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860062C

Avanti

Brain SM

Avanti Research - A Croda Brand

Synonym(s):

18:0 SM; Octadecanoyl Sphingomyelin; N-octadecanoyl-D-erythro-sphingosylphosphorylcholine; N-(octadecanoyl)-sphing-4-enine-1-phosphocholine

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About This Item

CAS Number:
UNSPSC Code:
12352211
NACRES:
NA.25

description

Sphingomyelin (Brain, Porcine), chloroform

assay

>99% (TLC)

form

liquid

packaging

pkg of 1 × 2.5 mL (860062C-25mg)
pkg of 2 × 4 mL (860062C-200mg)

manufacturer/tradename

Avanti Research - A Croda Brand

concentration

10 mg/mL (860062C-25mg)
25 mg/mL (860062C-200mg)

lipid type

sphingolipids

shipped in

dry ice

storage temp.

−20°C

InChI

1S/C41H83N2O6P/c1-6-8-10-12-14-16-18-20-21-23-25-27-29-31-33-35-41(45)42-39(38-49-50(46,47)48-37-36-43(3,4)5)40(44)34-32-30-28-26-24-22-19-17-15-13-11-9-7-2/h32,34,39-40,44H,6-31,33,35-38H2,1-5H3,(H-,42,45,46,47)/b34-32+/t39-,40+/m0/s1

InChI key

LKQLRGMMMAHREN-YJFXYUILSA-N

General description

As a major constituent of cell membranes, sphingomyelin is found at particularly high concentrations in the membranes of nerve cells (in the myelin sheaths) and red blood cells. It was previously thought to have a purely structural role, similar to the function of phosphatidylcholine, through intermolecular interactions mediated by the 2-amide group, the 3-hydroxy group and the 4,5-trans double bond of the sphingoid base. However, it is now appreciated that sphingomyelin has a high affinity for cholesterol and that these two lipids pack tightly into liquid-ordered domains among a liquid-disordered phase to form lipid rafts. These membrane microdomains are thought to function as signaling platforms that regulate the localization and interactions of proteins. But sphingomyelin does not just influence signaling as a component of lipid rafts — it is also a precursor to ceramides and other sphingolipid metabolites that comprise the sphingomyelin cycle or sphingolipid network.
Sphingomyelin and related lipids

Application

Brain SM may be used:
  • for ion-mobility spectrometry–mass spectrometry (IMS-MS)
  • for lipid mixture in giant unilamellar vesicles
  • as a growth medium for madin-darby canine kidney (MDCK) cells

Packaging

5 mL Clear Glass Sealed Ampule (860062C-200mg)
5 mL Clear Glass Sealed Ampule (860062C-25mg)

Legal Information

Avanti Research is a trademark of Avanti Polar Lipids, LLC

pictograms

Skull and crossbonesHealth hazard

signalword

Danger

Hazard Classifications

Acute Tox. 3 Inhalation - Acute Tox. 4 Oral - Aquatic Chronic 3 - Carc. 2 - Eye Irrit. 2 - Repr. 2 - Skin Irrit. 2 - STOT RE 1 - STOT SE 3

target_organs

Central nervous system, Liver,Kidney

wgk_germany

WGK 3


Certificates of Analysis (COA)

Search for Certificates of Analysis (COA) by entering the products Lot/Batch Number. Lot and Batch Numbers can be found on a product’s label following the words ‘Lot’ or ‘Batch’.

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Opposing kinesin and myosin-I motors drive membrane deformation and tubulation along engineered cytoskeletal networks
McIntosh B B,et al.
Current Biology, 28(2), 236-248 (2018)
Inhibition of acid sphingomyelinase depletes cellular phosphatidylserine and mislocalizes K-Ras from the plasma membrane
Cho K J,et al.
Molecular and cellular biology, 36(2), 363-374 (2016)
Yusuke Sato et al.
Acta biomaterialia, 102, 341-350 (2019-11-17)
Despite the fact that small-sized lipid nanoparticles (LNPs) are important for improved tissue penetration and efficient drug delivery, their poor stability and intracellular trafficking significantly hinders their use as potent small-sized LNPs. It has been reported that both the diffusion
Valerija Vezočnik et al.
Langmuir : the ACS journal of surfaces and colloids, 34(30), 8983-8993 (2018-07-10)
Understanding of the interactions between proteins and natural and artificially prepared lipid membrane surfaces and embedded nonpolar cores is important in studies of physiological processes and their pathologies and is applicable to nanotechnologies. In particular, rapidly growing interest in cellular
Assessment of altered lipid homeostasis by HILIC-ion mobility-mass spectrometry-based lipidomics
Hines K M, et al.
Journal of Lipid Research, 58(4), 809-819 (2017)

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