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Full-Text Articles in Medical Toxicology
Brain-Derived Extracellular Vesicles Potentially Mediate Crosstalk With Peripheral Organs In Neurodegenerative Diseases, Ramzi H. Hamdalla, Vibha B. Bhaskar, Changhai Tian
Brain-Derived Extracellular Vesicles Potentially Mediate Crosstalk With Peripheral Organs In Neurodegenerative Diseases, Ramzi H. Hamdalla, Vibha B. Bhaskar, Changhai Tian
Toxicology and Cancer Biology Faculty Publications
Brain-Derived Extracellular vesicles (BDEVs) are emerging mediators of intra- and interorgan communication in neurodegenerative diseases (NDs) such as Alzheimer’s Disease (AD) and Parkinson’s Disease (PD). A growing body of evidence suggests that BDEVs play an important role in modulating intercellular communication within the central nervous system in the pathogenesis of many NDs. By transporting non-coding RNAs (e.g., miRNAs) and important pathological proteins, BDEVs also influence peripheral organs and contribute to the progression of disease in the central nervous system (CNS). This review extends the understanding of NDs beyond solely brain dysfunction and gives a novel framework for the progression of …
Cardiac Injury Regulates Neuroinflammation Through Extracellular Vesicle–Mediated Heart-Brain Crosstalk, Qingxuan Li, Ramzi H. Hamdalla, Neha Dhyani, Lijun Sun, Lie Gao, Tara L. Rudebush, Irving H. Zucker, Changhai Tian
Cardiac Injury Regulates Neuroinflammation Through Extracellular Vesicle–Mediated Heart-Brain Crosstalk, Qingxuan Li, Ramzi H. Hamdalla, Neha Dhyani, Lijun Sun, Lie Gao, Tara L. Rudebush, Irving H. Zucker, Changhai Tian
Toxicology and Cancer Biology Faculty Publications
Cognitive impairment is common in heart failure patients, contributing to morbidity and mortality. This impairment may be linked to neuroinflammation in heart failure. However, the primacy of the heart-brain axis remains to be completely understood. Here, we elucidate the potential effects of myocardial injury on pathways and inflammatory mediators responsible for cognitive impairment using a rodent myocardial injury model. The results demonstrate direct extracellular vesicle (EV)-mediated heart-brain crosstalk and the glial uptake of cardiac EVs. In addition, brain inflammation was also elicited following myocardial injury. Moreover, cardiac EVs promote brain microglial cell activation in vitro, potentially mediated by EV-enriched micro-RNAs …
Micro-Rna Analysis Of Extracellular Vesicles Secreted By Alveolar Macrophages And Epithelial Cells In Response To Cadmium, Anisha Bhakta
Micro-Rna Analysis Of Extracellular Vesicles Secreted By Alveolar Macrophages And Epithelial Cells In Response To Cadmium, Anisha Bhakta
Biotechnology Theses
Inhalation of cadmium (Cd) has been an environmental health concern with the increase in industrial activities and smoking. Cd exposure is known to affect several organs such as lungs, kidneys, and liver. In this study, we wanted to understand if Cd inhalation exposure can affect the lungs and other organs in the body. Exosomes are extracellular vesicles secreted by all living cells and are known to carry toxicants between organs. We investigated whether Cd exposure could affect exosome biogenesis and their composition. Cd exposure did not affect the viability of A549, a lung epithelial cell line and macrophages derived from …
Extracellular Vesicle-Mediated Macrophage Activation: An Insight Into The Mechanism Of Thioredoxin-Mediated Immune Activation, Chontida Yarana, Hannah Thompson, Luksana Chaiswing, D. Allan Butterfield, Heidi L. Weiss, Subbarao Bondada, Sara S. Alhakeem, Suriyan Sukati, Daret K. St. Clair
Extracellular Vesicle-Mediated Macrophage Activation: An Insight Into The Mechanism Of Thioredoxin-Mediated Immune Activation, Chontida Yarana, Hannah Thompson, Luksana Chaiswing, D. Allan Butterfield, Heidi L. Weiss, Subbarao Bondada, Sara S. Alhakeem, Suriyan Sukati, Daret K. St. Clair
Toxicology and Cancer Biology Faculty Publications
