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Selank is a synthetic heptapeptide derived from the naturally occurring tuftsin sequence. It has been studied for its potential effects on anxiety-related measures, neurochemical signaling, EEG activity, and functional brain connectivity.
Human research has explored Selank primarily through intranasal administration, with particular interest in its influence on stress-response pathways, emotional regulation, and neurological signaling.
Semax is a synthetic heptapeptide derived from the ACTH(4-10) amino acid sequence and designed without the hormonal activity associated with full-length ACTH. It has been studied for its potential effects on neurotrophic signaling, cognitive function, attention, memory, and neurological resilience.
Research on Semax has focused on its interaction with pathways involved in neuronal signaling and brain function, making it a compound of interest in cognitive and neurological research.
Dihexa is a peptide-derived research compound studied in preclinical and in-vitro models for its relationship to HGF/c-Met signaling and synaptic-pathway investigation. Built for controlled laboratory research. Preclinical research studies have shown that Dihexa can significantly improve memory consolidation and reverse cognitive deficits in models of Alzheimer’s disease, traumatic brain injury, and stroke.
Semax + Selank is a dual-peptide research blend supplied in a nasal-spray format for controlled laboratory studies involving regulatory peptide activity, neurotransmission, gene expression, and neural-signaling pathways.
Research Studies
Investigation of GABA-associated and neurotransmission-related pathways
Study of neurotrophin-associated gene expression
Exploration of regulatory peptide interactions
Evaluation of neurobehavioral and stress-response models
Comparison of combined and individual peptide activity
Selank is a synthetic heptapeptide supplied for controlled laboratory research involving neurochemical signaling, gene-expression activity, and regulatory peptide pathways.
Research Studies
Investigation of GABA-associated neurotransmission
Study of gene-expression activity in preclinical models
Exploration of regulatory peptide and neural-signaling pathways
Evaluation of neurobehavioral and stress-response research models
Examination of peptide interactions with neurotransmission-related systems
Semax is a synthetic heptapeptide supplied for controlled laboratory research involving neurochemical signaling, gene-expression activity, and regulatory peptide pathways.
Research Studies
Investigation of neurotransmission-related signaling
Study of neurotrophin-associated gene expression
Exploration of regulatory peptide activity
Evaluation of cellular response pathways in preclinical models
Examination of ACTH-fragment peptide structure and activity