Properties
| Molecular Formula | C35H48N10O15 |
|---|---|
| Molecular Weight | 848.8 g/mol |
| Monoisotopic Mass | 848.33006086 Da |
| Polar Area | |
| Complexity | 1610 |
| XLogP | -7.1 |
| Heavy Atom Count | 60 |
| Hydrogen Bond Donor Count | 14 |
| Hydrogen Bond Acceptor Count | 16 |
| Rotatable Bond Count | 25 |
| Physical Appearance | Fine White Lyophilized Powder |
| Stability | |
| PubChem LCSS |
Identifiers
| CID | 68816 |
|---|---|
| CAS | 62568-57-4 |
| InChI | InChI=1S/C35H48N10O15/c1-16(41-32(56)20(36)9-18-11-37-21-6-4-3-5-19(18)21)30(54)39-12-25(47)38-13-26(48)44-23(10-29(52)53)34(58)42-17(2)31(55)45-24(15-46)33(57)40-14-27(49)43-22(35(59)60)7-8-28(50)51/h3-6,11,16-17,20,22-24,37,46H,7-10,12-15,36H2,1-2H3,(H,38,47)(H,39,54)(H,40,57)(H,41,56)(H,42,58)(H,43,49)(H,44,48)(H,45,55)(H,50,51)(H,52,53)(H,59,60) |
| InChIKey | ZRZROXNBKJAOKB-UHFFFAOYSA-N |
| Isomeric SMILES | CC(C(=O)NCC(=O)NCC(=O)NC(CC(=O)O)C(=O)NC(C)C(=O)NC(CO)C(=O)NCC(=O)NC(CCC(=O)O)C(=O)O)NC(=O)C(CC1=CNC2=CC=CC=C21)N |
| Canonical SMILES | |
| IUPAC Name | 2-[[2-[[2-[2-[[2-[[2-[[2-[2-[[2-amino-3-(1H-indol-3-yl)propanoyl]amino]propanoylamino]acetyl]amino]acetyl]amino]-3-carboxypropanoyl]amino]propanoylamino]-3-hydroxypropanoyl]amino]acetyl]amino]pentanedioic acid |
Description
DSIP (Delta sleep-inducing peptide)
This product is not intended for weight loss, human consumption, or veterinary use. It is sold for research purposes only. Please handle with care and follow all safety guidelines for the specific chemicals involved.
Delta sleep-inducing peptide (DSIP) is a nonapeptide originally isolated from rabbit cerebral venous blood, renowned for its multifaceted physiological effects. In rat models, DSIP has been extensively studied for its roles in sleep modulation, neuroprotection, mitochondrial function, and endocrine regulation. These studies also provide foundational insights for researchers evaluating dsip peptide dosing or exploring formulations such as dsip 5 mg peptide in controlled environments. (PubMed)
Beyond sleep, DSIP exhibits significant neuroprotective properties. In conditions of hypoxia-induced stress, DSIP has been shown to improve mitochondrial oxidative phosphorylation efficiency in rat brain mitochondria, thereby enhancing ATP production and potentially mitigating neuronal damage. This makes the peptide a point of interest for researchers who buy dsip peptide online for experimental neuroprotection studies. (PubMed)
DSIP also modulates neurotransmitter systems. It has been observed to influence the activity of monoamine oxidase A (MAO-A) and alter serotonin levels in the rat brain, indicating its potential in regulating mood and stress responses—areas where precise dsip peptide dosing is critical for reproducible data. (PubMed)
Furthermore, DSIP’s role in endocrine regulation is evident through its modulation of pineal gland activity. Research indicates that DSIP can affect the activity of N-acetyltransferase (NAT) in the rat pineal gland, an enzyme crucial for melatonin synthesis, thereby implicating DSIP in circadian rhythm regulation. This relevance has contributed to increased interest in standardized formats like dsip 5 mg peptide used in laboratory studies. (PubMed)
In developmental studies, DSIP-like immunoreactivity has been detected in various regions of the rat brain, with concentrations varying during different developmental stages. This suggests a role for DSIP in brain maturation and function and highlights why many researchers choose to buy dsip peptide online for developmental neurobiology investigations. (PubMed)
In conclusion, DSIP’s diverse physiological effects in rat models underscore its potential as a therapeutic agent. Its involvement in sleep regulation, neuroprotection, neurotransmitter modulation, and endocrine function presents numerous avenues for future research, particularly in understanding its mechanisms and potential clinical applications, where consistent dsip peptide dosing remains essential for experimental rigor. (PubMed)
References:
- Graf, M. V., & Schoenenberger, G. A. (1986). DSIP affects adrenergic stimulation of rat pineal N-acetyltransferase in vivo and in vitro. Peptides, 7(6), 1001–1006. https://pubmed.ncbi.nlm.nih.gov/3562314/
- Graf, M. V., & Schoenenberger, G. A. (1988). Evidence for a role of delta sleep-inducing peptide in slow wave sleep and growth hormone release in rats. Peptides, 9(2), 273–279. https://pubmed.ncbi.nlm.nih.gov/3368469/
- Umriukhin, P. E., Koplik, E. V., & Sudakov, K. V. (2003). Effects of delta-sleep-inducing peptide in cerebral ischemia in rats. Ross Fiziol Zh Im I M Sechenova, 89(1), 3–7. https://pubmed.ncbi.nlm.nih.gov/12669586/
- Umriukhin, P. E., Anokhin, K. V., & Raevskiĭ, K. S. (2003). Effects of delta-sleep-inducing peptide during ischemic injury of the rat brain. Neuroscience and Behavioral Physiology, 33(7), 697–701. https://pubmed.ncbi.nlm.nih.gov/12436688/
- Kastin, A. J., Nissen, C., & Coy, D. H. (1981). DSIP-like immunoreactivity in the developing rat brain. Brain Research Bulletin, 7(6), 687–690. https://pubmed.ncbi.nlm.nih.gov/6895711/
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Frequently Asked Questions
Everything you need to know about DSIP research peptide
