Ascorbate and dehydroascorbate transport was investigated in rat liver microsomal vesicles using radiolabeled compounds and a rapid filtration method. The uptake of both compounds was time- and temperature-dependent, and saturable. Ascorbate uptake did not reach complete equilibrium, it had low affinity and high capacity. Ascorbate influx could not be inhibited by glucose, dehydroascorbate, or glucose transport inhibitors (phloretin, cytochalasin B) but it was reduced by the anion transport inhibitor 4,4'-diisothiocyanostilbene-2,2'-disulfonic acid and by the alkylating agent N-ethylmaleimide. Ascorbate uptake could be stimulated by ferric iron and could be diminished by reducing agents (dithiothreitol, reduced glutathione). In contrast, de...
AbstractBeyond its general role as antioxidant, specific functions of ascorbate are compartmentalize...
Vitamin C plays an important role in neutralizing toxic free radicals formed during oxidative metabo...
Mammalian cells accumulate vitamin C either as ascorbic acid (AA), via Na +-AA co-transport, or dehy...
Ascorbate and dehydroascorbate transport was investigated in rat liver microsomal vesicles using rad...
Abstract Ascorbate and dehydroascorbate transport was investigated in rat liver microsomal vesicles ...
Ascorbate (AH, the reduced form of vitamin C) is an important radical scavenger and antioxidant in h...
The transport and intraluminal reduction of dehydroascorbate was investigated in microsomal vesicles...
The mechanisms allowing the cellular transport of ascorbic acid represent a primary aspect for the u...
AbstractThe activity of the ascorbate (Asc) carrier of purified Phaseolus plasma membranes is demons...
Exposure of U937 cells to low concentrations of l-ascorbic acid (AA) is associated with a prompt cel...
A U937 cell clone, in which low micromolar concentrations of ascorbic acid (AA) and dehydroascorbic ...
Vitamin C is essential for many enzymatic reactions and also acts as a free radical scavenger. Speci...
Beyond its general role as antioxidant, specific functions of ascorbate are compartmentalized within...
Beyond its general role as antioxidant, specific functions of ascorbate are compartmentalized within...
AbstractBeyond its general role as antioxidant, specific functions of ascorbate are compartmentalize...
Vitamin C plays an important role in neutralizing toxic free radicals formed during oxidative metabo...
Mammalian cells accumulate vitamin C either as ascorbic acid (AA), via Na +-AA co-transport, or dehy...
Ascorbate and dehydroascorbate transport was investigated in rat liver microsomal vesicles using rad...
Abstract Ascorbate and dehydroascorbate transport was investigated in rat liver microsomal vesicles ...
Ascorbate (AH, the reduced form of vitamin C) is an important radical scavenger and antioxidant in h...
The transport and intraluminal reduction of dehydroascorbate was investigated in microsomal vesicles...
The mechanisms allowing the cellular transport of ascorbic acid represent a primary aspect for the u...
AbstractThe activity of the ascorbate (Asc) carrier of purified Phaseolus plasma membranes is demons...
Exposure of U937 cells to low concentrations of l-ascorbic acid (AA) is associated with a prompt cel...
A U937 cell clone, in which low micromolar concentrations of ascorbic acid (AA) and dehydroascorbic ...
Vitamin C is essential for many enzymatic reactions and also acts as a free radical scavenger. Speci...
Beyond its general role as antioxidant, specific functions of ascorbate are compartmentalized within...
Beyond its general role as antioxidant, specific functions of ascorbate are compartmentalized within...
AbstractBeyond its general role as antioxidant, specific functions of ascorbate are compartmentalize...
Vitamin C plays an important role in neutralizing toxic free radicals formed during oxidative metabo...
Mammalian cells accumulate vitamin C either as ascorbic acid (AA), via Na +-AA co-transport, or dehy...