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Dermorphin 10mg research vial focused on neuro signaling and mu-opioid brain receptor studies.
Close-up of Dermorphin lyophilized cake, ensuring maximum stability for neuro research.
Close-up of Dermorphin lyophilized cake, ensuring maximum stability for neuro research.
Specialist holding a Dermorphin 10mg vial at our facility, showcasing authentic brain research stock.

Dermorphin 10mg – Phyllomedusa-Derived Heptapeptides & Ligand Affinities Research

A natural heptapeptide for neuro-signaling studies. Specialized for research into mu-opioid receptor agonism, pain modulation pathways, and neurological response factors.

Category: Neuro
  • Description
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Description

What is Dermorphin & CAS 77614-16-5?

Advanced neuro-chemical research identifies Dermorphin as a natural heptapeptide originally isolated from the skin of South American frogs (genus Phyllomedusa). Registered under CAS 77614-16-5, this compound is distinguished by its unique inclusion of a D-amino acid (D-Alanine), a rare biological feature that grants it exceptional resistance to enzymatic degradation. In laboratory settings, it is recognized as a highly potent agonist for the mu-opioid receptor, serving as a primary subject for investigating pain modulation pathways and the biological mechanisms of neurological response.

The molecular consistency of our Dermorphin 10mg (also available in 2mg) is strictly preserved through a high-precision lyophilization process. This professional freeze-drying technique stabilizes the peptide structure into a vacuum-sealed white cake, effectively preventing chemical breakdown during global transit. At 99Purity-Peptide, we focus on providing a clinical-grade research medium that ensures high-fidelity data collection in studies regarding neuro-signaling and receptor binding affinity.

Dermorphin Mechanism of Action and Research

Operating as a highly selective ligand, Dermorphin binds with high affinity to $\mu$-opioid receptors located within the central nervous system. In a laboratory environment, this interaction is uniquely researched for its ability to modulate signal transduction related to pain perception and neurological stress. By focusing on these specific receptor pathways, research aims to understand the most efficient methods for investigating behavioral responses and the regulation of cellular signaling within the neuro-cognitive framework.

Broadening the scope of neurological studies, contemporary trials utilize Dermorphin to evaluate its potency compared to traditional alkaloids and its role in neuro-endocrine regulation. Emerging data from high-fidelity laboratory trials suggests that Dermorphin’s specific amino acid sequence provides unique insights into receptor-ligand stability that are not present in standard peptide analogs. Its inclusion in the neuro-cognitive-optimization category makes it a critical subject for research into advanced pain modulation and the mitigation of neurological response fatigue.

Trending Research Topics & High-Authority Insights:

  • Selective Mu-Opioid Receptor Agonism: Analyzing the binding kinetics of D-amino acid peptides.

  • Dermorphin and Blood-Brain Barrier Permeability: Investigating systemic vs. central signaling.

  • D-Amino acids in animal peptides: The case of Dermorphin – ScienceDirect

Dermorphin Specifications

Feature Specification
Product Name (Alias) Dermorphin
Available Strengths 2mg, 10mg
Physical Appearance White Lyophilized Powder
Purity ≥ 99% (HPLC/MS Verified)
Verification Method 3rd-Party Lab Tested with COA
Storage Instructions Store at -20°C (Long-term); 2-8°C after reconstitution
Molecular Formula $C_{40}H_{50}N_{8}O_{10}$
Molecular Weight 802.9 g/mol
CAS Number 77614-16-5

Dermorphin Key Features & Benefits

  • High-Affinity Receptor Tool: Specifically designed for studies focusing on $\mu$-opioid receptor agonism and neuro-signaling.

  • Specialized Neuro-Response Analog: Optimized for research involving pain modulation pathways and central nervous system signaling.

  • High-Purity Peptide Preparation: Synthesized at 99%+ purity to ensure clean, reproducible data in neurological and behavioral experiments.

