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4,6-O-Ethylidene-α-D-glucose

Catalog No.GC61986

4,6-O-éthylidène-α-D-glucose (Ethylidène-glucose), un dérivé du glucose, est un inhibiteur compétitif du site de liaison exofacial sur le transporteur de glucose 1 (GLUT1) avec un Ki de 12 mM pour le type sauvage 2 -transport du désoxy-D-glucose.

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4,6-O-Ethylidene-α-D-glucose Chemical Structure

Cas No.: 13224-99-2

Taille Prix Stock Qté
10mM (in 1mL DMSO)
99,00 $US
En stock
50 mg
90,00 $US
En stock
100 mg
135,00 $US
En stock

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Sample solution is provided at 25 µL, 10mM.

Description Chemical Properties Product Documents Related Products

4,6-O-ethylidene-α-D-glucose (Ethylidene-glucose), a glucose derivative, is a competitive exofacial binding-site inhibitor on glucose transporter 1 (GLUT1) with a Ki of 12 mM for wild-type 2-deoxy-D-glucose transport[1][2][3].

4,6-O-ethylidene-α-D-glucose (Ethylidene-glucose) shows poor affinity for malarial hexose transporter (PfHT1; Ki>50 mM). 4,6-O-ethylidene-α-D-glucose inhibits wild-type transport with a Ki of approximately 12 mM, but this is increased to greater than 120 mM in the Gln282-Leu mutant[1]. 4,6-O-ethylidene-α-D-glucose inhibits glucose exit competitively but its penetration into human red cells is unaffected by glucose in the medium. The potentiation of the development of FDNB inhibition by sugars in the incubating medium is absent when 4,6-O-ethylidene-α-D-glucose is used and there is a slight protective action. 4,6-O-ethylidene-α-D-glucose penetrates human red cells by simple diffusion supported by its penetration of guinea-pig red cells at similar rates, by the occurrence of osmotic haemolysis in isosmotic solutions which is unaffected by copper ions and by the relatively high ether/water partition of the compound[3].

[1]. M Hashiramoto, et al. Site-directed Mutagenesis of GLUT1 in Helix 7 Residue 282 Results in Perturbation of Exofacial Ligand Binding. J Biol Chem. 1992 Sep 5;267(25):17502-7.
[2]. Malay Patra, et al. A Potent Glucose-Platinum Conjugate Exploits Glucose Transporters and Preferentially Accumulates in Cancer Cells. Angew Chem Int Ed Engl. 2016 Feb 12;55(7):2550-4.
[3]. G F Baker, et al. The Permeation of Human Red Cells by 4,6-O-ethylidene- -D-glucopyranose (Ethylidene Glucose). J Physiol. 1973 May;231(1):129-42.

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