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17:0-14:1 PI-[d5] Ammonium salt

General Information
Catalog: BLP-011369
CAS: 2342575-29-3
Molecular Formula: C40H73D5NO13P
Molecular Weight: 817.06
Chemical Structure
17:0-14:1 PI-[d5] Ammonium salt
Synonyms 1-heptadecanoyl-2-myristoleoyl-sn-glycero(d5)-3-phosphoinositol (ammonium salt); 17:0-14:1 PI-d5 sodium salt; 1-Heptadecanoyl-2-(9Z-Tetradecenoyl)-Sn-Glycero-3-Phospho-(1'-Myo-Inositol)-d5 (Ammonium salt); PI(17:0/14:1(9Z))-d5 ammonium salt
Purity >99%
Solubility Soluble in DCM, Methanol
Appearance Liquid
Shelf Life 1 Year
Storage Store at -20°C

17:0-14:1 PI-[d5] Ammonium salt, a vital phosphoinositide derivative, reverberates across diverse bioscience research with its multifaceted applications. Here are key applications of this compound presented with a high degree of perplexity and burstiness:

Lipidomics Research: Navigating the intricate realm where metabolomics intertwines with lipidomics, 17:0-14:1 PI-[d5] Ammonium salt emerges as a foundational cornerstone for conducting in-depth lipid profiling. By leveraging this isotopically labeled compound, researchers embark on a meticulous journey to quantify and trace phosphoinositides within the complex tapestry of biological samples. This pursuit unveils profound insights into lipid metabolism, signaling pathways, and the myriad functions of phosphoinositides within the intricate cellular milieu, shedding light on the enigmatic dance of lipids.

Membrane Dynamics Studies: Serving as an invaluable tool for unraveling the mesmerizing choreography of membrane dynamics, this derivative of ammonium salt empowers scientists to explore the subtle interplay between lipids and proteins under exquisitely simulated physiological conditions. Integrated seamlessly into model membranes, researchers uncover the secrets of how lipid compositions modulate membrane protein functionality, offering illuminating insights into fundamental processes like vesicle trafficking and the dynamic interplay of membrane proteins. This exploration delves deep into the dynamic nuances of cellular structures, painting a vivid picture of the intricate membrane landscape.

Signal Transduction Research: In the captivating domain of signal transduction investigations, 17:0-14:1 PI-[d5] Ammonium salt emerges as a pivotal tool for deciphering the labyrinthine phosphatidylinositol signaling pathways. Through adept manipulation of phosphoinositide levels, researchers delve into the cascading effects on downstream signaling cascades and cellular responses, unveiling the profound impact of signaling events on essential cellular processes like growth, division, and programmed cell death. This journey through the signaling pathways illuminates the intricate web of cellular communication, providing key insights into the orchestration of biological signaling events.

Biochemical Assays: In the diverse landscape of biochemical assays, this labeled phosphoinositide stands as a guiding light, a crucial tracer for meticulously studying enzyme activities such as phospholipase C or PI-3 kinase. Researchers harness its power as a formidable tool to unravel the intricate nuances of enzyme kinetics and illuminate the complex interactions between enzymes and phosphoinositides. These pivotal insights are essential for advancing drug development strategies and designing inhibitors that target specific nodes in the enigmatic realm of phosphoinositide metabolism, paving the way for innovative therapeutic interventions.

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