Tableaux de Dose  ›  DSIP  ›  5mg
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DSIP 5mg Protocole du Flacon

Reconstitution et dosage d'un flacon de 5mg de DSIP — concentration par volume d'eau BAC, les unités à prélever sur une seringue U-100 et le tableau de dose sourcé.

Également appeléDelta Sleep-Inducing Peptide
Demi-vieshort
Voiesubcutaneous
DSIP — Tableau de dose
Chaque ligne citée
ObjectifDoseFréquenceDuréePreuveSource
Induction du sommeil / facilitation du sommeil delta (animal, intracérébroventriculaire) 7 mcg single injection per trial Preclinical PMID 3620931
Augmentation des ondes delta/sigma à l'EEG (lapin, intraveineux) 50 mcg 1x/day 6 days Preclinical PMID 6857232
Augmentation des ondes delta/sigma à l'EEG (lapin, perfusion ventriculaire mésiodiencéphalique) 5 mcg single infusion per trial Preclinical PMID 6857232
Protection contre le stress / neuroprotection contre l'hypoxie (rat, intrapéritonéal) 120 mcg single injection per trial Preclinical PMID 12668217
Stimulation de la libération de LH chez des rates ovariectomisées prétraitées aux stéroïdes (intraventriculaire) 2–30 mcg single injection per trial Preclinical PMID 3550343
À des fins de recherche et d'éducation uniquement. Pas un avis médical.
Comment Reconstituer DSIP
U-100

Approche courante : reconstituer un flacon d'exemple de 5 mg de DSIP avec de l'eau bactériostatique. Le tableau indique la concentration obtenue et le volume à prélever pour une dose de 7 mcg à trois volumes d'eau courants.

Eau BACConcentrationVolume / doseUnités (U-100)
1 mL5 mg/mL0 mL0.1
2 mL2.5 mg/mL0 mL0.3
3 mL1.67 mg/mL0 mL0.4

Les unités indiquées correspondent à une seringue à insuline U-100 (1 mL = 100 unités). Vérifiez toujours vos propres calculs avant de prélever.

What is DSIP?

DSIP stands for Delta Sleep-Inducing Peptide. It is a tiny chain of just nine amino acids — scientists call that a nonapeptide — with a molecular weight of 849 daltons.[4] It was first isolated in 1977 from the cerebral venous blood of rabbits by a Swiss research group, and it quickly attracted attention as a potential natural sleep-promoting substance.[2] Since then, researchers have discovered that DSIP may do a lot more than just nudge an animal toward sleep — it has been studied for roles in stress protection, hormone release, pain, and even withdrawal from certain substances.[3]

Important note: DSIP is a research compound. Everything on this page describes animal and laboratory studies. It is not approved for human use, and nothing here is medical advice.

How DSIP Works

Think of the brain's sleep system like a dimmer switch. Researchers believe DSIP may help turn that switch toward the "deeper sleep" setting rather than simply flipping it on or off. In studies, DSIP has been linked to increases in delta waves — the slow, rolling brainwaves that define deep, restorative sleep — as measured on an EEG (electroencephalogram, the machine that reads electrical activity in the brain).[4]

The exact receptor or gene that DSIP acts on has not been identified, which is one reason scientists still call it an "unresolved riddle."[2] What is clear is that DSIP-like material shows up in the hypothalamus and other brain regions, as well as in peripheral organs and blood plasma of several mammals.[4] Some researchers now think the biological activity attributed to DSIP might actually come from a closely related, not-yet-fully-characterized peptide family.[2]

What the Research Shows

Sleep and brainwave effects

The original research showed DSIP could increase delta sleep in rabbits, rats, mice, and humans, while in cats the effect leaned more toward REM (rapid eye movement) sleep.[4] A 1987 cat study found that a single injection into the brain's lateral ventricle significantly cut the time it took for the animals to fall asleep and boosted total slow-wave sleep — especially the deepest stage (called S2). The increase appeared within the very first hour after injection and lasted up to seven hours.[5] Notably, REM sleep was not changed, suggesting DSIP's action in that study was specific to deep, non-dreaming sleep.[5]

Researchers have also described a curious U-shaped dose-response curve — meaning both the amount of DSIP given and the timing of the infusion mattered enormously. Too little, the right amount, or too much could produce very different results.[4]

Stress and neuroprotection

Beyond sleep, DSIP has been studied for its ability to protect the nervous system under stressful conditions. Animal research noted effects on circadian rhythms, locomotor patterns, neurotransmitter levels, and responses to low-oxygen (hypoxia) conditions.[3] See the dosage chart on this page for the specific doses used in stress and hypoxia protection experiments in rats.

Hormonal effects

A 1987 rat study found that injecting DSIP directly into the brain ventricles stimulated the release of LH (luteinizing hormone) — but only in rats that had been primed with ovarian steroids first. When researchers tested DSIP directly on pituitary tissue in a dish, nothing happened, suggesting the peptide works upstream in the brain's hypothalamic circuitry rather than directly at the pituitary gland.[6] This hints at a possible link between sleep-related signaling and reproductive hormone cycles.

