Javascript must be enabled to continue!
Modulatory Effect of Rosmarinic Acid on H2O2-Induced Adaptive Glycolytic Response in Dermal Fibroblasts
View through CrossRef
Oxidative stress induces the adaptive response and alteration of energy metabolism across human cell types. Dermal fibroblasts shift their energy system to overload anaerobic glycolysis when exposed to sub-lethal hydrogen peroxide (H2O2). However, oxidative stress levels in the cells can be depleted by antioxidants, and such cellular changes can therefore be modulated. The present study aimed to investigate the modulatory effect of rosmarinic acid (a polyphenol antioxidant) against H2O2-induced reactive oxygen species (ROS) and the glycolytic adaptive response in fibroblasts. The results showed that H2O2 caused a significant ROS increase in the cells, and pre-treatment with rosmarinic acid (5–50 µM) decreased ROS significantly in the presence of glutathione. Rosmarinic acid modulated the adaptive response in H2O2-treated cells by decreasing glucose consumption and lactate production. The rosmarinic acid also recovered intracellular ATP and decreased NADPH production via the pentose phosphate pathway. Several glycolytic enzymes, including hexokinase-2 (HK-2), phosphofructokinase-2 (PFK-2), and lactate dehydrogenase A (LDHA), were downregulated in cells treated with rosmarinic acid. Furthermore, the key antioxidant enzymes: glutathione-disulfide reductase (GSR), glutathione peroxidase-1 (GPx-1), and peroxiredoxin-1 (Prx-1) and redox protein thioredoxin-1 (Trx-1) were upregulated in treated cells compared to control cells. To sum up, the rosmarinic acid could be used as an antioxidant against H2O2-induced adaptive responses in fibroblasts by modulating glucose metabolism, glycolytic genes, and GSH production. The present work indicates that rosmarinic acid holds promise in cell-based research applications for combating ROS and enhancing dermal fibroblast health.
Title: Modulatory Effect of Rosmarinic Acid on H2O2-Induced Adaptive Glycolytic Response in Dermal Fibroblasts
Description:
Oxidative stress induces the adaptive response and alteration of energy metabolism across human cell types.
Dermal fibroblasts shift their energy system to overload anaerobic glycolysis when exposed to sub-lethal hydrogen peroxide (H2O2).
However, oxidative stress levels in the cells can be depleted by antioxidants, and such cellular changes can therefore be modulated.
The present study aimed to investigate the modulatory effect of rosmarinic acid (a polyphenol antioxidant) against H2O2-induced reactive oxygen species (ROS) and the glycolytic adaptive response in fibroblasts.
The results showed that H2O2 caused a significant ROS increase in the cells, and pre-treatment with rosmarinic acid (5–50 µM) decreased ROS significantly in the presence of glutathione.
Rosmarinic acid modulated the adaptive response in H2O2-treated cells by decreasing glucose consumption and lactate production.
The rosmarinic acid also recovered intracellular ATP and decreased NADPH production via the pentose phosphate pathway.
Several glycolytic enzymes, including hexokinase-2 (HK-2), phosphofructokinase-2 (PFK-2), and lactate dehydrogenase A (LDHA), were downregulated in cells treated with rosmarinic acid.
Furthermore, the key antioxidant enzymes: glutathione-disulfide reductase (GSR), glutathione peroxidase-1 (GPx-1), and peroxiredoxin-1 (Prx-1) and redox protein thioredoxin-1 (Trx-1) were upregulated in treated cells compared to control cells.
To sum up, the rosmarinic acid could be used as an antioxidant against H2O2-induced adaptive responses in fibroblasts by modulating glucose metabolism, glycolytic genes, and GSH production.
The present work indicates that rosmarinic acid holds promise in cell-based research applications for combating ROS and enhancing dermal fibroblast health.
Related Results
Optimization strategies for efficient dosage of H2O2 in Fenton and photo-Fenton processes
Optimization strategies for efficient dosage of H2O2 in Fenton and photo-Fenton processes
This Thesis work addresses the challenge of designing hydrogen peroxide (H2O2) dosage Strategies for improving Fenton and photo-Fenton applications. The determination of the H2O2 d...
Up-regulated macrophage migration inhibitory factor protects apoptosis of dermal fibroblasts in patients with systemic sclerosis
Up-regulated macrophage migration inhibitory factor protects apoptosis of dermal fibroblasts in patients with systemic sclerosis
Summary
Macrophage migration inhibitory factor (MIF) is a proinflammatory cytokine that has been demonstrated to regulate the apoptosis of several cell types. Dysreg...
L-Asparaginase More Effectively Targets Leukemic Cells with Low Glycolytic Activity
L-Asparaginase More Effectively Targets Leukemic Cells with Low Glycolytic Activity
Abstract
Since O. Warburg first proposed aerobic glycolysis to be the main bioenergetic pathway activated in cancer cells, there has been near silence on the differe...
Cost-Effective HPLC Method for Identification of Rosmarinic Acid in Methanol Extract of Ocimum Basilicum
Cost-Effective HPLC Method for Identification of Rosmarinic Acid in Methanol Extract of Ocimum Basilicum
Prescribing herbal remedies is now becoming common by many practitioners, who propose herbal treatments along with conventional medicine systems to treat various ailments consideri...
Bile acid cytotoxicity in human dermal fibroblasts: mechanistic insights into effluent-induced peristomal skin damage
Bile acid cytotoxicity in human dermal fibroblasts: mechanistic insights into effluent-induced peristomal skin damage
Bile acids in intestinal effluent may play an underrecognized mechanistic role in peristomal skin injury, yet their direct effects on dermal fibroblasts—the stomal cells essential ...
EPD Electronic Pathogen Detection v1
EPD Electronic Pathogen Detection v1
Electronic pathogen detection (EPD) is a non - invasive, rapid, affordable, point- of- care test, for Covid 19 resulting from infection with SARS-CoV-2 virus. EPD scanning techno...
ASTRAGALOSIDE IV IMPROVED OXIDATIVE STRESS INDUCED INJURY THROUGH PINK1/PARKIN-MEDIATED MITOPHAGY IN H9C2 CELLS
ASTRAGALOSIDE IV IMPROVED OXIDATIVE STRESS INDUCED INJURY THROUGH PINK1/PARKIN-MEDIATED MITOPHAGY IN H9C2 CELLS
Objective:
To explore the mechanisms of Astragaloside IV on improving the oxidative stress induced injury in H9c2 cells.
Design and me...
Dermal Fibroblasts from Chronic Wounds Exhibit Paradoxically Enhanced Proliferative and Migratory Activities that May be Related to the Non-Canonical Wnt Signaling Pathway
Dermal Fibroblasts from Chronic Wounds Exhibit Paradoxically Enhanced Proliferative and Migratory Activities that May be Related to the Non-Canonical Wnt Signaling Pathway
It is generally thought that dermal fibroblasts from chronic wounds are in a state of senescence, which contributes to the failure to heal. This assumption, based on limited experi...

