Selank 10MG & Semax 10MG Blend (20MG) – 10ML Nasal Spray

$129.00

💰 Use Code 25FORYOU
$96.75
Save $32.25 (25% OFF!)

  • Quick Delivery

    Free Same Day Shipping

  • Third Party Tested

    Third Party Tested

  • Secure Checkout

    Safe & Secure Checkout

  • Customer Service

    Excellent Customer Service

All Longevix.io products are third-party tested by clinical labs to ensure maximum purity.

Description

Selank + Semax — Dual Peptide Nasal Spray for Neurochemical Research

Selank + Semax is a combined synthetic peptide formulation developed for laboratory and scientific research applications. Both peptides are well-documented in academic literature for their interaction with neurochemical signaling pathways and are frequently studied in experimental models involving cognition, behavior, and stress-response mechanisms.

This dual-peptide nasal spray format is designed to support research into peptide stability, intranasal delivery dynamics, and central nervous system signaling, offering a convenient and consistent method for analytical and preclinical investigation.


Research Areas of Interest

Neuropeptide Signaling Studies – Selank and Semax are examined for their interactions with central nervous system signaling pathways in laboratory models.

Cognitive & Behavioral Pathway Research – Studied in experimental settings related to learning, memory, attention, and adaptive behavior markers.

Neurotransmitter System Evaluation – Investigated for effects on dopamine, serotonin, and GABA-related signaling pathways in controlled research environments.

Stress-Response & Adaptation Models – Selank is explored for its relationship with stress-related neurochemical markers, while Semax is studied for its role in adaptive neural signaling.

Intranasal Delivery & Stability Research – The nasal spray format supports investigation into peptide transport, absorption modeling, and formulation stability.

All references apply strictly to laboratory and preclinical research contexts.


Scientific Overview

Semax is a synthetic heptapeptide derived from an ACTH (4–10) fragment, engineered for enhanced stability and resistance to enzymatic degradation. It is widely studied in neurobiology research for its interactions with neurotrophic and neurotransmitter signaling pathways.

Selank is a synthetic peptide derived from the immunopeptide tuftsin, designed to improve molecular stability and reproducibility. In research literature, Selank is frequently evaluated for its influence on stress-related signaling and immune–neural pathway interactions.

When combined, Selank and Semax provide a complementary peptide pairing suitable for multi-pathway research involving neurochemical regulation, peptide transport, and intranasal formulation studies.


Mechanism of Action (Research Context)

Neurochemical Modulation: Both peptides are studied for their interaction with key neurotransmitter signaling systems in laboratory models.

Neurotrophic Pathway Evaluation: Semax is examined for its relationship with BDNF-related signaling in preclinical research.

Stress & Adaptive Signaling: Selank is explored for its influence on biochemical markers associated with stress-response mechanisms.

Peptide Stability & Transport: The combined formulation supports research into nasal absorption, molecular integrity, and delivery efficiency.


Quality, Formulation & Packaging

Purity: Verified via analytical methods such as HPLC/MS

Form: Nasal spray solution designed for research convenience

Production: Small-batch formulation under controlled laboratory conditions

Packaging: Sealed units for stability, consistency, and traceability

Fulfillment: Ships from a U.S.-based, climate-controlled facility with tracked delivery


Usage & Research Compliance

Selank + Semax nasal spray is supplied strictly for laboratory research and analytical use.

  • Not intended for human or animal consumption

  • Not a drug, supplement, or therapeutic product

  • No medical, neurological, or performance claims are made or implied

This product is intended solely for qualified research environments where proper handling, storage, and regulatory compliance are observed.

Related Products