Cardiovascular diseases (CVDs) and cancer continue to be the primary cause of mortality worldwide and their pathomechanisms are a complex and multifactorial process. Insufficient oxygen availability (hypoxia) plays critical roles in the pathogenesis of both CVDs and cancer diseases, and hypoxia-inducible factor 1 (HIF-1), the main sensor of hypoxia, acts as a central regulator of multiple target genes in the human body. Accumulating evidence demonstrates that mitochondria are the major target of hypoxic injury, the most common source of reactive oxygen species during hypoxia and key elements for inflammation regulation during the development of both CVDs and cancer. Taken together, observations propose that hypoxia, mitochondrial abnormalit...
It is now clear that mitochondrial defects are associated with a large variety of clinical phenotype...
Hypoxia and its intricate regulation are at the epicenter of cardiovascular research. Mediated by hy...
Hypoxia and its intricate regulation are at the epicenter of cardiovascular research. Mediated by hy...
Cardiovascular (CV) diseases are the major cause of death in industrialized countries. The main func...
Abstract Hypoxia, characterized by reduced oxygen concentration, is a significant stressor that affe...
Cancer is often characterised by the presence of hypoxia and inflammation. Paramount to the mechanis...
Reactive oxygen species (ROS) are molecules involved in signal transduction pathways with both benef...
Reactive oxygen species (ROS) are molecules involved in signal transduction pathways with both benef...
Reactive oxygen species (ROS) are molecules involved in signal transduction pathways with both benef...
AbstractIt is now clear that mitochondrial defects are associated with a large variety of clinical p...
Reactive oxygen species (ROS) are molecules involved in signal transduction pathways with both benef...
Reactive oxygen species (ROS) are molecules involved in signal transduction pathways with both benef...
Reactive oxygen species (ROS) are molecules involved in signal transduction pathways with both benef...
Hypoxia is a prominent feature of solid tumor development and is known to stimulate mitochondrial RO...
Reactive oxygen species (ROS) are molecules involved in signal transduction pathways with both benef...
It is now clear that mitochondrial defects are associated with a large variety of clinical phenotype...
Hypoxia and its intricate regulation are at the epicenter of cardiovascular research. Mediated by hy...
Hypoxia and its intricate regulation are at the epicenter of cardiovascular research. Mediated by hy...
Cardiovascular (CV) diseases are the major cause of death in industrialized countries. The main func...
Abstract Hypoxia, characterized by reduced oxygen concentration, is a significant stressor that affe...
Cancer is often characterised by the presence of hypoxia and inflammation. Paramount to the mechanis...
Reactive oxygen species (ROS) are molecules involved in signal transduction pathways with both benef...
Reactive oxygen species (ROS) are molecules involved in signal transduction pathways with both benef...
Reactive oxygen species (ROS) are molecules involved in signal transduction pathways with both benef...
AbstractIt is now clear that mitochondrial defects are associated with a large variety of clinical p...
Reactive oxygen species (ROS) are molecules involved in signal transduction pathways with both benef...
Reactive oxygen species (ROS) are molecules involved in signal transduction pathways with both benef...
Reactive oxygen species (ROS) are molecules involved in signal transduction pathways with both benef...
Hypoxia is a prominent feature of solid tumor development and is known to stimulate mitochondrial RO...
Reactive oxygen species (ROS) are molecules involved in signal transduction pathways with both benef...
It is now clear that mitochondrial defects are associated with a large variety of clinical phenotype...
Hypoxia and its intricate regulation are at the epicenter of cardiovascular research. Mediated by hy...
Hypoxia and its intricate regulation are at the epicenter of cardiovascular research. Mediated by hy...