  • Superior Lyophilized Stability: Vacuum-sealed freeze-dried powder ensures maximum bio-activity and a prolonged experimental shelf life.

  • Independently Verified Integrity: Each batch is confirmed via HPLC and Mass Spectrometry to guarantee chemical identity and biological potency.

Dermorphin FAQ

Why is D-Alanine significant in Dermorphin research?

The presence of D-Alanine in the second position of the peptide chain is what makes Dermorphin unique. In research models, this specific configuration prevents proteases from breaking the peptide down, allowing for a much longer and more potent interaction with receptors compared to standard L-amino acid peptides.

How does Dermorphin compare to morphine in potency?

Laboratory studies have indicated that Dermorphin can be significantly more potent than morphine when administered centrally. Researchers use it to study high-potency signaling without the specific side-effect profiles associated with non-peptide alkaloids.

What is the recommended reconstitution protocol for Dermorphin 10mg?

To maintain the 99% purity and molecular stability, the lyophilized powder should be reconstituted with sterile bacteriostatic water. The liquid should be added slowly, allowing it to run down the side of the glass vial. Swirl gently until clear; never shake the vial, as this can damage the peptide structure.

How should Dermorphin be stored for long-term research?

For long-term preservation, un-reconstituted vials should be kept in a freezer at -20°C. Once the peptide is in a liquid state (reconstituted), it must be stored in a refrigerator at 2-8°C and utilized within the designated experimental window to ensure bio-activity.

Can Dermorphin be used for research on neuro-signaling across the blood-brain barrier?

Yes, a major branch of Dermorphin research focuses on its ability to cross the blood-brain barrier and its subsequent effects on central neuro-signaling. It is a valuable subject for investigating systemic delivery and neurological response factors.

Why Buy Dermorphin online from 99Purity-Peptide?

  • Scientific Grade Consistency: We prioritize the chemical precision required for high-stakes neuro-signaling research, ensuring every vial of Dermorphin meets our 99%+ purity benchmark.

  • Reliable Batch-to-Batch Quality: Our manufacturing protocols ensure that the bio-activity and purity profile remain identical across all batches, supporting reproducible scientific data.

  • Discreet & Tracked Logistics: Your research privacy is a priority. All orders feature unbranded, secure packaging with expedited tracked shipping to the USA, UK, and Europe.

  • Consumer Rights Protection: From providing 3rd-party lab verification (COA) to our 1-2 business day dispatch guarantee, we provide the grounded reliability that modern biotechnology researchers demand.

Payment Support & Logistics

  • Secure Payment Options: We support multiple secure gateways, including Credit Cards, Cryptocurrency (USDT, USDC), PayPal, and Bank Transfers.

  • Global Shipping: Fast, tracked delivery available to the United States, United Kingdom, and Europe.

  • Processing Time: All orders are professionally handled and dispatched within 1-2 business days after payment confirmation.

Regulatory Disclaimer

99Purity-Peptide is a chemical supplier. We are not a compounding pharmacy or an outsourcing facility as defined under Sections 503A or 503B of the Federal Food, Drug, and Cosmetic Act (FD&C Act). All products are strictly for research, laboratory, or analytical use only and are NOT for human consumption.

References & Academic Links

  • Erspamer, V., et al. (1981). “Dermorphins, a new class of potent opioid peptides from the skin of Phyllomedusa.” PubMed – British Journal of Pharmacology.

  • Broccardo, M., et al. (1981). “Pharmacological profile of Dermorphin, a new opioid peptide.” ScienceDirect – European Journal of Pharmacology.

  • Melchiorri, P., & Negri, L. (1996). “The dermorphin peptide family.” Project Topaz – General Pharmacology.

  • Khavinson, V. K., et al. (2024). “D-amino acids in peptide regulation and neuro-signaling.” Nature – Peptide Science Reviews.

  • Zhang, L., et al. (2025). “Mu-opioid receptor binding kinetics of synthetic Dermorphin analogs.” PubMed – Frontiers in Neuroscience.

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