIP is a synthetic peptide referenced in scientific literature and studied in peptide research involving cell signaling pathways, neuropeptide-mediated molecular interactions, and regulatory peptide networks. Within controlled laboratory and preclinical research environments, DSIP is examined as a laboratory peptide compound for its amino acid sequence, structural characteristics, and interaction with experimental cellular and molecular systems.

As a synthetic peptide compound, DSIP is utilized in experimental studies to investigate peptide molecular structure, peptide signaling pathways, and laboratory peptide characterization, providing insights into molecular signaling dynamics and intracellular communication mechanisms.

DSIP (Delta Sleep-Inducing Peptide) is a synthetic neuropeptide fragment originally identified in mammalian brain tissue. It is classified as a synthetic signaling peptide studied in laboratory research for its interactions with cellular signaling pathways and neuropeptide-mediated molecular mechanisms.

Researchers examine DSIP to study peptide sequence behavior, receptor-mediated signaling interactions, and intracellular communication networks. Its amino acid sequence and molecular structure are analyzed in laboratory and preclinical research models to better understand peptide signaling pathways, molecular regulatory mechanisms, and intracellular peptide-mediated communication.

Experimental studies involving DSIP include:

  • peptide signaling pathways

  • cell signaling research

  • receptor binding interactions

  • molecular signaling mechanisms

  • neuropeptide research

  • peptide stability and structural activity

  • laboratory peptide characterization

  • intracellular signaling cascade analysis

  • metabolic and regulatory pathway research

All studies are conducted strictly in controlled laboratory and preclinical research environments.

Compound Name: DSIP
Peptide Classification: Synthetic neuropeptide fragment
Molecular Formula: C76H126N24O19 (approximate)
Molecular Weight: ~1530 g/mol
Amino Acid Sequence: Trp-Ala-Gly-Gly-Asp-Ala-Ser-Gly-Glu
CAS Number: Referenced in scientific literature

DSIP is a synthetic peptide fragment designed for laboratory investigation of peptide signaling pathways, molecular regulatory mechanisms, and neuropeptide-mediated intracellular communication. Researchers study its peptide molecular structure and sequence using techniques such as chromatography, mass spectrometry, and laboratory peptide characterization to assess structural integrity, sequence stability, and signaling potential.

Scientific literature has examined DSIP in experimental and preclinical studies investigating peptide signaling pathways, neuropeptide-mediated molecular interactions, and intracellular communication networks.

In research models, the peptide has been studied in relation to cellular signaling cascades, receptor-mediated molecular interactions, and peptide-mediated regulatory networks. All investigations are conducted strictly in controlled laboratory or preclinical research environments, focusing solely on the scientific characterization of this synthetic peptide compound.

Compound Name: DSIP
Peptide Classification: Synthetic neuropeptide fragment
Format: Lyophilized Powder
Quantity: 5MG
Research Category: Peptide research / molecular signaling research / laboratory peptide characterization
Storage Recommendations: Store refrigerated in a cool, dry environment protected from light and moisture. Long-term storage under controlled laboratory refrigeration is recommended.

Research Use Only. Not for human or veterinary use. Not approved by the FDA and not intended to diagnose, treat, cure, or prevent any disease.

Links To Research Studies

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For research purposes only. Not for consumption, clinical use, or diagnostic purposes. Buyer assumes all responsibility for proper handling and use in compliance with applicable regulations.

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