CAS 25322-68-3
:Polyéthylène glycol
Description :
Polyéthylène glycol (PEG), avec le numéro CAS 25322-68-3, est un polymère polyvalent connu pour ses propriétés hydrophiles et sa biocompatibilité. Il est composé d'unités répétitives d'oxyde d'éthylène, ce qui donne une structure pouvant varier en poids moléculaire, influençant ainsi ses caractéristiques physiques et chimiques. Le PEG est généralement un liquide incolore, inodore et visqueux ou un solide cireux, selon son poids moléculaire. Il est soluble dans l'eau et de nombreux solvants organiques, ce qui le rend utile dans une large gamme d'applications, y compris les produits pharmaceutiques, cosmétiques et alimentaires. Le PEG sert de lubrifiant, d'humectant et d'émulsifiant, et est souvent utilisé dans les formulations médicamenteuses pour améliorer la solubilité et la biodisponibilité. De plus, sa nature non toxique et sa capacité à former des hydrogels le rendent précieux dans les applications biomédicales, telles que les systèmes de délivrance de médicaments et l'ingénierie tissulaire. Cependant, les propriétés spécifiques du PEG peuvent varier considérablement en fonction de son poids moléculaire et de sa formulation, ce qui doit être pris en compte lors de sa sélection pour des applications particulières.
Formule :(C2H4O)nH2O
InChI :InChI=1S/C2H6O2/c3-1-2-4/h3-4H,1-2H2
Code InChI :InChIKey=LYCAIKOWRPUZTN-UHFFFAOYSA-N
SMILES :C(CO[H])O
Synonymes :- 1660O
- 1660S
- 3,6,9,12,15,18,21,24,27,30,33,36,39-Tridecaoxahentetracontane-1,41-diol
- 400Dab8
- Alkox
- Aquaffin
- Badimol
- Carbowachs
- Carbowax
- Colonsoft
- Db-Wax
- Duraseal
- FPR
- Forlax
- GlycoLax
- IW
- Isocolan
- KleanPrep
- Macrogol
- MiraLax
- Modopeg
- Muvinlax
- Nosilen
- Nycoline
- OEG
- PEB
- PEG
- PEG-(OH)<sub>2</sub>
- PEG-diol
- PEO
- PER
- Pegorion
- Peo-Pf
- Peo-Pfz
- Peo-Pfzr
- Peopo-A
- Polikol
- Poly(Oxy-1,2-Ethanediyl),A-Hydro-W-Hydroxy
- Poly(oxy-1,2-ethanediyl)
- Polyaethylenglykol
- Polyethox
- Polyethyleneglycol
- Polyetox
- Polygol
- Polyhydroxyethylene
- Polyosm
- Polyox
- Polyoxydin
- Polyoxyethylenediol
- Postonal
- Sed-Fix
- Slovapeg
- Solbase
- SpaceOAR
- Superox
- Ucarfloc
- α-Hydro-ω-hydroxypoly(oxy-1,2-ethanediyl)
- α-Hydro-ω-hydroxypoly(oxyethylene)
- PEG 6000
- Polyethylene glycol
- Polyethylene Glycol
- PEG 6000, MB Grade (1.12033)
- Poly(oxy-1,2-ethanediyl), α-hydro-ω-hydroxy-
- PEG 200
- Poly(ethylene oxide)
- Poly(ethylene glycol)
- Polyethyleneoxidemonomethacryloxymonotrimethylsiloxyterminated
- Poly ethylene glycol
- O-Methacryloxy(polyethyleneoxy)trimethylsilane
- poly(oxyethylene)
- Polyethylene glygcol
- PEG 200-8000
- Polyethylene glycol
- Ethylene oxide, homopolymer
- Polyethylene Glycol 5000000
- PolyethyleneoxideMW
- Aquacide III
- Polyethylene glycol series
- Tri-(2,3-Dibromopropyl) Phosphate
- Glycols, polyethylene
- Polyethylene glycol PEG
- Polyethylene glycol - 6000 grade
- Carmowax
- PEG 8000
- PEG 1000
- Ethylene glycol 8000 polymer
- PEG-400
- polyethylene oxide standard 511000
- Oxide Wax AN
- PEG 400
- Polyethylene Oxide
- PEG 600
- Voir plus de synonymes
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Polyethylene glycol 4000
CAS :Formule :CH2CH2OnCouleur et forme :White powder, crystals or flakesMasse moléculaire :3,600 - 4,400Polyethylene glycol 1000
