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🇺🇸 USA Made Research Products Verified Purity COA Available Free Shipping on Orders Over $300
🇺🇸 USA Made Research Products Verified Purity COA Available Free Shipping on Orders Over $300

Product Details

VIP

$89.99

VIP – Research Overview

Vasoactive Intestinal Polypeptide (VIP) is a naturally occurring peptide that has been examined in laboratory models across multiple signaling pathways including gastrointestinal, cardiovascular, immune, and neural systems. Research highlights that VIP is studied for associations with diverse signaling mechanisms in experimental contexts, making it a subject of interest in medical and scientific studies.

Studies suggest that VIP may be examined in preclinical models for modulation of inflammatory, immune, and neurological signaling pathways. It has been applied in research models of fibrosis, gastrointestinal signaling, cardiovascular pathways, and neurobiology.

VIEW LAB RESULT

How to Reconstitute Lyophilized Peptides

Warm Up

Take the peptide vial out of the fridge and let it sit for a few minutes.

01

02

Sanitize

Use an alcohol swab to clean the top of the vial.

03

Reconstitute

Fill a syringe with bacteriostatic water and slowly inject it into the vial.

Dissolve

Gently swirl the vial until the powder fully dissolves.

04

05

Measure

Use a clean syringe to draw the required dose.

06

Inject & Store

Inject carefully, then place the vial back in the refrigerator.

Quantity

Description

Chemical Structure of VIP

CAS Number: 37221-79-7

Molecular Formula: C147H237N43O43S

Sequence: HSDAVFTDNYXRLRKQMAVKKYLNSXLN

PubChem CID: 445567960

Synonyms: Vasoactive Intestinal Polypeptide, PHM27

Source: PubChem

Observed Research Findings in Laboratory Models

According to available research, VIP may provide multiple potential benefits:

Anti-inflammatory properties: studied for modulation of inflammatory signaling cascades in vitro

Immune system regulation: examined for associations with immune signaling pathways in experimental systems

Antifibrotic potential: studied for associations with fibrotic pathway regulation in laboratory models

Neurological protection: examined in neurobiology research for signaling modulation and stress-response pathways

Multi-organ impact: applied in diverse experimental contexts for multi-system signaling studies

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