Adaptation to chronic hypoxia activates endogenous signaling cascades, which lead to cardiac protection against acute ischemia/reperfusion (I/R) injury. The molecular mechanism of this phenomenon has not been fully clarified yet. However, it was proved that reactive oxygen species (ROS) take part in cardioprotective signaling pathway inducted by chronic hypoxia. The high level of ROS must be precisely regulated by antioxidative system of a cell. The aim of diploma thesis was to examine the effect of intermittent hypobaric hypoxia (IHH, 7 000 m) on relative amount of antioxidative enzymes (peroxiredoxin 6 - PRX6, thioredoxin 1 and 2 - TRX1 and TRX2, thioredoxin reductase 1 - TRXR1) and also enzymes of iron metabolism (heme oxygenase 1 and 2 ...
Cardiac energy metabolism is the one of the most complex system in the body. To sustain life, but al...
Cardiac energy metabolism is the one of the most complex system in the body. To sustain life, but al...
Cardiac energy metabolism is the one of the most complex system in the body. To sustain life, but al...
Adaptation to chronic hypoxia activates endogenous signaling cascades, which lead to cardiac protect...
The cardiovascular disease, particularly acute myocardial infarction, is the most common cause of de...
The cardiovascular disease, particularly acute myocardial infarction, is the most common cause of de...
The role of lipids and ROS in cardioprotective mechanism of chronic hypoxia Cardiovascular diseases,...
The role of lipids and ROS in cardioprotective mechanism of chronic hypoxia Cardiovascular diseases,...
The role of lipids and ROS in cardioprotective mechanism of chronic hypoxia Cardiovascular diseases,...
Adaptation to chronic hypoxia induces endogenous cardioprotection and increases the heart resistance...
More than 140 million people live and works (in a chronic or intermittent form) above 2500 m worldwi...
Cardiovascular diseases, particularly acute myocardial infarction, are the leading causes of death i...
Cardiovascular diseases, particularly acute myocardial infarction, are the leading causes of death i...
Cardiovascular diseases, particularly acute myocardial infarction, are the leading causes of death i...
Cardiovascular diseases, particularly acute myocardial infarction, are the leading causes of death i...
Cardiac energy metabolism is the one of the most complex system in the body. To sustain life, but al...
Cardiac energy metabolism is the one of the most complex system in the body. To sustain life, but al...
Cardiac energy metabolism is the one of the most complex system in the body. To sustain life, but al...
Adaptation to chronic hypoxia activates endogenous signaling cascades, which lead to cardiac protect...
The cardiovascular disease, particularly acute myocardial infarction, is the most common cause of de...
The cardiovascular disease, particularly acute myocardial infarction, is the most common cause of de...
The role of lipids and ROS in cardioprotective mechanism of chronic hypoxia Cardiovascular diseases,...
The role of lipids and ROS in cardioprotective mechanism of chronic hypoxia Cardiovascular diseases,...
The role of lipids and ROS in cardioprotective mechanism of chronic hypoxia Cardiovascular diseases,...
Adaptation to chronic hypoxia induces endogenous cardioprotection and increases the heart resistance...
More than 140 million people live and works (in a chronic or intermittent form) above 2500 m worldwi...
Cardiovascular diseases, particularly acute myocardial infarction, are the leading causes of death i...
Cardiovascular diseases, particularly acute myocardial infarction, are the leading causes of death i...
Cardiovascular diseases, particularly acute myocardial infarction, are the leading causes of death i...
Cardiovascular diseases, particularly acute myocardial infarction, are the leading causes of death i...
Cardiac energy metabolism is the one of the most complex system in the body. To sustain life, but al...
Cardiac energy metabolism is the one of the most complex system in the body. To sustain life, but al...
Cardiac energy metabolism is the one of the most complex system in the body. To sustain life, but al...