VIP peptide 10 mg – Research Overview
VIP peptide (Vasoactive Intestinal Peptide) is a naturally occurring neuropeptide studied in experimental research models focused on neural signaling, vascular regulation, and physiological coordination. Researchers investigate VIP peptide due to its involvement in communication between the nervous, vascular, and immune systems. For this reason, VIP peptide has gained sustained interest in neurobiological and physiological research.
Scientists use VIP peptide to examine mechanisms that regulate vascular tone, smooth muscle activity, and neuroimmune coordination. These studies help researchers understand how biological systems maintain internal balance under changing physiological conditions. At the same time, experimental models explore how VIP peptide contributes to autonomic nervous system regulation and adaptive signaling processes.
Unlike peptides that act within a single system, VIP peptide allows researchers to observe integrated responses across multiple physiological pathways. This characteristic makes VIP peptide valuable for studying complex regulatory interactions under controlled laboratory conditions.
VIP peptide in neurobiological and physiological research
In neurobiological research, scientists frequently reference VIP peptide in experimental models focused on neural communication, autonomic regulation, and vascular responsiveness. Its signaling activity supports analysis of how nerve-derived peptides influence blood flow control and smooth muscle coordination.
Researchers also study VIP peptide in physiological models related to the respiratory system and gastrointestinal tract. These models help scientists examine how biological systems coordinate muscle relaxation, vascular adjustment, and adaptive organ function in response to internal and external stimuli.
In addition, research teams evaluate VIP peptide in experimental studies focused on immune signaling balance and neuroimmune interactions. These investigations explore how neuropeptides participate in communication between the nervous and immune systems during adaptive physiological responses.
VIP peptide in experimental system regulation studies
Due to its broad signaling profile, VIP peptide appears frequently in experimental models examining blood flow regulation, inflammatory balance, and systemic coordination mechanisms. Researchers use these models to study how biological systems adapt to stress, environmental changes, and internal regulatory demands.
In comparative research settings, scientists may evaluate VIP peptide alongside other neuropeptides or signaling molecules to analyze differences between localized and system-wide regulatory pathways. Such studies support deeper understanding of physiological adaptability and signaling integration.
Public scientific databases, including PubChem, provide biochemical and molecular reference data for VIP peptide. Researchers rely on these standardized resources when preparing experimental designs and validating research protocols.
Research handling and laboratory use
Laboratories handle VIP peptide exclusively in controlled research environments. Proper storage conditions and standardized handling procedures help maintain peptide stability and purity. Consistent laboratory protocols also support reliable and reproducible research outcomes.
All research involving VIP peptide remains limited to laboratory and experimental research models. These activities do not include clinical, therapeutic, or diagnostic use.
Important Notice
This product is intended exclusively for laboratory and scientific research purposes.
Not intended for human or veterinary use.
Not intended for diagnostic, therapeutic, or clinical applications.
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Compound
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VIP
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Chemical name
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Vasoactive Intestinal Peptide
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Quantity
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10mg
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Form
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Lyophilized peptide powder
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Purity
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High-purity research grade
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Packaging
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Glass vial with sterile closure
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Storage conditions
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Store lyophilized at 2–8 °C. Keep desiccated and protected from light.
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Molecular formula
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C₁₄₇H₂₃₁N₄₃O₄₂
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Molecular weight
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≈ 3326.8 g/mol
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Sequence
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His-Ser-Asp-Ala-Val-Phe-Thr-Asp-Asn-Tyr-Thr-Arg-Leu-Arg-Lys-Gln-Met-Ala-Val-Lys-Lys-Tyr-Leu-Asn-Ser-Ile-Leu-Asn-NH₂
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CAS Number
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40077-57-4
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