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Documentos Principais

00896

Supelco

Dextran

analytical standard, for GPC, 670,000

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About This Item

Fórmula linear:
[C6H10O5]n
Número CAS:
Número CE:
Número MDL:
Código UNSPSC:
12352201
NACRES:
NA.24

grau

analytical standard
for GPC

Nível de qualidade

Formulário

powder or crystals

peso molecular

Mn ~332,800
Mp ~401,300
Mw ~667,800

classe(s) química(is) do analito

oligosaccharides

técnica(s)

gel permeation chromatography (GPC): suitable

Mw/Mn

~2.01

aplicação(ões)

food and beverages

InChI

1S/C18H32O16/c19-1-5(21)9(23)10(24)6(22)3-31-17-16(30)14(28)12(26)8(34-17)4-32-18-15(29)13(27)11(25)7(2-20)33-18/h1,5-18,20-30H,2-4H2

chave InChI

FZWBNHMXJMCXLU-UHFFFAOYSA-N

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Aplicação


  • Dextran in drug delivery: Research highlights the utilization of dextran in formulating hydrogels for enhanced wound healing, where collagen-polyurethane-dextran hydrogels demonstrate significant anti-inflammatory effects and promote collagen synthesis, thus supporting tissue regeneration processes (Aguayo-Morales et al., 2024).

  • Dextran as a tool in bioconjugation: A study investigated the role of dextran in bioconjugation to improve the cellular uptake of antisense oligonucleotides. This application of dextran enhances the delivery mechanisms of nucleic acid therapies, showing promise for genetic disorders and therapeutic interventions (Kohashi et al., 2024).

Embalagem

Bottomless glass bottle. Contents are inside inserted fused cone.

Código de classe de armazenamento

11 - Combustible Solids

Classe de risco de água (WGK)

WGK 2

Ponto de fulgor (°F)

Not applicable

Ponto de fulgor (°C)

Not applicable

Equipamento de proteção individual

Eyeshields, Gloves, type N95 (US)


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Slide 1 of 7

1 of 7

Dextran analytical standard, for GPC, 25,000

Supelco

00271

Dextran

Dextrana average mol wt 1,500,000-2,800,000

Sigma-Aldrich

D5376

Dextrana

Dextran Mr 450,000-650,000

Sigma-Aldrich

31392

Dextran

Dextran enzymatic synth.

Sigma-Aldrich

31394

Dextran

Dextrana Mr ~200,000

Sigma-Aldrich

31398

Dextrana

Dmitri Simberg et al.
Biomaterials, 30(23-24), 3926-3933 (2009-04-28)
In order to understand the role of plasma proteins in the rapid liver clearance of dextran-coated superparamagnetic iron oxide (SPIO) in vivo, we analyzed the full repertoire of SPIO-binding blood proteins using novel two-dimensional differential mass spectrometry approach. The identified
Ana Luisa Miranda-Vilela et al.
Journal of biomedical nanotechnology, 9(7), 1261-1271 (2013-08-06)
This work aimed to test a dextran-functionalized magnetic fluid (DexMF) sample in mediating magnetohyperthermia to treat an advanced clinical Ehrlich-solid-tumor, to verify the effects of oral antioxidant administration of pequi-oil on this treatment and to investigate the potential of these
R D Zysler et al.
Journal of biomedical nanotechnology, 9(1), 142-145 (2013-05-01)
We propose a new method for determining the quantity of superparamagnetic iron oxide nanoparticles (Fe3O4, SPIONs) embedded in animal tissue using magnetization measurements. With this method, the smallest detectable quantity of magnetite nanoparticles in a tissue sample is -1 microg.
Farwa Sarwat et al.
Pakistan journal of pharmaceutical sciences, 26(4), 793-797 (2013-07-03)
Leuconostoc are known to produce dextran, which have great commercial importance in chemical, medical and food industry. The present study is an attempt to select the best medium for the isolation of indigenous dextran producing Leuconostoc, measuring their enzyme activities
Wai-Leung Langston Suen et al.
Investigative ophthalmology & visual science, 54(6), 4358-4365 (2013-06-01)
This study aims to determine the in vivo effectiveness of low-frequency ultrasound in mediating the transport of macromolecules to the posterior segment of the eye via transscleral route. It investigates if damage is caused by ultrasound at the tested operation

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