Semax (5mg)

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Research Benefits:

  • Neuroprotection & Brain Recovery: Semax is widely used in research models exploring cerebral ischemia, oxidative stress resistance, and neural repair following stroke or trauma.
  • Cognitive Enhancement Studies: Supports investigations into memory, learning, and attention, particularly through modulation of BDNF expression and neurotransmitter regulation.
  • Neuroplasticity & Synaptic Function: Used in studies examining neuroadaptive changes, synaptic signaling, and recovery of brain function in models of neurodegeneration.
  • Stress Response & HPA Axis Modulation: Assists in evaluating Semax’s effect on the hypothalamic-pituitary-adrenal axis, cortisol regulation, and resilience under psychological stress.
  • Pharmaceutical-Grade Purity: Formulated at >99% purity in lyophilized format, suitable for controlled preclinical, neuropharmacological, and behavioral research environments.

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Semax (5mg)
Research Peptide for Neurological and Cognitive Function Studies

Semax (5mg) is a synthetic peptide studied extensively in neuroscience and cognitive research. Derived from adrenocorticotropic hormone (ACTH 4-10), Semax is widely used in laboratory settings to investigate its potential roles in neuroprotection, nootropic mechanisms, and regulation of brain-derived neurotrophic factor (BDNF).

Product Overview
This lyophilized formulation contains 5mg of pure Semax Acetate, offering researchers a reliable and consistent tool for studying neurological signaling, synaptic plasticity, and central nervous system (CNS) repair pathways. Semax has attracted interest for its influence on attention, learning, and memory in non-clinical models.

Key Research Attributes:

  • Neuropeptide Structure: Semax is a heptapeptide analog of ACTH (4-10), designed to interact with melanocortin receptors and influence CNS processes.
  • Cognitive Research Relevance: Utilized in studies related to learning enhancement, mental clarity, and executive brain function.
  • Neuroprotective Activity: Investigated for its role in reducing oxidative stress and supporting brain resilience following stress or injury in preclinical settings.
  • High Purity & Stability: Lyophilized powder ensures extended shelf life and bioactivity for accurate scientific outcomes.


Applications in Scientific Research

  • Neuroplasticity and synaptic signaling studies
  • BDNF modulation and neurotrophic response analysis
  • Research on stress resilience and cognitive recovery
  • CNS repair and brain injury modeling
  • Comparative analysis of ACTH-derived neuropeptides

Format and Storage
Form: Lyophilized powder
Purity: >99%
Storage: Store at -20°C for optimal stability
Reconstitution: Use bacteriostatic water for solution preparation

Disclaimer: Semax (5mg) is supplied for laboratory research use only. It is not approved for human or veterinary use. All research activities must comply with local and institutional guidelines.



Chemical Makeup

Molecular Formula

  • Semax: C37H51N9O10S

Molecular Weight

  • Semax: 831.93 g/mol

Sequence

  • Semax: Met-Glu-His-Phe-Pro-Gly-Pro

Other Known Titles

  • Semax: ACTH (4-10) analog, Semax Acetate
 

Semax (5mg) is intended solely for laboratory and scientific research. Please review our Terms and Conditions before purchase.

Research

Semax Peptide: Research Insights and Applications

  • Neuroprotective Effects of Semax
    Semax has demonstrated protective effects on the brain during ischemic events by reducing oxidative stress and enhancing antioxidant activity. Read more
  • Cognitive Enhancement and Memory Improvement
    Studies show that Semax improves learning and memory in rats and humans by modulating neurotransmitter systems, especially dopamine and serotonin. Read more
  • Semax for Stroke Recovery
    Clinical use in Russia has shown Semax to support recovery in stroke patients, improving neurological status and promoting brain repair. Read more
  • Anti-Anxiety and Stress Regulation
    Research suggests Semax can reduce anxiety-like behavior and support mental resilience under stress by influencing the HPA axis. Read more
  • Neurotrophic Activity and BDNF Expression
    Semax has been shown to upregulate BDNF, a key protein involved in brain plasticity, learning, and emotional regulation. Read more
  • Semax in ADHD and Cognitive Disorders
    Investigated for use in children with ADHD and cognitive impairments, Semax has shown potential in improving attention and executive function. Read more
  • Regulation of Inflammation and Immune Response
    Findings indicate Semax may exert anti-inflammatory effects and modulate cytokine levels during immune challenges. Read more
  • Semax and Retinal Protection
    In ophthalmological research, Semax has demonstrated potential in protecting retinal neurons and enhancing visual function recovery. Read more
  • Molecular Mechanisms of Semax in the Brain
    This study explores how Semax modulates gene expression and influences neuroplasticity-related pathways in the brain. Read more

Semax Peptide: Research Insights and Applications

  • Neuroprotective Effects of Semax
    Semax has demonstrated protective effects on the brain during ischemic events by reducing oxidative stress and enhancing antioxidant activity. Read more
  • Cognitive Enhancement and Memory Improvement
    Studies show that Semax improves learning and memory in rats and humans by modulating neurotransmitter systems, especially dopamine and serotonin. Read more
  • Semax for Stroke Recovery
    Clinical use in Russia has shown Semax to support recovery in stroke patients, improving neurological status and promoting brain repair. Read more
  • Anti-Anxiety and Stress Regulation
    Research suggests Semax can reduce anxiety-like behavior and support mental resilience under stress by influencing the HPA axis. Read more
  • Neurotrophic Activity and BDNF Expression
    Semax has been shown to upregulate BDNF, a key protein involved in brain plasticity, learning, and emotional regulation. Read more
  • Semax in ADHD and Cognitive Disorders
    Investigated for use in children with ADHD and cognitive impairments, Semax has shown potential in improving attention and executive function. Read more
  • Regulation of Inflammation and Immune Response
    Findings indicate Semax may exert anti-inflammatory effects and modulate cytokine levels during immune challenges. Read more
  • Semax and Retinal Protection
    In ophthalmological research, Semax has demonstrated potential in protecting retinal neurons and enhancing visual function recovery. Read more
  • Molecular Mechanisms of Semax in the Brain
    This study explores how Semax modulates gene expression and influences neuroplasticity-related pathways in the brain. Read more
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