406996
Poly(ethylene glycol) bis(carboxymethyl) ether
average MN 250, cross-linking reagent amine reactive, carboxylic acid
Sinônimo(s):
Polyethylene glycol, Polyethylene glycol 250 diacid, Polyglycol 250 diacid
About This Item
Produtos recomendados
Nome do produto
Poly(ethylene glycol) bis(carboxymethyl) ether, average Mn 250
Formulário
viscous liquid
Nível de qualidade
peso molecular
average Mn 250
adequação da reação
reagent type: cross-linking reagent
reactivity: amine reactive
índice de refração
n20/D 1.454
densidade
1.302 g/mL at 25 °C
Ω-final
carboxylic acid
α-final
carboxylic acid
arquitetura do polímero
shape: linear
functionality: homobifunctional
cadeia de caracteres SMILES
OCCO.OCC(O)=O
InChI
1S/C2H4O3.C2H6O2/c3-1-2(4)5;3-1-2-4/h3H,1H2,(H,4,5);3-4H,1-2H2
chave InChI
SZUIEBOFAKRNDS-UHFFFAOYSA-N
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Descrição geral
Aplicação
Código de classe de armazenamento
10 - Combustible liquids
Classe de risco de água (WGK)
WGK 1
Ponto de fulgor (°F)
572.0 °F - closed cup
Ponto de fulgor (°C)
300 °C - closed cup
Equipamento de proteção individual
Faceshields, Gloves, Goggles, type ABEK (EN14387) respirator filter
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Artigos
Progress in biotechnology fields such as tissue engineering and drug delivery is accompanied by an increasing demand for diverse functional biomaterials. One class of biomaterials that has been the subject of intense research interest is hydrogels, because they closely mimic the natural environment of cells, both chemically and physically and therefore can be used as support to grow cells. This article specifically discusses poly(ethylene glycol) (PEG) hydrogels, which are good for biological applications because they do not generally elicit an immune response. PEGs offer a readily available, easy to modify polymer for widespread use in hydrogel fabrication, including 2D and 3D scaffold for tissue culture. The degradable linkages also enable a variety of applications for release of therapeutic agents.
Devising biomaterial scaffolds that are capable of recapitulating critical aspects of the complex extracellular nature of living tissues in a threedimensional (3D) fashion is a challenging requirement in the field of tissue engineering and regenerative medicine.
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