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VIP Peptide 10mg – Research (Vasoactive Intestinal Peptide) is a biologically active neuropeptide that plays a key role in multiple physiological systems. It functions as both a neurotransmitter and signaling molecule involved in smooth muscle regulation, immune modulation, and neural communication.
In scientific research, VIP is studied across neurobiology, gastroenterology, immunology, and cardiovascular physiology due to its wide-ranging biological effects.
This compound is strictly intended for laboratory research use only and is not approved for medical, therapeutic, or human consumption purposes.

VIP (Vasoactive Intestinal Peptide) is a 28-amino-acid neuropeptide belonging to the secretin/glucagon family. It was first identified in the gastrointestinal tract but is now known to be widely distributed throughout the nervous system and various peripheral tissues.
In laboratory research, synthetic VIP (such as VIP Peptide 10mg formulations) is used to study its physiological effects in controlled experimental conditions.
VIP exerts its biological effects by binding to specific G-protein-coupled receptors:
Once activated, these receptors trigger intracellular signaling cascades primarily involving cyclic AMP (cAMP) pathways.
VIP is known to induce relaxation in smooth muscle tissues, particularly in:
This is mediated through increased cAMP levels, which reduce calcium influx in muscle cells.
VIP functions as a neuromodulator in both central and peripheral nervous systems, influencing:
Research indicates VIP plays a role in immune response regulation:
VIP contributes to vascular relaxation by:
VIP is widely studied in multiple scientific domains:
VIP Peptide 10mg is strictly for laboratory research use only. It is not approved for human use, clinical treatment, or self-administration.
All handling must follow:
Studies on VIP Peptide have shown:
These outcomes are strictly experimental and not medical claims.
Observed responses in experimental settings may include:
These effects depend heavily on model systems and experimental design.
For research use:
It is used in scientific research to study neurobiology, immune response, and vascular function.
No. It is strictly for research purposes only.
It activates VPAC receptors and triggers cAMP signaling pathways affecting multiple biological systems.
No. It is not a supplement or medication.
Because it influences multiple systems including nervous, immune, and cardiovascular pathways.