Search Results for Nootropics

Found 13 peptides

Peptides (13)

Semax

A nootropic peptide studied for cognition and neuroprotection.

KEY BENEFITS:

  • Synthetic ACTH(4‑10) analog researched for pro‑cognitive and neuroprotective effects
  • May enhance learning, memory, and resistance to hypoxic or ischemic stress
  • Investigated for improving attention and mental performance under load
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NAD+

A critical metabolic coenzyme studied for cellular energy.

KEY BENEFITS:

  • Central redox cofactor supporting mitochondrial energy production and ATP generation
  • May promote DNA repair, sirtuin activation, and cellular stress resistance
  • Investigated for healthy aging, cognitive support, and metabolic health
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Cortagen

A bioregulatory peptide studied for brain tissue support.

KEY BENEFITS:

  • Bioregulatory peptide researched for cerebral cortex and neuronal support
  • May aid neuroplasticity and recovery from brain stressors in experimental models
  • Investigated for supporting cognitive function and central nervous system resilience
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Pinealon

A neuropeptide studied for cognitive aging support.

KEY BENEFITS:

  • Short neuropeptide bioregulator studied for supporting brain aging and cognitive function
  • May influence gene expression related to neuronal survival and oxidative balance
  • Investigated for memory support and neuroprotection in aging models
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N-Acetyl Selank Amidate

A stabilized anxiolytic peptide for stress modulation research.

KEY BENEFITS:

  • Amidated form of N‑Acetyl Selank studied for improved stability and duration
  • May provide longer‑lasting anxiolytic and mood‑supportive effects in research
  • Investigated for sustained cognitive and stress‑adaptation benefits
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N-Acetyl Semax Amidate

A stabilized nootropic peptide for cognitive enhancement research.

KEY BENEFITS:

  • Amidated N‑Acetyl Semax analog studied for extended neurotrophic signaling
  • May offer prolonged cognitive enhancement and neuroprotection versus base Semax
  • Investigated for long‑term support of brain resilience and plasticity
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FTPP

An experimental peptide researched for cellular signaling modulation.

KEY BENEFITS:

  • Experimental peptide explored for modulation of intracellular signaling cascades
  • May influence pathways related to cell survival and metabolism in research models
  • Investigated broadly for systems‑level cellular regulation effects
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PE-22-28

A mitochondrial peptide studied for neuroprotection.

KEY BENEFITS:

  • Mitochondrial peptide fragment researched for protecting neurons from oxidative stress
  • May support mitochondrial membrane stability and reduce apoptosis in neural tissue
  • Investigated for neuroprotective effects in models of neurodegeneration
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Selank

An anxiolytic neuropeptide studied for stress and mood regulation.

KEY BENEFITS:

  • Heptapeptide analog of tuftsin researched for anxiolytic and anti‑stress effects
  • May improve cognitive function, attention, and memory consolidation
  • Investigated for modulating GABAergic and monoamine neurotransmission
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Humanin

A mitochondrial-derived peptide studied for cellular protection.

KEY BENEFITS:

  • Mitochondria‑derived peptide studied for cytoprotective and anti‑apoptotic effects
  • May support neuronal survival and cognitive function in aging models
  • Investigated for cardiovascular and metabolic protection against stressors
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N-Acetyl Selank

An anxiolytic neuropeptide studied for stress modulation.

KEY BENEFITS:

  • Modified Selank peptide researched for anxiolytic and stress‑modulating effects
  • May support cognitive performance, focus, and resilience under stress
  • Investigated for balancing GABAergic and monoamine neurotransmission
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N-Acetyl Semax

A nootropic peptide studied for cognition and neuroprotection.

KEY BENEFITS:

  • Modified Semax peptide researched for neuroprotective and pro‑cognitive effects
  • May enhance learning, memory, and attention through BDNF and monoamine modulation
  • Investigated for supporting recovery after ischemic or stress‑related brain injury
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JBSNF

A peptide studied for neural signaling research.

KEY BENEFITS:

  • Experimental peptide designation researched for broad cellular signaling support
  • May modulate pathways related to metabolic regulation and tissue resilience
  • Investigated in preclinical contexts for systemic stress‑adaptation effects
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