N-Acetyl Semax (30mg)

$87.00

N-Acetyl Semax (30mg) is a synthetic peptide developed in Russia as a nootropic and neuroprotective agent. It is derived from adrenocorticotropic hormone (ACTH) and was initially intended for stroke recovery and brain trauma. N-Acetyl Semax is widely used for enhancing cognitive function, mood regulation, and neurological recovery. It is known for boosting BDNF, modulating neurotransmitters like dopamine and serotonin, and improving mental resilience and learning capacity.

50 in stock

Components of the N-Acetyl Semax (30mg) | SunGod Lab

Amino Acid Structure:

N-acetyl Semax, which is a synthetic peptide made from the adrenocorticotropic hormone (ACTH), and its modified structure improves its stability, supporting research.

Chemical Form:

N-acetyl semax amidates a freeze-dried powder that is mixed in bacteriostatic water before usage for research purposes.

Current Research Focus N-Acetyl Semax (30mg) | SunGod Lab

Cognitive Enhancement Research:

Research is ongoing about how N-acetyl Semax from helps by affecting brain signalling pathways, which results in focus, mental clarity, and learning ability.

Neuroprotection and Recovery:

Studies are exploring its usage in conditions like stroke, brain trauma, and how this will support neurological repair.

Mood and Neurotransmitter Regulation:

Scientists are also investigating how this peptide modulates the levels of dopamine and serotonin while increasing the brain-derived neurotrophic factor (BDNF).

BDNF Stimulation:

N-acetyl Semax plays a very important role in neuron growth, repair, and brain plasticity by increasing the expression of brain-derived neurotrophic factor

Neurotransmitter Modulation:

N-acetyl Semax helps in regulating mood, motivation, and cognitive activity by influencing neurotransmitters such as dopamine and serotonin.

Neurological Support:

Because of the above actions, it is being commonly studied throughout the laboratories to explore its crucial role in mental resiliance, neurological recovery and learning capacity

1. Anxiolytic & Antidepressant Effects

  • Study focus: Anxiety and stress reduction via neurotransmitter modulation
  • Key findings: Comparable to benzodiazepines without sedation or dependence
  • Mechanism: Enhances GABA, serotonin, and dopamine signalling
  • Subjects: Rodents and human clinical trials

2. Cognitive & Memory Enhancement

  • Study focus: Memory and learning improvements
  • Key findings: Boosted BDNF levels and neuroplasticity
  • Implication: Potential support for age-related cognitive decline and neurodegenerative conditions

3. Neuroprotective Properties

  • Study focus: Protection against oxidative and inflammatory brain damage
  • Key findings: Reduced pro-inflammatory cytokines and enhanced neurogenesis
  • Application: Brain injury and ischemic conditions

4. Immune System Modulation

  • Study focus: Regulation of cytokine balance and immune response
  • Key findings: Reduced inflammation, improved antiviral defence
  • Potential Use: Support in immunodeficient or chronically inflamed patients

5. Dopamine & Reward System Modulation

  • Study focus: Dopamine metabolism and reward behavior
  • Key findings: Boosted motivation, focus, and emotional stability
  • Implication: Possible applications in addiction and mood disorders

References

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Molecular Structure

Peptide Sequence: Met-Glu-His-Phe-Pro-Gly-Pro

Molecular Formula: C37H51N9O10S

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