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🔬 Research Use Only

DSIP Research Peptide

Recovery Research · Skin & Anti-Aging Research

DSIP Research Peptide is a 9-amino acid peptide that helps modulate delta wave sleep. It is studied for its potential to promote deep sleep, regulate circadian rhythms, and enhance restorative sleep cycles. Ideal for research on sleep regulation and circadian rhythm modulation.

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🔬 Research Use Only

DSIP Research Peptide

Recovery Research · Skin & Anti-Aging Research

DSIP Research Peptide is a 9-amino acid peptide that helps modulate delta wave sleep. It is studied for its potential to promote deep sleep, regulate circadian rhythms, and enhance restorative sleep cycles. Ideal for research on sleep regulation and circadian rhythm modulation.

Select Dosage

Bundle & Save

1 bottle

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$29.99
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Bacteriostatic water Research Peptide

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Every batch verified by accredited US labs

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Certificate of Analysis and Batch Verification

🧪 Lab Verified

Each production lot is independently verified using HPLC and mass spectrometry to confirm
identity, purity, and structural consistency

DSIP - 10mg Vial

Lot #2026-03-001-R

PASS
0%

Verified Purity

Labeled 10mg
Actual 8.09 mg
Tested 05/14/2026
Method HPLC with UV Detection coupled with Mass Spectrometry (LC-MS)
Lab Freedom Diagnostics
Status In Stock
Download Certificate

Third-Party Independent Verification — All GMR Peptides products are tested by accredited external laboratories using HPLC and Mass Spectrometry. We never self-certify. Results are published on every product page with no exceptions.

99%+ Purity

Batch Verified Purity Standards

Each DSIP batch is independently tested to confirm identity and purity, ensuring the highest quality for reliable research results.
HPLC/MS

Independent Analytical Confirmation

Every production lot of DSIP is verified using HPLC and mass spectrometry to guarantee consistent structure and purity.
Lyophilized

Controlled lyophilized stability

DSIP undergoes advanced lyophilization to maintain its structural integrity and stability, ideal for long-term storage and accurate research.
Lab Use

Research grade handling conditions

DSIP is for laboratory research use only and must be handled by qualified professionals under strict protocols.

🧬 Mechanism of Action

Molecular Profile of GHK-Cu

GHK-Cu is a naturally occurring copper-binding tripeptide studied in laboratory environments for its interaction with extracellular matrix signaling pathways, copper transport activity, and peptide-mediated gene expression models.

GE
Primary Pathway

Molecular Profile

Extracellular Matrix Signaling

Evaluated in laboratory environments for interactions with signaling pathways and peptide-mediated gene expression models.

  • Analyzes extracellular matrix signaling pathways
  • Evaluates copper transport activity models
  • Investigates gene expression regulation frameworks
COL
Strongest Output

Structural Profile

Peptide Signaling Context

Frequently evaluated in experimental models designed to examine cellular communication and structural protein regulation mechanisms.

  • Examines cellular communication pathways
  • Analyzes structural protein regulation mechanisms
  • Evaluates trace-element peptide interactions
Cu2+
Supportive Pathway

Ion Binding Dynamics

Cellular Mineral Transport

The copper-binding component delivers bioavailable copper to research systems, activating internal enzymatic antioxidant models.

  • Delivers bioavailable copper to research systems
  • Activates enzymatic antioxidant model systems
  • Evaluates copper ion transport behavior

🔬 Key Research Finding

Unprecedented Genomic Influence

No other studied peptide approaches GHK-Cu’s ability to modulate the human genome. Research demonstrates influence over 31.2% of all human genes — affecting pathways from DNA repair and antioxidant defense to stem cell activation and anti-inflammatory response.

1,942

Genes Upregulated

762

Genes Downregulated

🧬 Mechanism of Action

Analytical Comparison With Peptides Related Copper

Within copper-binding peptide research, GHK-Cu is frequently evaluated alongside related
signaling peptides to investigate structural stability, copper coordination behavior, and extracellular
matrix interaction patterns under controlled experimental conditions

Hair Research

Follicle Restoration

Controlled studies report measurable improvements in hair follicle size, growth rate, and active growth phase duration.

Follicle size increase
Growth rate improvement
Anagen phase extension
Wound Healing

Accelerated Tissue Repair

Multiple repair mechanisms activate simultaneously — making GHK-Cu one of the more comprehensively studied wound-healing compounds.

Fibroblast migration ↑ 70% faster
Blood vessel formation ↑ Enhanced
Collage deposition ↑ Increased
Inflammatory response ↓ Reduced
Gene Modulation

Epigenetic Reprogramming

GHK-Cu functions as a cellular reprogrammer — shifting gene expression away from destructive aging patterns toward regenerative activity.

4,000+
Antioxidant Defense

Cellular Protection System

Activates the body's internal antioxidant machinery — particularly the SOD enzyme system responsible for neutralizing free radicals.

SOD enzyme activity
Lipid peroxidation reduction
Catalase expression

✨ Extended Research

Areas of Laboratory Investigation

Researchers commonly examine GHK-Cu in controlled experimental systems involving peptide
signaling pathways, copper ion transport behavior, extracellular matrix organization models, and
gene expression regulation frameworks.

Research Context

Peptide Signaling Pathways

Laboratory models evaluate GHK-Cu in experimental systems involving cellular communication mechanisms.

