(10)

NA Semax 50mg

$75.00

NA Selank (N-Acetyl Selank) is a synthetic analog of the endogenous peptide tuftsin, developed to enhance stability and bioavailability. It has been studied primarily for its potential effects on anxiety modulation, stress response, cognitive function, and immune signaling. Unlike stimulant-based compounds, NA Selank is not associated with sedative or excitatory effects and is researched for its ability to support neurotransmitter balance at the molecular level.
Research suggests NA Selank may influence GABAergic and serotonergic systems, contributing to improved emotional regulation and reduced stress-related responses. It has also been explored for potential nootropic effects, including attention support and mental clarity under stress. Some studies have evaluated its role in modulating inflammatory markers and immune response pathways.
NA Selank is typically studied in research contexts involving intranasal or subcutaneous administration, with dosing protocols varying based on study design. It is not classified as a hormone or stimulant and is researched for its regulatory rather than suppressive or activating mechanisms.

1 in stock (can be backordered)

SKU Sem50 Category

Description

NA Semax (N-Acetyl Semax) is a modified analog of the ACTH (4–10) peptide fragment, developed to enhance stability and biological activity. Unlike full-length ACTH, NA Semax does not stimulate adrenal hormone production but is studied for its effects within the central nervous system. It is primarily researched for its nootropic, neuroprotective, and neuroregulatory properties.

Research suggests NA Semax may influence the expression of brain-derived neurotrophic factor (BDNF), a key protein involved in synaptic plasticity, learning, memory formation, and neuronal survival. It has also been studied for its potential to modulate dopaminergic and serotonergic pathways, contributing to improved mental clarity, cognitive performance, and stress adaptation.

In research models, NA Semax has shown promise in supporting recovery following neurological stress, ischemic events, and cognitive decline. Its mechanisms are believed to involve regulation of gene expression and neurotrophic signaling rather than direct stimulation.

NA Semax is commonly studied via intranasal administration, with subcutaneous use less frequently reported in research settings. It is not classified as a hormone or stimulant and is investigated for regulatory and neuroprotective support.

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