DSIP 10 mg
Product Overview
DSIP (Delta Sleep–Inducing Peptide) is a naturally occurring neuropeptide that has been studied in laboratory environments for its interactions with neurological signaling pathways and regulatory communication within the central nervous system. First identified in experimental models examining sleep-related biological processes, DSIP has since attracted scientific interest in research focused on peptide-mediated neurological signaling.
Researchers frequently examine DSIP in experimental models exploring neuropeptide signaling pathways, circadian rhythm regulation, and peptide influence on neurological communication systems. Because neuropeptides often serve as signaling messengers within the brain and nervous system, compounds like DSIP are commonly investigated to better understand how peptide signals interact with complex neurological regulatory mechanisms.
Laboratory investigations involving DSIP commonly focus on areas such as:
• Neuropeptide-mediated signaling pathways
• Circadian rhythm and biological timing mechanisms
• Peptide interactions within central nervous system signaling networks
• Cellular communication within neurological regulatory systems
• Stability and signaling behavior of small neuropeptides
Due to its classification as a neuropeptide, DSIP continues to be of interest to researchers studying how small peptide messengers participate in neurological communication and biological rhythm regulation within complex biological systems.
This material is supplied strictly for controlled laboratory research applications and must be handled by qualified professionals in appropriate research environments.
Research Highlights
DSIP has been examined in experimental models investigating neuropeptide signaling and biological rhythm regulation within neurological systems. Research interest in this compound often focuses on how small signaling peptides interact with regulatory pathways within the central nervous system.
Key areas of laboratory investigation have included:
• Neuropeptide signaling pathways – studies examining how small peptide messengers participate in neurological communication systems.
• Circadian rhythm regulation – research exploring how peptide signaling interacts with biological timing and regulatory processes.
• Central nervous system communication – investigations into peptide involvement in neural signaling networks.
• Peptide influence on neurological regulation – laboratory studies evaluating how neuropeptides participate in complex brain signaling mechanisms.
• Neuropeptide stability research – experimental work examining how short peptides maintain signaling activity within neurological research models.
Scientific Research Information
Peptides and research compounds supplied by Superior Chains Research Labs are intended strictly for laboratory and analytical research applications. Many compounds offered within this catalog are studied in experimental environments investigating molecular signaling pathways, receptor interactions, cellular communication mechanisms, and biochemical regulatory systems.
Researchers frequently utilize synthetic peptides and laboratory compounds when examining:
• peptide–receptor signaling pathways
• intracellular communication mechanisms
• metabolic and regulatory signaling networks
• enzyme activity and biochemical pathway interactions
• cellular stability and molecular signaling systems
Because peptide molecules function as biological messengers within complex cellular systems, they remain an important focus of modern biochemical and molecular research. Laboratory-grade peptides allow researchers to study how these signaling molecules interact with receptor systems and participate in regulatory communication pathways.
All products distributed by Superior Chains Research Labs are supplied exclusively for controlled laboratory research purposes and must be handled by qualified professionals within appropriate research environments.
DSIP is a synthetic research peptide supplied for laboratory use only.
This product is intended for qualified researchers and controlled laboratory settings.
It is not approved for human or veterinary use, medical applications, or diagnostic purposes.
Specifications
| Product Name | DSIP |
| Chemical Name / Sequence | WAGGDASGE |
| CAS Number | 62568-57-4 |
| Molecular Formula | C35H48N10O15 |
| Molecular Weight | 848.8 g/mol |
| Purity | ≥ 99% (HPLC) |
| Form | Lyophilized powder |
| Quantity | 10 mg |
Storage & Stability
- Recommended storage: -20°C / -4°F protected from light and moisture.
- Short-term storage after reconstitution: 2–8°C / 35-46°F for up to 8 weeks.
- Avoid repeated freeze–thaw cycles.
- Do not freeze after reconstitution.
Refer to the Certificate of Analysis (COA) for lot-specific stability and handling guidance.
Documentation
Handling & Safety
- Use appropriate personal protective equipment (PPE) when handling.
- Handle in a controlled laboratory environment.
- Dispose of unused material in accordance with local regulations and institutional protocols.









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