PRODUCTS SOLD ON PEPTIDESLABEU.COM ARE FOR RESEARCH PURPOSES ONLY AND ARE NOT FOR HUMAN OR VETERINARY USE.
€91.50 – €148.50Price range: €91.50 through €148.50
Adamax EU – Buy Online | In Stock & Ready to Ship
Buy Adamax in Europe with fast shipping and guaranteed ≥99% purity — verified with COA and HPLC documentation. A trusted choice for peptides EU research teams rely on, with no customs delays or lengthy international wait times. Whether you’re searching for Adamax Europe suppliers, looking to buy Adamax in the EU, or sourcing peptides Europe-wide, we have you covered. Research teams across the EU can count on consistent stock, rapid fulfilment and full batch documentation every time.
For research use only. Not intended for human or veterinary use.




Adamax is a synthetic vasopressin analogue peptide modified with an adamantane group, available to buy in Europe for laboratory research into vasopressin receptor pharmacology, HPA axis stress biology, memory consolidation, and renal water homeostasis.
Laboratories and research institutions across the EU can order verified, research-grade Adamax with fast international dispatch to Europe, full batch documentation, and ≥99% purity confirmed by HPLC and Mass Spectrometry.
✅ ≥99% Purity — HPLC & Mass Spectrometry Verified
✅ Batch-Specific Certificate of Analysis (CoA)
✅ Sterile Lyophilised Powder | GMP Manufactured
✅ Fast Dispatch to EU & Europe | Tracked Shipping
Adamax is a next-generation vasopressin analogue — a synthetic neuropeptide research compound built on the nine amino acid vasopressin scaffold, modified with an adamantane group to significantly improve metabolic stability and extend its practical utility in pre-clinical research settings.
Vasopressin (Arginine Vasopressin / AVP) is a naturally occurring neuropeptide produced in the hypothalamus. It acts through three receptor subtypes — V1a, V1b, and V2 — influencing stress response regulation, memory and cognition, cardiovascular function, and kidney water balance. While native AVP breaks down rapidly in biological systems (within minutes), the adamantane modification in Adamax provides meaningful resistance against enzymatic degradation — giving researchers a more practical tool for extended study protocols.
The result is a peptide research compound with improved pharmacokinetic characteristics and targeted receptor engagement, making it well-suited for investigating vasopressin receptor biology in intact biological systems.
In laboratory settings, Adamax is studied for its vasopressin receptor activity — particularly at V1b and V2 receptor subtypes — with the practical advantage of extended stability compared to native AVP. EU researchers working with Adamax typically focus on:
All research applications are for in vitro and pre-clinical use only.
Research into adamantane-modified vasopressin analogues sits within the broader, well-established field of vasopressin receptor pharmacology — a research area with extensive literature spanning stress neuroendocrinology, cognitive biology, and neuropeptide medicinal chemistry.
Metabolic stability: Studies characterising adamantane modifications in neuropeptide chemistry have consistently documented improved resistance to vasopressinase and peptidase-mediated degradation compared to native AVP. This translates directly to longer biological activity windows in research models — a practical advantage for multi-hour or multi-day experimental designs.
HPA axis research: The V1b receptor’s role in pituitary ACTH release has been extensively studied, with research establishing that vasopressin’s contribution to HPA axis activation becomes increasingly significant under chronic stress conditions. Stable vasopressin analogues have been important tools in this field for examining CRH-vasopressin synergy.
Memory and cognitive biology: Vasopressin receptor involvement in hippocampal memory consolidation is well-documented in pre-clinical literature, with vasopressin analogue studies examining effects on long-term potentiation, social recognition memory, and spatial learning paradigms.
Neuropeptide medicinal chemistry: Adamantane modification is an established research strategy across peptide classes, with a growing body of structure-activity relationship literature characterising how cage hydrocarbon additions influence receptor pharmacology and compound practicality.
| Compound | Primary Receptors | Key Research Use | Stability vs AVP |
|---|---|---|---|
| Adamax | V1b / V2 | Vasopressin pharmacology, HPA axis, stability research | Extended |
| Native AVP | V1a + V1b + V2 | Reference vasopressin biology | Minutes |
| Desmopressin (DDAVP) | V2 selective | Renal water homeostasis | ~1–2 hours |
| Terlipressin | V1a selective | Cardiovascular research | ~6 hours |
| SSR149415 | V1b antagonist | Stress / HPA axis antagonist studies | Variable |
Every order of Adamax peptide dispatched to EU and European research institutions includes:
Yes. We supply research-grade Adamax peptide with fast tracked international dispatch to all EU member states and wider European destinations. Packaging is designed to maintain peptide integrity throughout transit, and all orders include full batch documentation. Adamax is supplied strictly for laboratory research use only.
Adamantane is a cage-shaped polycyclic hydrocarbon widely used in medicinal chemistry to improve the stability and practicality of bioactive compounds. When added to a peptide structure like vasopressin, it creates steric hindrance around enzymatic cleavage sites and adds lipophilic bulk that can improve membrane permeability — making the resulting compound more useful for extended research protocols. In the case of Adamax, this modification addresses native AVP’s very short half-life without sacrificing receptor engagement specificity.
V1a receptors are found in vascular tissue and brain — relevant to cardiovascular function and social behaviour research. V1b receptors are found primarily in pituitary corticotroph cells and are central to HPA axis stress response research, mediating ACTH release alongside CRH. V2 receptors are found in the renal collecting duct and mediate water reabsorption through aquaporin regulation — the main target of Desmopressin.
The HPA axis is activated by two primary hypothalamic signals — CRH and vasopressin — which act together at pituitary V1b receptors to drive ACTH and downstream cortisol release. Research has shown that vasopressin’s contribution to this system increases under chronic stress conditions, with V1b receptor upregulation amplifying pituitary sensitivity. Adamax-type analogues with extended stability are useful for studying this in longer pre-clinical protocols.
Allow the vial to reach room temperature before opening. Add sterile water or an appropriate laboratory buffer slowly down the vial wall and swirl gently — do not shake. Prepare at your protocol’s required concentration, aliquot, and store at -80°C to minimise freeze-thaw degradation. Standard peptide handling protocols apply.
Orders are dispatched promptly via tracked international courier. Delivery to EU and European destinations typically takes 3–7 working days depending on location, with packaging designed to protect peptide stability throughout transit.
| Parameter | Detail |
|---|---|
| Type | Synthetic Adamantane-Modified Vasopressin Analogue |
| Receptor Targets | V1b / V2 vasopressin receptor subtypes |
| Purity | ≥99% |
| Verification | HPLC & Mass Spectrometry |
| Form | Sterile Lyophilised Powder |
| Solubility | Sterile water or laboratory buffer |
| Storage | -20°C, protected from light and moisture |
| Intended Use | Research use only |
Adamax is supplied exclusively for legitimate scientific research conducted within licensed laboratory environments. This product is not approved for human consumption, self-administration, or any therapeutic, clinical, or veterinary application. It must be handled solely by qualified researchers in compliance with applicable EU regulations, national legislation, and institutional ethics guidelines. By purchasing, you confirm this compound will be used exclusively for approved in vitro or pre-clinical research purposes.




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