Peripheral and Central Effects of Circulating Catecholamines
Периферические и центральные эффекты циркулирующих катехоламинов
2014-12-23
SCID: 54.1/kmuaextj
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adrenergic receptorscardiac hypertrophycirculating catecholaminesepinephrine and norepinephrinefight-or-flight response
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Abstract (AI)
Physical challenges, emotional arousal, increased physical activity, or changes in the environment can evoke stress, requiring altered activity of visceral organs, glands, and smooth muscles. These alterations are necessary for the organism to function appropriately under these abnormal conditions and to restore homeostasis. These changes in activity comprise the "fight-or-flight" response and must occur rapidly or the organism may not survive. The rapid responses are mediated primarily via the catecholamines, epinephrine, and norepinephrine, secreted from the adrenal medulla. The catecholamine neurohormones interact with adrenergic receptors present on cell membranes of all visceral organs and smooth muscles, leading to activation of signaling pathways and consequent alterations in organ function and smooth muscle tone. During the "fight-or-flight response," the rise in circulating epinephrine and norepinephrine from the adrenal medulla and norepinephrine secreted from sympathetic nerve terminals cause increased blood pressure and cardiac output, relaxation of bronchial, intestinal and many other smooth muscles, mydriasis, and metabolic changes that increase levels of blood glucose and free fatty acids. Circulating catecholamines can also alter memory via effects on afferent sensory nerves impacting central nervous system function. While these rapid responses may be necessary for survival, sustained elevation of circulating catecholamines for prolonged periods of time can also produce pathological conditions, such as cardiac hypertrophy and heart failure, hypertension, and posttraumatic stress disorder. In this review, we discuss the present knowledge of the effects of circulating catecholamines on peripheral organs and tissues, as well as on memory in the brain.
Key Findings
1
Although acute catecholamine responses support survival and homeostasis, prolonged elevation can cause cardiac hypertrophy, heart failure, hypertension, and posttraumatic stress disorder.
2
Catecholamine elevation increases blood pressure and cardiac output, relaxes bronchial and intestinal smooth muscle, induces mydriasis, and raises blood glucose and free fatty acids.
3
Circulating catecholamines can influence memory by acting on afferent sensory nerves that affect central nervous system function.
4
Circulating epinephrine and norepinephrine rapidly mediate the fight-or-flight response through adrenergic receptors on visceral organs and smooth muscle.
5
The review integrates current knowledge of catecholamine effects on peripheral organs, tissues, and brain memory processes.
Research Object
circulating catecholamines (epinephrine and norepinephrine) and their effects on peripheral organs, tissues, and brain memory
Research Subject
peripheral and central physiological and pathological effects of circulating catecholamines, including alterations in organ function, smooth muscle tone, cardiovascular and metabolic responses, and memory
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2014-12-23
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