Ongoing uncertainties

Despite decades of research, key questions remain open. No DSIP gene or dedicated receptor has been confirmed.[2] Some structural analogues of DSIP promoted slow-wave sleep in animal studies even when DSIP itself did not, leading researchers to hypothesize that a related, naturally occurring peptide may carry much of the biological activity.[2] A 2001 review noted DSIP's wide range of reported effects while acknowledging that the underlying mechanisms are still not fully understood.[1]

What DSIP Is Being Studied For

  • Delta (deep) sleep facilitation and sleep latency reduction[4][5]
  • EEG brainwave modulation (delta and sigma wave enhancement)[4]
  • Stress response and neuroprotection under hypoxic conditions[3]
  • Neuroendocrine signaling, particularly LH release[6]
  • Potential roles in pain management and substance withdrawal (early-stage research)[3]

How DSIP Is Dosed in Research

Doses used in published animal studies vary widely depending on the route of administration and the outcome being measured — intracerebroventricular (directly into brain ventricles), intravenous, and intraperitoneal (into the abdominal cavity) routes have all been used, and the numbers look very different across these methods. Rather than restate every figure here, refer to the dosage chart on this page, which lays out each study's route, species, and dose side by side. If you need to convert or scale those figures, the calculator on this page can help. These are strictly research reference points — no human dosing guidance exists or is implied.

Mixing and Storing DSIP

DSIP is typically supplied as a lyophilized powder — that just means it has been freeze-dried for stability. To prepare it for use in research, the powder is reconstituted (dissolved) by adding a small, measured volume of sterile bacteriostatic water or another suitable sterile solvent, then gently swirling (never shaking vigorously) until fully dissolved. Once mixed, the solution should be stored in a refrigerator at 2–8 °C and protected from light. Repeated freeze-thaw cycles degrade peptides, so researchers typically divide reconstituted stock into single-use aliquots (small portions) and freeze what will not be used immediately. Always check the supplier's certificate of analysis and follow standard laboratory sterile technique when handling research peptides.

Sources

  1. Delta sleep-inducing peptide. — European journal of anaesthesiology, 2001. PMID 11437870.
  2. Delta sleep-inducing peptide (DSIP): a still unresolved riddle. — Journal of neurochemistry, 2006. PMID 16539679.
  3. Delta-sleep-inducing peptide (DSIP): an update. — Peptides, 1986. PMID 3550726.
  4. Delta-sleep-inducing peptide (DSIP): a review. — Neuroscience and biobehavioral reviews, 1984. PMID 6145137.
  5. The effects of delta-sleep-inducing peptide (DSIP) on wakefulness and sleep patterns in the cat. — Brain research, 1987. PMID 3620931.
  6. Delta sleep-inducing peptide (DSIP) stimulates LH release in steroid-primed ovariectomized rats. — Life sciences, 1987. PMID 3550343.
Matériel Nécessaire

Un kit type de reconstitution et d'injection comprend :

  • Flacon(s) de peptide lyophilisé — assez pour tout le protocole
  • Eau bactériostatique pour la reconstitution
  • Seringues à insuline U-100 (une par injection)
  • Tampons d'alcool
  • Un conteneur pour objets tranchants pour une élimination sûre
Conservation, Manipulation et Injection

Conservation et manipulation

Le peptide lyophilisé est généralement conservé au réfrigérateur et à l'abri de la lumière ; une fois reconstitué avec de l'eau bactériostatique, il est habituellement réfrigéré à 2–8 °C et utilisé en quelques semaines. Suivez une technique aseptique pour éviter toute contamination, conformément aux recommandations de sécurité des injections du CDC.

Technique d'injection

Les injections sous-cutanées se font généralement dans la graisse de l'abdomen ou de la cuisse : nettoyez le site avec un tampon d'alcool, pincez la peau, insérez à l'angle recommandé et alternez les sites pour protéger les tissus. Consultez MedlinePlus pour un guide pas à pas de l'injection sous-cutanée.

Références générales de technique aseptique et d'injection à usage éducatif — elles ne sont spécifiques à aucun composé de recherche.

DSIP FAQ

What is DSIP?
DSIP (Delta Sleep-Inducing Peptide) is a nine-amino-acid peptide first isolated from rabbit cerebral venous blood in 1977.[2] It was originally studied as a natural sleep-promoting substance and has since been investigated for effects on brainwaves, stress responses, and hormone release.[4] It remains a research compound with no approved human use.
How does DSIP work?
The exact mechanism is still unknown — no dedicated receptor or gene has been confirmed.[2] Research suggests DSIP may influence deep (delta) sleep brainwave activity and interact with hypothalamic neural circuits involved in sleep and hormone regulation.[4][6] Some scientists believe a closely related peptide may be responsible for much of the observed biological activity.[2]
What is DSIP used for in research?
Animal studies have explored DSIP for sleep facilitation, EEG delta-wave enhancement, stress and hypoxia neuroprotection, and stimulation of LH (luteinizing hormone) release.[3][5][6] Early research also noted possible relevance to pain and withdrawal from certain substances.[3] All findings are preclinical; no human therapeutic use is established.
How is DSIP dosed in research studies?
Doses vary significantly by route and study goal. Intracerebroventricular injections in cats used roughly 7 mcg equivalents per trial,[5] while intraperitoneal doses for stress/hypoxia studies in rats reached 120 mcg per injection.[3] See the dosage chart on this page for a full breakdown by route, species, and endpoint. No human dosing guidance exists.
How do you reconstitute DSIP?
DSIP powder is typically dissolved in sterile bacteriostatic water by gently swirling — never shaking — until fully clear. Reconstituted peptide should be stored at 2–8 °C, protected from light, and divided into single-use aliquots to avoid repeated freeze-thaw cycles that can degrade the peptide. Always follow standard sterile laboratory technique.
Is DSIP safe?
DSIP is a research compound, and its safety profile in humans has not been established through clinical trials. Decades of animal research have not resolved its basic mechanism of action, and key questions about its natural occurrence and receptor remain open.[2] This page is for educational and research reference purposes only — consult a qualified researcher or physician before any use.