CAS :Formule :CH2CH2OnCouleur et forme :White fused or waxy solidMasse moléculaire :~1,000Polyethylene glycol 300, BP, Ph. Eur., USP/NF grade
CAS :Formule :CH2CH2OnCouleur et forme :Clear, viscous, colourless or almost colourless hygroscopic liquidMasse moléculaire :~300Polyethylene Glycol 6000, Flakes, Ultrapure
CAS :Polyethylene Glycol 6000, Flakes, UltrapureDegré de pureté :≥95%Polyethylene Glycol 8000 BioChemica
CAS :<p>Polyethylene Glycol 8000 BioChemica</p>Couleur et forme :White SolidPolyethylene glycol 8000, BP, Ph. Eur., USP/NF grade
CAS :Formule :CH2CH2OnCouleur et forme :White or almost white solid with a waxy appearanceMasse moléculaire :~8,000Poly(ethylene Glycol) ~9000
CAS :Produit contrôléFormule :H2O(C2H4O)nCouleur et forme :White To Off-WhiteMasse moléculaire :62.07Poly(ethylene Glycol) ~400
CAS :<p>Applications Poly(ethylene Glycol) ~400 is a polymer of ethylene oxide with a molecular weight of ~400 Daltons. Poly(ethylene Glycol) ~400 is considered a low molecular weight polyethylene glycol, and is used as a hydrophilic molecular probe for measuring intestinal permeability. Poly(ethylene Glycol) ~400 is also used as a hydrophilic plasticizer.<br>References Lu, E., et al.: J. Control. Release, 92, 375 (2003); Ma, T., et al.: Gastroenterology, 98, 39 (1990)<br></p>Formule :H2O(C2H4O)nCouleur et forme :ColourlessMasse moléculaire :62.07Poly(ethylene Glycol) ~4000
CAS :Produit contrôléFormule :H2O(C2H4O)nCouleur et forme :White To Off-WhiteMasse moléculaire :62.07Poly(ethylene Glycol) ~600
CAS :Produit contrôlé<p>Applications Poly(ethylene Glycol) molecules of an average molecular mass of 600. Poly(ethylene Glycol) is used in various applications from industrial chemistry to biological chemistry. Recent research has shown PEG maintains the ability to aid the spinal cord injury recovery process, helping the nerve impulse conduction process in animals. In rats, it has been shown to aid in the repair of severed sciatic axons, helping with nerve damage recovery. It is industrially produced as a lubricating substance for various surfaces to reduce friction. PEG is also used in the preparation of vesicle transport systems in with application towards diagnostic procedures or drug delivery methods.<br>References Borgens, R. et al.: J. Neurosci. Res., 66, 1179 (2001); Stavisky, R. et al.: Neurosci. Lett., 376, 98 (2005); Nalam, P. et al.: Tribiol. Lett., 37, 541 (2010); Steinmetz, N. et al.: J. Am. Chem. Soc., 131, 17093 (2009); Li, X. et al.: J. Am. Chem. Soc., 133, 11147 (2011); Li, L. et al.: Int. J. Pharm., 447, 192 (2013);<br></p>Formule :H2O(C2H4O)nCouleur et forme :Colourless To Off-WhiteMasse moléculaire :62.07Poly(ethylene Glycol) ~6000
