Dita Kašparová Chronická hypoxie a exprese genů 4 Abstract Adaptation to chronic hypoxia (CH) is characterized by a variety of functional changes in order to maintain metabolic and energy homeostasis. It has been known for many years that both humans and animals indigenous or adapted to high-altitude hypoxia are more tolerant to an acute ischemic injury of the heart. Cardioprotective mechanisms activated by adaptive responses to chronic hypoxia can be the result of altered transcriptional regulations in left ventricles. Here we report results from the gene expression profiling of adaptive responses in three models of chronically hypoxic heart. Adult male Wistar rats were exposed for 21 days to either continuous normobaric hypoxia (CCH; 10% ...
Adaptation to continuous normobaric hypoxia (CNH) protects the heart against acute ischemia/reperfus...
Adaptation to chronic hypoxia activates endogenous signaling cascades, which lead to cardiac protect...
Adaptation to chronic hypoxia activates endogenous signaling cascades, which lead to cardiac protect...
Adaptation to chronic hypoxia is characterized by a variety of functional changes in order to mainta...
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...
Background: Creatine kinase (CK) and hexokinase (HK) play a key role in myocardial energy homeostasi...
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...
Cardiac energy metabolism is the one of the most complex system in the body. To sustain life, but al...
Adaptation to chronic hypoxia provides myocardial protection against ischemia - reperfusion injury (...
Adaptation to chronic hypoxia provides myocardial protection against ischemia - reperfusion injury (...
Hypoxia increases apoptosis through signals possibly originating from Hypoxia-Inducible Factor 1 (HI...
Adaptation to chronic hypoxia induces endogenous cardioprotection and increases the heart resistance...
Adaptation to continuous normobaric hypoxia (CNH) protects the heart against acute ischemia/reperfus...
Adaptation to chronic hypoxia activates endogenous signaling cascades, which lead to cardiac protect...
Adaptation to chronic hypoxia activates endogenous signaling cascades, which lead to cardiac protect...
Adaptation to chronic hypoxia is characterized by a variety of functional changes in order to mainta...
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...
Background: Creatine kinase (CK) and hexokinase (HK) play a key role in myocardial energy homeostasi...
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...
Cardiac energy metabolism is the one of the most complex system in the body. To sustain life, but al...
Adaptation to chronic hypoxia provides myocardial protection against ischemia - reperfusion injury (...
Adaptation to chronic hypoxia provides myocardial protection against ischemia - reperfusion injury (...
Hypoxia increases apoptosis through signals possibly originating from Hypoxia-Inducible Factor 1 (HI...
Adaptation to chronic hypoxia induces endogenous cardioprotection and increases the heart resistance...
Adaptation to continuous normobaric hypoxia (CNH) protects the heart against acute ischemia/reperfus...
Adaptation to chronic hypoxia activates endogenous signaling cascades, which lead to cardiac protect...
Adaptation to chronic hypoxia activates endogenous signaling cascades, which lead to cardiac protect...