Javascript must be enabled to continue!
Interaction of respiratory burst and uptake of dehydroascorbic acid in differentiated HL-60 cells
View through CrossRef
HL-60 cells differentiated with DMSO increased their rates of uptake of ascorbate when they were activated with PMA. The rates observed after this activation were essentially the same as those with dehydroascorbic acid as the original transport substrate. The effect of activation was sensitive to the antioxidant enzymes superoxide dismutase and catalase. When ascorbate was oxidized in situ by chemical or enzymic oxidation, the rates of uptake were similar to those after activation of the cells by phorbol ester; however, in the latter case the extracellular vitamin remained largely in the reduced form and there was very little loss by degradation, whereas after immediate oxidation no more reduced ascorbate could be found outside the cells after a few minutes and a significant part of the total vitamin was lost. The generation of superoxide by xanthine/xanthine oxidase stimulated the uptake of ascorbate much less than the activation by phorbol ester; H2O2 was even less effective. Stimulation of the uptake by phorbol ester was also insensitive to GSH, in contrast with stimulation by the chemical oxidation of ascorbate. Stimulation of ascorbate uptake by phorbol ester was sensitive to the respiratory-burst inhibitor diphenyliodonium as well as the protein kinase C inhibitor staurosporine, indicating the respiratory burst as the cause of stimulation. Activation of the cells by the phorbol ester also stimulated the uptake of dehydroascorbate as the original substrate, in a manner insensitive to antioxidants or inhibitors of the respiratory burst. In all cases the intracellular vitamin was completely in the reduced form. Kinetic characterization by the calculation of maximal velocities and apparent Km values and assaying for the dependence of uptake rates on the ionic milieu and for inhibition by glucose analogues and inhibitors of glucose transport revealed that after treatment with phorbol ester the uptake of total vitamin C in differentiated HL-60 cells was largely due to the low-affinity high-capacity glucose transporter. In contrast, in non-stimulated cells reduced ascorbate was taken up by the Na+-dependent high-affinity low-capacity ascorbate transporter. This change was probably due to the oxidation of ascorbate and, simultaneously, the recruitment of additional transporter molecules to the cell surface.
Title: Interaction of respiratory burst and uptake of dehydroascorbic acid in differentiated HL-60 cells
Description:
HL-60 cells differentiated with DMSO increased their rates of uptake of ascorbate when they were activated with PMA.
The rates observed after this activation were essentially the same as those with dehydroascorbic acid as the original transport substrate.
The effect of activation was sensitive to the antioxidant enzymes superoxide dismutase and catalase.
When ascorbate was oxidized in situ by chemical or enzymic oxidation, the rates of uptake were similar to those after activation of the cells by phorbol ester; however, in the latter case the extracellular vitamin remained largely in the reduced form and there was very little loss by degradation, whereas after immediate oxidation no more reduced ascorbate could be found outside the cells after a few minutes and a significant part of the total vitamin was lost.
The generation of superoxide by xanthine/xanthine oxidase stimulated the uptake of ascorbate much less than the activation by phorbol ester; H2O2 was even less effective.
Stimulation of the uptake by phorbol ester was also insensitive to GSH, in contrast with stimulation by the chemical oxidation of ascorbate.
Stimulation of ascorbate uptake by phorbol ester was sensitive to the respiratory-burst inhibitor diphenyliodonium as well as the protein kinase C inhibitor staurosporine, indicating the respiratory burst as the cause of stimulation.
Activation of the cells by the phorbol ester also stimulated the uptake of dehydroascorbate as the original substrate, in a manner insensitive to antioxidants or inhibitors of the respiratory burst.
In all cases the intracellular vitamin was completely in the reduced form.
Kinetic characterization by the calculation of maximal velocities and apparent Km values and assaying for the dependence of uptake rates on the ionic milieu and for inhibition by glucose analogues and inhibitors of glucose transport revealed that after treatment with phorbol ester the uptake of total vitamin C in differentiated HL-60 cells was largely due to the low-affinity high-capacity glucose transporter.
In contrast, in non-stimulated cells reduced ascorbate was taken up by the Na+-dependent high-affinity low-capacity ascorbate transporter.
This change was probably due to the oxidation of ascorbate and, simultaneously, the recruitment of additional transporter molecules to the cell surface.
Related Results
Complex Collision Tumors: A Systematic Review
Complex Collision Tumors: A Systematic Review
Abstract
Introduction: A collision tumor consists of two distinct neoplastic components located within the same organ, separated by stromal tissue, without histological intermixing...
Emerging Evidence of IgG4-Related Disease in Pericarditis: A Systematic Review
Emerging Evidence of IgG4-Related Disease in Pericarditis: A Systematic Review
Abstract
Introduction
Immunoglobulin G4-related disease (IgG4-RD) is a recently identified immune-mediated condition that is debilitating and often overlooked. While IgG4-RD has be...
Lung uptake on I-131 therapy and short-term outcome in patients with lung metastasis from differentiated thyroid cancer
Lung uptake on I-131 therapy and short-term outcome in patients with lung metastasis from differentiated thyroid cancer
Abstract
Objective
It is sometimes difficult to assess I-131 lung uptake at the initial I-131 therapy because of strong artifacts from I-131 upta...
Successful transfection of Lymphoblastoid cell line (Preprint)
Successful transfection of Lymphoblastoid cell line (Preprint)
BACKGROUND
Immortalization is the stage that the cell goes through before full transformation [1]. Human resting B lymphocytes from peripheral blood are eas...
Performance Evaluation of Static vs. Adaptive Burst Size Techniques in Next-Generation OBS Architectures
Performance Evaluation of Static vs. Adaptive Burst Size Techniques in Next-Generation OBS Architectures
According to the majority of Internet users, the performance of real-time traffic applications is measured and evaluated in terms of quality, speed, and efficiency. Applications su...
British Food Journal Volume 46 Issue 11 1944
British Food Journal Volume 46 Issue 11 1944
1. From the information given to the Committee by members of the trade the following conclusions were drawn : (i) Four main types of product are sold under a name commonly includin...
Physiological regulation of bud burst in grapevine
Physiological regulation of bud burst in grapevine
Abstract
The physiological constraints on bud burst in woody perennials, including the prerequisite for vascular development remain unresolved. B...
THE BIOLOGICAL SIGNIFICANCE OF CHEMICAL DIFFERENCES IN BILE SALTS
THE BIOLOGICAL SIGNIFICANCE OF CHEMICAL DIFFERENCES IN BILE SALTS
Summary1. The chemical nature of the bile salts is a character that must be under the control of several genes and is also affected by intestinal micro‐organisms and perhaps again ...