CAS :Produit contrôlé<p>Applications Poly(ethylene Glycol) molecules of an average molecular mass of 6000. Poly(ethylene Glycol) is used in various applications from industrial chemistry to biological chemistry. Recent research has shown PEG maintains the ability to aid the spinal cord injury recovery process, helping the nerve impulse conduction process in animals. In rats, it has been shown to aid in the repair of severed sciatic axons, helping with nerve damage recovery. It is industrially produced as a lubricating substance for various surfaces to reduce friction. PEG is also used in the preparation of vesicle transport systems in with application towards diagnostic procedures or drug delivery methods.<br>References Borgens, R. et al.: J. Neurosci. Res., 66, 1179 (2001); Stavisky, R. et al.: Neurosci. Lett., 376, 98 (2005); Nalam, P. et al.: Tribiol. Lett., 37, 541 (2010); Steinmetz, N. et al.: J. Am. Chem. Soc., 131, 17093 (2009); Li, X. et al.: J. Am. Chem. Soc., 133, 11147 (2011); Li, L. et al.: Int. J. Pharm., 447, 192 (2013)<br></p>Formule :H2O(C2H4O)nCouleur et forme :White To Off-WhiteMasse moléculaire :62.07Poly(ethylene Glycol) ~20000
CAS :Produit contrôlé<p>Stability Hygroscopic<br>Applications Poly(ethylene Glycol) molecules of an average molecular mass of 20000. Poly(ethylene Glycol) is used in various applications from industrial chemistry to biological chemistry. Recent research has shown PEG maintains the ability to aid the spinal cord injury recovery process, helping the nerve impulse conduction process in animals. In rats, it has been shown to aid in the repair of severed sciatic axons, helping with nerve damage recovery. It is industrially produced as a lubricating substance for various surfaces to reduce friction. PEG is also used in the preparation of vesicle transport systems in with application towards diagnostic procedures or drug delivery methods.<br>References Borgens, R. et al.: J. Neurosci. Res., 66, 1179 (2001); Stavisky, R. et al.: Neurosci. Lett., 376, 98 (2005); Nalam, P. et al.: Tribiol. Lett., 37, 541 (2010); Steinmetz, N. et al.: J. Am. Chem. Soc., 131, 17093 (2009); Li, X. et al.: J. Am. Chem. Soc., 133, 11147 (2011); Li, L. et al.: Int. J. Pharm., 447, 192 (2013);<br></p>Formule :H2O(C2H4O)nCouleur et forme :Off-WhiteMasse moléculaire :62.07Kollisolv PEG 300
CAS :Produit contrôlé<p>Applications Kollisolv PEG 300 is used as a thickening agent and gel binder in the pharmaceutical industry.<br></p>Formule :H2O(C2H4O)nCouleur et forme :ColourlessMasse moléculaire :62.07Poly(ethylene Glycol) ~200
CAS :Produit contrôlé<p>Applications Poly(ethylene Glycol) molecules of an average molecular mass of 200. Poly(ethylene Glycol) is used in various applications from industrial chemistry to biological chemistry. Recent research has shown PEG maintains the ability to aid the spinal cord injury recovery process, helping the nerve impulse conduction process in animals. In rats, it has been shown to aid in the repair of severed sciatic axons, helping with nerve damage recovery. It is industrially produced as a lubricating substance for various surfaces to reduce friction. PEG is also used in the preparation of vesicle transport systems in with application towards diagnostic procedures or drug delivery methods.<br>References Borgens, R. et al.: J. Neurosci. Res., 66, 1179 (2001); Stavisky, R. et al.: Neurosci. Lett., 376, 98 (2005); Nalam, P. et al.: Tribiol. Lett., 37, 541 (2010); Steinmetz, N. et al.: J. Am. Chem. Soc., 131, 17093 (2009); Li, X. et al.: J. Am. Chem. Soc., 133, 11147 (2011); Li, L. et al.: Int. J. Pharm., 447, 192 (2013);<br></p>Formule :H2O(C2H4O)nCouleur et forme :ColourlessMasse moléculaire :62.07






