Norepinephrine
A catecholamine hormone and neurotransmitter that mobilizes the body for action.
Norepinephrine, also called noradrenaline, is an organic chemical belonging to the catecholamine family, functioning as a hormone, neurotransmitter, and neuromodulator throughout the brain and body. The term "norepinephrine" is derived from Ancient Greek elements meaning "upon the kidney," while "noradrenaline" comes from Latin roots meaning "near the kidney"; the former is the standard name in the United States and the international nonproprietary name for the drug, whereas the latter is more common in the United Kingdom and elsewhere. Regardless of the name used, parts of the body that produce or are affected by this substance are termed noradrenergic. Its general role is to mobilize the brain and body for action: release is lowest during sleep, rises during wakefulness, and reaches much higher levels during stress or danger as part of the fight-or-flight response. In the brain, it increases arousal, alertness, vigilance, memory formation and retrieval, and attention, while also promoting restlessness and anxiety. In the body, it raises heart rate and blood pressure, triggers glucose release from energy stores, increases blood flow to skeletal muscle, reduces blood flow to the gastrointestinal system, and inhibits bladder voiding and gut motility. Norepinephrine is produced in small but powerful brain nuclei, most notably the locus coeruleus in the pons. Outside the brain, it acts as a neurotransmitter in sympathetic ganglia near the spinal cord or in the abdomen, as well as in Merkel cells of the skin, and is also released directly into the bloodstream by the adrenal glands. It exerts its effects by binding to adrenergic receptors on target cells. Many medically important drugs alter noradrenaline systems: norepinephrine itself is used as an injectable treatment for critically low blood pressure; stimulants like cocaine and methylphenidate act as reuptake inhibitors, while amphetamine acts as a dopamine and norepinephrine analog and reuptake inhibitor that reverses transporters; beta blockers counter some effects by blocking beta-adrenergic receptors, and alpha blockers counter effects on alpha-adrenergic receptors; alpha-2 agonists have sedating and antihypertensive effects and are used in surgery and for drug or alcohol dependence, with some like guanfacine also effective for anxiety and ADHD. Structurally, norepinephrine is a catecholamine and phenethy
- field
- Biochemistry, Neuroscience, Pharmacology
- known_for
- Mobilizing brain and body for action; increasing arousal, heart rate, and blood pressure; key role in fight-or-flight response
- chemical_class
- Catecholamine and phenethylamine
- precursor
- Dopamine
- receptors
- Alpha and beta-adrenergic receptors
Quick Facts
- Iupac Name
- (R)-4-(2-amino-1-hydroxyethyl)benzene-1,2-diol
- Source Tissues
- locus coeruleus; sympathetic nervous system; adrenal medulla
- Target Tissues
- system-wide
- Receptors
- α / 1 / , α / 2 / , β / 1 / , β / 3
- Agonists
- sympathomimetic drugs, clonidine, isoprenaline
- Antagonists
- Tricyclic antidepressants, beta blockers, antipsychotics
- Precursor
- dopamine
- Biosynthesis
- dopamine β-monooxygenase
- Metabolism
- MAO-A; COMT
- Cas Number
- 51-41-2
- Cas Number Ref
- correct · CAS
- Unii Ref
- correct · FDA
Facts from the source article.
Lore & Background
Norepinephrine is synthesized from the amino acid tyrosine through a series of enzymatic steps, with dopamine as its direct precursor. The conversion of dopamine to norepinephrine occurs predominantly inside neurotransmitter vesicles, catalyzed by dopamine β-monooxygenase. In the brain, norepinephrine is produced in the locus coeruleus, a small nucleus in the pons that exerts powerful effects on other brain areas. Outside the brain, it is released by sympathetic ganglia and Merkel cells in the skin, as well as directly into the bloodstream by the adrenal glands. Norepinephrine acts by binding to adrenergic receptors on cell surfaces, which are divided into alpha and beta families. Its release is lowest during sleep, rises during wakefulness, and reaches high levels during stress or danger. In the brain, it increases arousal, alertness, vigilance, memory formation and retrieval, and attention, but also restlessness and anxiety. In the body, it increases heart rate and blood pressure, triggers glucose release, increases blood flow to skeletal muscle, and reduces blood flow to the gastrointestinal system. Many medically important drugs work by altering norepinephrine systems. Norepinephrine itself is used as an injectable drug for critically low blood pressure. Stimulants like amphetamine act as reuptake inhibitors and increase catecholamine signaling. Beta blockers counter some effects by blocking beta-adrenergic receptors, while alpha blockers and alpha-2 agonists have various therapeutic uses, including treating hypertension, anxiety, and ADHD.
Reader's Guide
Norepinephrine is significant as a central mediator of the body's stress response and a key regulator of arousal, attention, and cardiovascular function. Its dual role as a neurotransmitter and hormone allows it to coordinate rapid physiological and behavioral changes during fight-or-flight situations. The discovery and characterization of its synthesis, storage, release, and receptor interactions have enabled the development of numerous therapeutic drugs. Beta blockers, which block beta-adrenergic receptors, are used to treat glaucoma, migraines, and cardiovascular diseases by reducing myocardial oxygen demand. Alpha-2 agonists, such as guanfacine, have shown effectiveness in treating anxiety disorders and ADHD, though the reasons remain unclear. Stimulants and antidepressants that affect norepinephrine reuptake are widely prescribed for conditions like ADHD and depression. The legacy of norepinephrine research lies in its profound impact on pharmacology and medicine, providing targets for drugs that manage blood pressure, heart conditions, psychiatric disorders, and more. Its study continues to inform understanding of stress, cognition, and autonomic nervous system function.
Did You Know?
- Norepinephrine is also called noradrenaline; the name 'norepinephrine' is preferred in the United States, while 'noradrenaline' is more common in the United Kingdom and the rest of the world.
- Norepinephrine release is lowest during sleep, rises during wakefulness, and reaches much higher levels during stress or danger in the fight-or-flight response.
- The direct precursor of norepinephrine is dopamine, which is synthesized from the amino acid tyrosine.
- Beta blockers, which counter some effects of noradrenaline by blocking beta-adrenergic receptors, are used to treat glaucoma, migraines, and cardiovascular diseases.
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