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Hyperglycemia Acutely Increases Cytosolic Reactive Oxygen Species via  O-linked GlcNAcylation and CaMKII Activation in Mouse Ventricular Myocytes  | Circulation Research
Hyperglycemia Acutely Increases Cytosolic Reactive Oxygen Species via O-linked GlcNAcylation and CaMKII Activation in Mouse Ventricular Myocytes | Circulation Research

PDF] Mitochondrial reactive oxygen species drive proinflammatory cytokine  production | Semantic Scholar
PDF] Mitochondrial reactive oxygen species drive proinflammatory cytokine production | Semantic Scholar

SK3 channel and mitochondrial ROS mediate NADPH oxidase-independent NETosis  induced by calcium influx | PNAS
SK3 channel and mitochondrial ROS mediate NADPH oxidase-independent NETosis induced by calcium influx | PNAS

Mitochondrial and Cytoplasmic ROS Have Opposing Effects on Lifespan | PLOS  Genetics
Mitochondrial and Cytoplasmic ROS Have Opposing Effects on Lifespan | PLOS Genetics

Cytosolic and mitochondrial ROS production resulted in apoptosis induction  in breast cancer cells treated with Crocin: The role of FOXO3a, PTEN and  AKT signaling - ScienceDirect
Cytosolic and mitochondrial ROS production resulted in apoptosis induction in breast cancer cells treated with Crocin: The role of FOXO3a, PTEN and AKT signaling - ScienceDirect

Antioxidants | Free Full-Text | Effect of Reactive Oxygen Species on the  Endoplasmic Reticulum and Mitochondria during Intracellular Pathogen  Infection of Mammalian Cells
Antioxidants | Free Full-Text | Effect of Reactive Oxygen Species on the Endoplasmic Reticulum and Mitochondria during Intracellular Pathogen Infection of Mammalian Cells

Frontiers | Physiological Signaling Functions of Reactive Oxygen Species in  Stem Cells: From Flies to Man
Frontiers | Physiological Signaling Functions of Reactive Oxygen Species in Stem Cells: From Flies to Man

ER-Dependent Ca++-mediated Cytosolic ROS as an Effector for Induction of  Mitochondrial Apoptotic and ATM-JNK Signal Pathways in Gallic Acid-treated  Human Oral Cancer Cells | Anticancer Research
ER-Dependent Ca++-mediated Cytosolic ROS as an Effector for Induction of Mitochondrial Apoptotic and ATM-JNK Signal Pathways in Gallic Acid-treated Human Oral Cancer Cells | Anticancer Research

Subcellular compartmentation of ROS. 1. Mitochondrial ROS which can... |  Download Scientific Diagram
Subcellular compartmentation of ROS. 1. Mitochondrial ROS which can... | Download Scientific Diagram

RAGE-Induced Cytosolic ROS Promote Mitochondrial Superoxide Generation in  Diabetes | American Society of Nephrology
RAGE-Induced Cytosolic ROS Promote Mitochondrial Superoxide Generation in Diabetes | American Society of Nephrology

Antioxidants | Free Full-Text | Functions of ROS in Macrophages and  Antimicrobial Immunity
Antioxidants | Free Full-Text | Functions of ROS in Macrophages and Antimicrobial Immunity

The role of reactive oxygen species in cognitive impairment associated with  sleep apnea
The role of reactive oxygen species in cognitive impairment associated with sleep apnea

ER-Dependent Ca++-mediated Cytosolic ROS as an Effector for Induction of  Mitochondrial Apoptotic and ATM-JNK Signal Pathways in Gallic Acid-treated  Human Oral Cancer Cells | Anticancer Research
ER-Dependent Ca++-mediated Cytosolic ROS as an Effector for Induction of Mitochondrial Apoptotic and ATM-JNK Signal Pathways in Gallic Acid-treated Human Oral Cancer Cells | Anticancer Research

Cytosolic ROS production by NADPH oxidase 2 regulates muscle glucose uptake  during exercise | Nature Communications
Cytosolic ROS production by NADPH oxidase 2 regulates muscle glucose uptake during exercise | Nature Communications

Mitochondrial reactive oxygen species enable proinflammatory signaling  through disulfide linkage of NEMO | Science Signaling
Mitochondrial reactive oxygen species enable proinflammatory signaling through disulfide linkage of NEMO | Science Signaling

Frontiers | Reactive Oxygen Species in Macrophages: Sources and Targets
Frontiers | Reactive Oxygen Species in Macrophages: Sources and Targets

An Introduction to Reactive Oxygen Species - Measurement of ROS in Cells |  April 7, 2021
An Introduction to Reactive Oxygen Species - Measurement of ROS in Cells | April 7, 2021

The Complex Interplay between Antioxidants and ROS in Cancer: Trends in  Cell Biology
The Complex Interplay between Antioxidants and ROS in Cancer: Trends in Cell Biology

Mitochondrial dysfunction and oxidative stress in heart disease |  Experimental & Molecular Medicine
Mitochondrial dysfunction and oxidative stress in heart disease | Experimental & Molecular Medicine

Reactive oxygen species and mitochondria: A nexus of cellular homeostasis -  ScienceDirect
Reactive oxygen species and mitochondria: A nexus of cellular homeostasis - ScienceDirect

Frontiers | Coordinated Contribution of NADPH Oxidase- and  Mitochondria-Derived Reactive Oxygen Species in Metabolic Syndrome and Its  Implication in Renal Dysfunction
Frontiers | Coordinated Contribution of NADPH Oxidase- and Mitochondria-Derived Reactive Oxygen Species in Metabolic Syndrome and Its Implication in Renal Dysfunction

Reactive oxygen species and mitochondria: A nexus of cellular homeostasis -  ScienceDirect
Reactive oxygen species and mitochondria: A nexus of cellular homeostasis - ScienceDirect

Understanding ROS-Induced DNA Damage for Therapeutics | SpringerLink
Understanding ROS-Induced DNA Damage for Therapeutics | SpringerLink

Mechanisms of Rapid Reactive Oxygen Species Generation in Response to  Cytosolic Ca2+ or Zn2+ Loads in Cortical Neurons | PLOS ONE
Mechanisms of Rapid Reactive Oxygen Species Generation in Response to Cytosolic Ca2+ or Zn2+ Loads in Cortical Neurons | PLOS ONE

Reactive Oxygen Species and Inflammatory Responses of Macrophages to  Substrates with Physiological Stiffness | ACS Applied Materials & Interfaces
Reactive Oxygen Species and Inflammatory Responses of Macrophages to Substrates with Physiological Stiffness | ACS Applied Materials & Interfaces

Mitochondria-mediated defense mechanisms against pathogens in  Caenorhabditis elegans. - Abstract - Europe PMC
Mitochondria-mediated defense mechanisms against pathogens in Caenorhabditis elegans. - Abstract - Europe PMC