产品名称
14:0 PEG750 PE, Avanti Research™ - A Croda Brand 880610C
SMILES string
[H][C@@](COP([O-])(OCCNC(OCCOCCOCCOCCOCCOCCOCCOCCOCCOCCOCCOCCOCCOCCOCCOCCOC)=O)=O)(OC(CCCCCCCCCCCCC)=O)COC(CCCCCCCCCCCCC)=O.[NH4+]
assay
>99% (TLC)
form
liquid
packaging
pkg of 1 × 2.5 mL (880610C-25mg)
manufacturer/tradename
Avanti Research™ - A Croda Brand 880610C
concentration
10 mg/mL (880610C-25mg)
shipped in
dry ice
storage temp.
−20°C
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General description
16:0 PEG750 PE is a polyethylene glycol (PEG) conjugated phospholipid. The molecular weight and exact mass are averages based on the polydispersity of PEG.
Application
14:0 PEG750 PE is suitable for use as a stabilizing lipid in the preparation of folate receptor-targeting magneto liposomes. It might also be used for graphene surface modification, to study protein translocation.
Biochem/physiol Actions
14:0 PEG750 PE contains a neutral hydrophilic polyethylene glycol (PEG) chain. Thus, it efficiently inhibits protein adsorption during graphene nanopores modification.
Packaging
5 mL Clear Glass Sealed Ampule (880610C-25mg)
Legal Information
Avanti Research is a trademark of Avanti Polar Lipids, LLC
signalword
Danger
Hazard Classifications
Acute Tox. 3 Inhalation - Acute Tox. 4 Oral - Carc. 2 - Eye Irrit. 2 - Repr. 2 - Skin Irrit. 2 - STOT RE 1 - STOT SE 3
target_organs
Central nervous system
存储类别
6.1D - Non-combustible acute toxic Cat.3 / toxic hazardous materials or hazardous materials causing chronic effects
wgk
WGK 3
flash_point_f
does not flash
flash_point_c
does not flash
法规信息
新产品
此项目有
Geoffrey D Bothun et al.
Nanomedicine : nanotechnology, biology, and medicine, 7(6), 797-805 (2011-03-23)
Folate-targeted cationic magnetoliposomes (FTMLs) have been prepared with coencapsulated doxorubicin (DOX) and anionic superparamagnetic iron oxide (SPIO) nanoparticles (NPs) with 5 nm γ-Fe(2)O(3) cores and 16 nm hydrodynamic diameters. NP encapsulation (89%) was confirmed by cryogenic transmission electron microscopy (TEM)
Y P Shan et al.
Nanotechnology, 24(49), 495102-495102 (2013-11-16)
Studies of DNA translocation through graphene nanopores have revealed their potential for DNA sequencing. Here we report a study of protein translocation through chemically modified graphene nanopores. A transmission electron microscope (TEM) was used to cut nanopores with diameters between
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