Adamax (1 Vial)
$65.99
Adamax research peptide — 99%+ purity, third-party tested. For laboratory research use only.
size: 10MG
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Buy Adamax research-grade peptide from PSPeptides for laboratory studies investigating the MC4R/BDNF/TrkB signaling axis, cognitive research protocols, and modified peptide pharmacology. Adamax is a chemically modified Semax analog — specifically, N-Acetyl-Pro-Gly-Pro Semax with an adamantyl group appended — engineered to extend plasma half-life while preserving the parent compound’s receptor binding profile. Every vial is US-manufactured, third-party HPLC tested at 99%+ purity, and shipped with a batch-specific certificate of analysis.
A critical point of clarification for researchers evaluating this product: Adamax is a single peptide compound, not a blend. It is chemically distinct from the Selank+Semax Blend product, which is a two-peptide combination of Selank and Semax co-formulated in a single research vial. Adamax delivers a single modified molecule; the Blend delivers two separate peptides simultaneously. Both have their research applications, but the mechanistic and pharmacokinetic profiles differ substantially.
Buy Adamax: Detailed Mechanism of Action
Adamax binds and modulates the melanocortin-4 receptor (MC4R) — a G-protein-coupled receptor expressed throughout central nervous system tissues, particularly in hypothalamic and cortical regions. MC4R signaling is central to research investigating cognitive function, energy homeostasis, stress response, and neuroprotective mechanisms. The parent Semax molecule was originally derived from ACTH(4-10), the biologically active core sequence of adrenocorticotropic hormone, and this heritage explains its documented effects on the hypothalamic-pituitary axis in published research.
Beyond direct MC4R binding, Adamax exerts significant effects through BDNF (brain-derived neurotrophic factor) upregulation and downstream TrkB receptor signaling. Published research has documented that Semax and its analogs increase BDNF expression in hippocampal and cortical regions within hours of administration, with downstream effects on synaptic plasticity, dendritic spine formation, and long-term potentiation markers. The BDNF/TrkB pathway is central to research investigating cognitive enhancement, neuroplasticity, and neuroprotection.
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