Signal Transduction Affinity
Coordination Stability
Structural Research

Matrix Organization Models

Cellular Communication Verified Pathway
Structural Coordination High Stability
Experimental Consistency Lot-Verified
Genomic Investigation

Gene Expression Regulation

Analysis of peptide-mediated gene expression regulation frameworks[cite: 22, 27].

1,942+
Upregulated Genes Observed
Element Transport

Copper Ion Behavior

Bioavailability Index
Enzymatic Interaction Model

⚠️ Safety Data

Research Handling Guidelines

This material is supplied exclusively for laboratory research use. Handling should be performed by
qualified professionals using appropriate experimental procedures and analytical documentation
review prior to use.

Research Handling Guidelines

  • 🔒 For laboratory research use only.
  • 🔒 Handling by qualified professionals only.
  • 🔒 Not for human or veterinary applications.
  • 🔒 Strictly for in-vitro and experimental models.
Material must be handled according to established laboratory safety protocols and analytical documentation review prior to use.

Material Stability Data

  • Lyophilized for long-term structural integrity.
  • HPLC verified batch purity standards.
  • Controlled environment storage recommended.
  • Independent analytical lot verification.
Batch verification confirms identity and structural consistency across all supplied research compounds.

🧪 Technical Specifications

Compound Information

Full molecular and technical reference data for GHK-Cu.

🔬 Molecular Profile
Compound Identification Copper-binding Tripeptide
CAS Number 89030-95-5
Molecular Weight 340.38 g/mol (free)
Sequence Architecture Gly-His-Lys (Cu2+)
Molecular Formula C14H24N6O4Cu
Verification Method HPLC / Mass Spectrometry
Verified research compound interaction with extracellular matrix signaling pathways and copper transport activity.
🧊 Research Handling Guidelines

This material is supplied exclusively for laboratory research use by qualified professionals.

❄️

Lyophilized Stability (-20°C)

Analytical consistency for 24 months

🧪

Reconstituted State (2-8°C)

Maintain structural integrity for 30 days

⏱️

Ambient Experimental Use

Complete observation within 24 hours

🔵 Observation Note: Reconstituted blue coloration signifies active coordination behavior. Colorless samples suggest loss of coordination integrity.
📋 Investigation Timeline
1973 Initial isolation of copper-binding tripeptide from laboratory plasma models.
1980s Established baseline safety profile and molecular coordination analysis.
2000s Expansion of research models into cellular communication and signaling.
2018+ Landmark research observing 4,000+ peptide-mediated gene expression modulations.
Lot-ID Verified Batch
HPLC Verified Purity

❓ Common Questions

Frequently Asked
Questions

DSIP (Delta Sleep Inducing Peptide) is a naturally occurring peptide that plays a role in regulating deep sleep. It modulates delta waves and is extensively studied for its effects on sleep regulation and circadian rhythms.

Verified Reviews

What Researchers Say

4.8
Sample rating
M
Marcus T.
Verified Buyer

Outstanding quality and fast, discreet shipping. Everything arrived exactly as described and the results in my research have been consistent. Will be ordering again.

E
Elena R.
Verified Buyer

Third-party testing gives me real peace of mind. Packaging was professional and the product purity is excellent. GMR has become my go-to supplier.

D
David K.
Verified Buyer

Great product and great value with the bundle offer. Delivery took a couple of days longer than expected, but the quality more than made up for it.

S
Sophia L.
Verified Buyer

Customer support was responsive and helpful when I had a question about my order. The product itself is top tier. Highly recommended for serious research.

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Share your experience to help other researchers.

📚 Research Bibliography

Sources & References

All clinical data and research findings cited on this page are sourced from peer-
reviewed journals and official publications.

European Journal of Neuropsychopharmacology

PepT1-Mediated Tripeptide KPV Uptake Reduces Intestinal Inflammation

Dalmasso G, Charrier-Hisamuddin L, Nguyen HT, et al.
2008 PMID: 18061177
British Journal of Pharmacology

α-MSH Related Peptides: A New Class of Anti-Inflammatory and Immunomodulating Drugs

Luger TA, Brzoska T, Scholzen TE, et al.
2007 DOI: 10.1111/j.1476-5381.2000.00178.x
Molecular Pharmaceutics

Orally Targeted Delivery of Tripeptide KPV Alleviates Ulcerative Colitis

Xiao B, Xu Z, Viennois E, et al.
2017 PMID: 28548842
International Journal of Molecular Sciences

Regenerative and Protective Actions of the GHK-Cu Peptide in the Light of the New Gene Data

Pickart L, Margolina A
2018 PMID: 29986520
Current Pharmaceutical Design

BPC 157 and Standard Angiogenic Growth Factors. Gastrointestinal Tract, Tendon, and Bone Healing

Seiwerth S et al.
2018 PMID: 30101703

⚠️ Important Research Notice

This product is sold exclusively for in vitro research and educational purposes. It is not intended for human or veterinary use, and is not intended to diagnose, treat, cure, or prevent any medical condition or disease. All clinical trial data, research findings, and scientific information presented on this page are sourced from peer-reviewed academic publications. This content is provided for educational reference only and does not constitute medical advice, product claims, or treatment recommendations. By purchasing this product, the buyer confirms they are a qualified researcher and will use it strictly in accordance with all applicable federal, state, and local laws and regulations. GMR Peptides assumes no liability for any misuse of this product outside of a research context.

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