Description
Semax has been extensively investigated in research involving memory, cognition, attention, neuroprotection, neuronal signaling, oxidative stress, neuroplasticity, and brain recovery.
One of the most intriguing areas of Semax research involves Alzheimer’s disease and amyloid biology. Research has investigated Semax in relation to amyloid-beta aggregation, cognitive impairment, neuronal protection, and pathological changes associated with neurodegeneration. Experimental research has also reported improvements in cognitive performance and reductions in amyloid accumulation following Semax exposure.
Research interests include:
•Cognitive performance and memory
•Neuroprotection and neuronal survival
•Neuroplasticity
•Oxidative-stress pathways
•Alzheimer’s disease & amyloid research
•Neurodegenerative disease research
•Brain aging and cognitive decline
•Recovery from neurological stress
•N-Acetyl Selank Amidate — 10mg
The Neurochemical Regulation Component
N-Acetyl Selank Amidate is an advanced Selank analog featuring optimized terminal modifications to its molecular structure.
Selank has been investigated across a broad range of neurological research involving GABAergic signaling, cognitive processes, stress-response pathways, neurochemical regulation, and neuronal communication.
Its inclusion gives NEURO an additional research profile centered around the brain’s regulatory and signaling systems, complementing the neuroprotective and neuroplasticity-focused components of the formulation.
Research interests include:
•GABA-related signaling
•Cognitive and memory research
•Neurochemical regulation
•Stress-response pathways
•Mood-related neurological research
•Neuronal communication
•Neuroplasticity
•Pinealon — 10mg
The Cellular Protection & Brain-Aging Component
Pinealon (EDR; Glu-Asp-Arg) is an ultrashort tripeptide with extensive research interest surrounding cellular protection, oxidative stress, neuronal survival, and age-related changes in brain tissue.
Experimental research has investigated Pinealon’s effects on reactive oxygen species, cellular stress, neuronal survival, and intracellular signaling, making it particularly interesting for researchers studying the mechanisms underlying brain aging, cellular resilience, and neurodegeneration.
Research interests include:
•Oxidative stress
•Neuronal survival
•Cellular protection
•Brain-aging research
•Neuroprotection
•Cellular signaling
•Neurodegenerative pathways
•Cellular longevity research
•PE-22-28 — 10mg
The Neurogenesis & Neuroplasticity Component
PE-22-28 is a neurotensin-derived peptide fragment investigated for its potential effects on neuronal signaling, neurogenesis, neuroplasticity, and mood-related pathways.
Its inclusion expands NEURO into research surrounding the brain’s ability to adapt, communicate, develop new neuronal connections, and respond to neurological stress.
Research interests include:
•Neurogenesis
•Neuroplasticity
•Neuronal signaling
•Neuroregenerative research
•Brain-cell communication
•Mood-related pathways
•Neuronal adaptation
Why NEURO Stands Out
NEURO was built around a simple concept:
Protect the neuron. Support the signal. Preserve the network.
Rather than focusing on one biological pathway, NEURO combines four research peptides with complementary areas of investigation spanning cognition, neuroprotection, neuroplasticity, neurogenesis, oxidative stress, cellular resilience, and neurodegenerative research.
Cognitive & Memory Research
Semax-related research provides a strong foundation for investigating learning, memory, attention, and cognitive signaling.
Neuroprotection
Semax and Pinealon have been investigated for mechanisms associated with neuronal resilience, cellular stress, oxidative damage, and neuronal survival.
Alzheimer’s Disease & Amyloid Research
Semax has generated particularly interesting research surrounding amyloid-beta aggregation, amyloid accumulation, cognitive impairment, and neurodegenerative processes, making this one of the most compelling areas within the NEURO formulation.
Brain Aging & Cellular Resilience
Pinealon adds a distinct research profile centered around oxidative stress, cellular protection, and age-related changes in neuronal tissue.
Neuroplasticity & Neurogenesis
Semax and PE-22-28 provide complementary research profiles for investigating neuronal adaptation, signaling, neurogenesis, and the formation and maintenance of neural connections.
Neurochemical Regulation
Selank contributes a separate research pathway involving GABAergic signaling, stress-related mechanisms, and broader neurochemical regulation.
The NEURO Research Advantage
4 Advanced Peptides. 4 Complementary Research Profiles. 1 Comprehensive Brain Research Platform.
N-Acetyl Semax Amidate
• Cognition
• Memory
• Neuroprotection
• Neuroplasticity
• Alzheimer’s Disease & Amyloid Research
N-Acetyl Selank Amidate
• GABAergic Signaling
• Neurochemical Regulation
• Cognitive Research
• Stress Pathways
Pinealon
• Oxidative Stress
• Cellular Protection
• Neuronal Survival
• Brain Aging
PE-22-28
• Neurogenesis
• Neuroplasticity
• Neuronal Signaling
• Neuroregenerative Research
Together, these four peptides create an advanced research platform spanning some of the most important areas of modern brain research — from memory and cognitive function to neuronal protection, amyloid biology, neuroplasticity, neurogenesis, oxidative stress, and the cellular mechanisms associated with brain aging and neurodegeneration.
Product Specifications
•Total Peptide Content: 50mg
•N-Acetyl Semax Amidate: 20mg
•N-Acetyl Selank Amidate: 10mg
•Pinealon: 10mg
•PE-22-28: 10mg
•Purity: >99% – independently lab tested
•Form: High-purity lyophilized peptide blend
•Preparation: Requires reconstitution prior to laboratory use
Storage & Stability
Store the lyophilized vial in freezer conditions until use. After reconstitution, maintain appropriate refrigerated conditions (2–8°C) and protect from light. Utilize within standard laboratory handling timelines.
Research Use Notice
NEURO is supplied strictly for laboratory research and analytical purposes. This product is not intended for human or veterinary use, diagnosis, treatment, prevention, or mitigation of any disease or medical condition. Research findings involving individual components, parent compounds, and modified analogs should be interpreted independently, as evidence may differ between compounds and formulations.
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