Vasoactive Intestinal Peptide (VIP) 10MG
Description
Introducing Vasoactive Intestinal Peptide (VIP) 10mg from SSP Research, a neuropeptide studied for its broad roles in vasodilation, immune modulation, and neuroendocrine signaling. VIP is a 28–amino acid peptide naturally present in the central and peripheral nervous systems, where it regulates smooth muscle relaxation, circadian rhythm, and inflammatory responses. In research models, VIP has demonstrated protective effects in the cardiovascular system, lungs, and gastrointestinal tract, while also modulating cytokine activity and T-cell function. Due to its diverse actions, VIP is actively studied in the fields of pulmonary health, inflammatory disease, cognitive function, and immune regulation.
Features
- Naturally occurring neuropeptide with systemic regulatory functions
- Studied for vasodilation and cardiovascular protection
- Explored for roles in immune modulation and cytokine balance
- Investigated for pulmonary health and anti-inflammatory effects
- Relevant in circadian rhythm and neuroendocrine signaling studies
- Potential applications in neuroprotection and cognitive research
Why Choose SSP Research’s Vasoactive Intestinal Peptide (VIP) 10mg?
For researchers studying the intersection of vascular biology, neuroendocrine pathways, and immune regulation, SSP Research’s VIP 10mg offers unmatched purity and stability. Its multifunctional profile allows researchers to investigate key systems involved in inflammation, pulmonary health, and neurological processes. VIP’s ability to modulate both vascular tone and immune activity makes it a unique research tool for exploring conditions ranging from asthma and pulmonary hypertension to neurodegeneration and systemic inflammation. SSP Research provides high-quality VIP designed to support reproducible and reliable outcomes in advanced laboratory studies.
Specs
- Volume: 10 MG
- Purity: Research Grade
- Composition: Synthetic vasoactive intestinal peptide (28 amino acids)
- Molecular Weight: ~3326 Da
- Stability: Stable under standard laboratory storage conditions





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