Extracellular vesicles (EVs) generated from redox active anticancer drugs are released into the extracellular environment. These EVs contain oxidized molecules and trigger inflammatory responses by macrophages. Using a mouse model of doxorubicin (DOX)-induced tissue injury, we previously found that the major sources of circulating EVs are from heart and liver, organs that are differentially affected by DOX. Here, we investigated the effects of EVs from cardiomyocytes and those from hepatocytes on macrophage activation. EVs from H9c2 rat cardiomyocytes (H9c2 EVs) and EVs from FL83b mouse hepatocytes (FL83 b EVs) have different levels of protein-bound 4-hydroxynonenal and thus different immunostimulatory effects …
Extracellular Vesicles Released By Cardiomyocytes In A Doxorubicin-Induced Cardiac Injury Mouse Model Contain Protein Biomarkers Of Early Cardiac Injury, Chontida Yarana, Dustin W. Carroll, Jing Chen, Luksana Chaiswing, Yanming Zhao, Teresa Noel, Michael Alstott, Younsoo Bae, Emily V. Dressler, Jeffrey A. Moscow, D. Allan Butterfield, Haining Zhu, Daret K. St. Clair
Extracellular Vesicles Released By Cardiomyocytes In A Doxorubicin-Induced Cardiac Injury Mouse Model Contain Protein Biomarkers Of Early Cardiac Injury, Chontida Yarana, Dustin W. Carroll, Jing Chen, Luksana Chaiswing, Yanming Zhao, Teresa Noel, Michael Alstott, Younsoo Bae, Emily V. Dressler, Jeffrey A. Moscow, D. Allan Butterfield, Haining Zhu, Daret K. St. Clair
Toxicology and Cancer Biology Faculty Publications
Purpose—Cardiac injury is a major cause of death in cancer survivors, and biomarkers for it are detectable only after tissue injury has occurred. Extracellular vesicles (EV) remove toxic biomolecules from tissues and can be detected in the blood. Here, we evaluate the potential of using circulating EVs as early diagnostic markers for long-term cardiac injury.
Experimental Design—Using a mouse model of doxorubicin (DOX)-induced cardiac injury, we quantified serum EVs, analyzed proteomes, measured oxidized protein levels in serum EVs released after DOX treatment, and investigated the alteration of EV content.
Results—Treatment with DOX caused a significant increase in …
Role Of Oxidized Extracellular Vesicles As Early Biomarkers And Inflammatory Mediators In Chemotherapy-Induced Normal Tissue Injury, Chontida Yarana
Role Of Oxidized Extracellular Vesicles As Early Biomarkers And Inflammatory Mediators In Chemotherapy-Induced Normal Tissue Injury, Chontida Yarana
Theses and Dissertations--Toxicology and Cancer Biology
Significant advances in the efficacy of cancer therapy have been accompanied by an escalation of side effects that result from therapy-induced injury to normal tissues. Patients with high grade cancer or metastasis are often treated with chemotherapy, 50% of which are associated with reactive oxygen species generation and cellular oxidative stress. Heart is the normal tissue most susceptible to chemotherapy-induced oxidative stress and heart disease is the most common leading cause of death in cancer survivors. However, early and sensitive biomarkers to identify heart disease are still lacking. Extracellular vesicles (EVs) are released from cells during oxidative stress and send …
Chemotherapy-Induced Tissue Injury: An Insight Into The Role Of Extracellular Vesicles-Mediated Oxidative Stress Responses, Chontida Yarana, Daret K. St. Clair
Chemotherapy-Induced Tissue Injury: An Insight Into The Role Of Extracellular Vesicles-Mediated Oxidative Stress Responses, Chontida Yarana, Daret K. St. Clair
Toxicology and Cancer Biology Faculty Publications
The short- and long-term side effects of chemotherapy limit the maximum therapeutic dose and impair quality of life of survivors. Injury to normal tissues, especially chemotherapy-induced cardiomyopathy, is an unintended outcome that presents devastating health impacts. Approximately half of the drugs approved by the Food and Drug Administration for cancer treatment are associated with the generation of reactive oxygen species, and Doxorubicin (Dox) is one of them. Dox undergoes redox cycling by involving its quinone structure in the production of superoxide free radicals, which are thought to be instrumental to the role it plays in cardiomyopathy. Dox-induced protein oxidation changes …