Halazepam: Difference between revisions

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[[File:Halazepam.svg|thumb|Halazepam]] [[File:Halazepam3d.png|thumb|Halazepam 3D]]
'''Halazepam''' is a [[benzodiazepine]] derivative that is used for its [[anxiolytic]] properties. It acts on the [[central nervous system]] (CNS) to produce its calming effects. Halazepam is a [[prodrug]], meaning it is metabolized in the body to produce the active compounds which exert the therapeutic effects. The primary metabolites of halazepam are [[nordazepam]], [[oxazepam]], and [[temazepam]], all of which are active benzodiazepines with anxiolytic properties.
'''Halazepam''' is a [[benzodiazepine]] derivative that is used for its [[anxiolytic]] properties. It acts on the [[central nervous system]] (CNS) to produce its calming effects. Halazepam is a [[prodrug]], meaning it is metabolized in the body to produce the active compounds which exert the therapeutic effects. The primary metabolites of halazepam are [[nordazepam]], [[oxazepam]], and [[temazepam]], all of which are active benzodiazepines with anxiolytic properties.


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[[Category:GABAergics]]
[[Category:GABAergics]]


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[[Category:Withdrawn drugs]]
[[Category:Benzodiazepines]]
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[[Category:Lactams]]
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Latest revision as of 02:37, 22 January 2025

Halazepam
Halazepam 3D

Halazepam is a benzodiazepine derivative that is used for its anxiolytic properties. It acts on the central nervous system (CNS) to produce its calming effects. Halazepam is a prodrug, meaning it is metabolized in the body to produce the active compounds which exert the therapeutic effects. The primary metabolites of halazepam are nordazepam, oxazepam, and temazepam, all of which are active benzodiazepines with anxiolytic properties.

Medical Uses[edit]

Halazepam is primarily indicated for the short-term management of anxiety disorders and the symptomatic relief of acute alcohol withdrawal. It is also used off-label for the treatment of other conditions such as insomnia, panic disorders, and complex partial seizures, although these uses are less common due to the development of newer drugs with fewer side effects.

Pharmacology[edit]

Halazepam belongs to the benzodiazepine class of drugs, which work by enhancing the effect of the neurotransmitter gamma-aminobutyric acid (GABA) at the GABAA receptor. This action results in the hyperpolarization of neurons, leading to an overall decrease in neuronal excitability and producing the drug's calming effects.

Metabolism[edit]

After oral administration, halazepam is absorbed from the gastrointestinal tract and undergoes significant first-pass metabolism in the liver. Its active metabolites, nordazepam, oxazepam, and temazepam, contribute to the drug's therapeutic effects. The elimination half-life of halazepam is variable, but the effects of a single dose can last for several hours due to the long half-lives of its active metabolites.

Side Effects[edit]

The side effects of halazepam are similar to those of other benzodiazepines and may include drowsiness, dizziness, confusion, and impaired coordination. Long-term use can lead to tolerance, dependence, and withdrawal symptoms upon discontinuation. The risk of cognitive impairment, falls, and fractures is increased in the elderly.

Contraindications[edit]

Halazepam is contraindicated in individuals with a known hypersensitivity to benzodiazepines, in patients with severe respiratory insufficiency, and in patients with sleep apnea syndrome. It should be used with caution in individuals with a history of substance abuse or in those with severe liver impairment.

Interactions[edit]

Halazepam may interact with other CNS depressants, including alcohol, opioids, and other benzodiazepines, leading to enhanced sedation, respiratory depression, and potentially fatal outcomes. Caution should be exercised when it is co-administered with these agents.

See Also[edit]


Benzodiazipines[edit]


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