Chlordiazepoxide

From Self-sufficiency
Revision as of 11:41, 15 August 2010 by CheMoBot (Talk) (Updating {{drugbox}} (changes to watched fields) per Chem/Drugbox validation (report errors or bugs))

(diff) ← Older revision | Latest revision (diff) | Newer revision → (diff)
Jump to: navigation, search
Chlordiazepoxide
150px
150px
Systematic (IUPAC) name
7-chloro-2-methylamino-5-phenyl-3H-1,4-benzodiazepine-4-oxide
Clinical data
Pregnancy
category
  • US: D (Evidence of risk)
Routes of
administration
oral
intramuscular
Legal status
Legal status
Pharmacokinetic data
Metabolism Hepatic
Biological half-life 5–30 hours (Active metabolite desmethyldiazepam 36-200 hours: other active metabolites include temazepam and oxazepam.)
Excretion Renal
Identifiers
CAS Number 58-25-3
ATC code N05BA02 (WHO)
PubChem CID 2712
DrugBank APRD00682
ChemSpider 10248513
Chemical data
Formula C16H14ClN3O
Molar mass 299.75 g/mol[[Script error: No such module "String".]]
Script error: No such module "collapsible list".
  (verify)
Script error: No such module "TemplatePar".Expression error: Unexpected < operator.

Chlordiazepoxide (pronounced /ˈklɔərdaɪ.əzɨˈpɒksaɪd/), is a sedative/hypnotic drug and benzodiazepine derivative. It is marketed under the trade names Klopoxid, Librax (also contains clidinium bromide), Libritabs, Librium, Mesural, Multum, Novapam, Risolid, Silibrin, Sonimen, Tropium, and Zetran.

Chlordiazepoxide was the first benzodiazepine to be synthesised and the discovery of chlordiazepoxide was by pure chance.[1] Chlordiazepoxide and other benzodiazepines were initially accepted with widespread public approval but was followed with widespread public disapproval and recommendations for more restrictive medical guidelines for its use.[2]

Chlordiazepoxide has a medium to long half life but its active metabolite has a very long half life. The drug has amnestic, anxiolytic, hypnotic and skeletal muscle relaxant properties.[3]

History

Chlordiazepoxide (initially called methaminodiazepoxide) was the first benzodiazepine to be synthesised in the mid 1950's. Chlordiazepoxide was synthesised from work on a chemical dye, quinazolone-3-oxides. It was discovered by accident when in 1957 tests revealed that the compound had hypnotic, anxiolytic and muscle relaxant effects. Three years later chlordiazepoxide was marketed as a therapeutic benzodiazepine medication under the brand name Librium. Following chlordiazepoxide in 1963 diazepam hit the market under the brand name Valium followed by many further benzodiazepine compounds which were introduced over the subsequent years and decades.[4]

In 1959 it was used by over 2,000 physicians and more than 20,000 patients. It was described as "chemically and clinically different from any of the tranquilizers, psychic energizers or other psychotherapeutic drugs now available." During studies, chlordiazepoxide induced muscle relaxation and a quieting effect on laboratory animals like mice, rats, cats, and dogs. Fear and aggression were eliminated in much smaller doses than those necessary to produce hypnosis. Chlordiazepoxide is similar to phenobarbital in its anticonvulsant properties. However, it lacks the hypnotic effects of barbiturates. Animal tests were conducted in the Boston Zoo and the San Diego Zoo. Forty-two hospital patients admitted for acute and chronic alcoholism, and various psychoses and neuroses were treated with chlordiazepoxide. In a majority of the patients, anxiety, tension, and motor excitement were "effectively reduced." The most positive results were observed among alcoholic patients. It was reported that ulcers and dermatologic problems, both of which involve emotional factors, were reduced by chlordiazepoxide.[5]

Chlordiazepoxide enabled the treatment of emotional disturbances without a loss of mental acuity or alertness. It assisted persons burdened by compulsive behavior like one that felt compelled to count the slats on venetian blinds upon entering a room.[6] In 1963, approval for use was given to diazepam (Valium), a "simplified" version of chlordiazepoxide, primarily to counteract anxiety symptoms. Sleep-related problems were treated with nitrazepam (Mogadon), which was introduced in 1965, temazepam (Restoril), which was introduced in 1969, and flurazepam (Dalmane), which was introduced in 1973.[7]

Indications

Chlordiazepoxide is indicated for the short term (2–4 weeks) treatment of anxiety which is severe and disabling or subjecting the person to unacceptable distress. It is also indicated as a treatment for the management of acute alcohol withdrawal syndrome.[8]

Contraindications

Use of chlordiazepoxide should be avoided in individuals with the following conditions:

Chlordiazepoxide is generally considered an inappropriate benzodiazepine for the elderly due to its long elimination half-life and the risks of accumulation.[9] Benzodiazepines require special precaution if used in the elderly, pregnancy, children, alcohol- or drug-dependent individuals and individuals with comorbid psychiatric disorders.[10]

Pregnancy

The research into the safety of benzodiazepines during pregnancy is limited and it is recommended that use of benzodiazepines during pregnancy should be based on whether the benefits outweigh the risks. If chlordiazepoxide is used during pregnancy the risks can be reduced via using the lowest effective dose and for the shortest time possible. Benzodiazepines should generally be avoided during the first trimester of pregnancy. Chlordiazepoxide and diazepam are considered to be among the safer benzodiazepines to use during pregnancy in comparison to other benzodiazepines. Possible adverse effects from benzodiazepine use during pregnancy include, abortion, malformation, intrauterine growth retardation, functional deficits, carcinogenesis and mutagenesis. Caution is also advised during breast feeding as chlordiazepoxide passes into breast milk.[11][12]

Side effects

Common side effects of chlordiazepoxide include:[13]

Chlordiazepoxide in laboratory mice studies impairs latent learning. Benzodiazepines impair learning and memory via their action on benzodiazepine receptors which causes a dysfunction in the cholinergic neuronal system in mice.[14] In tests of various benzodiazepine compounds, chlordiazepoxide was found to cause the most profound reduction in the turnover of 5HT (serotonin) in rats. Serotonin is closely involved in regulating mood and may be one of the causes of feelings of depression in rats using chlordiazepoxide or other benzodiazepines.[15]

Tolerance and dependence

Tolerance

Chronic use of benzodiazepines, such as chlordiazepoxide leads to the development of tolerance with a decrease in number of benzodiazepine binding sites in mouse forebrain.[16] The Committee of Review of Medicines who carried out an extensive review of benzodiazepines including chlordiazepoxide found and were in agreement with the Institute of Medicine (USA) and the conclusions of a study carried out by the White House Office of Drug Policy and the National Institute on Drug Abuse (USA) that there was little evidence that long term use of benzodiazepines were beneficial in the treatment of insomnia due to the development of tolerance. Benzodiazepines tended to lose their sleep promoting properties within 3–14 days of continuous use and in the treatment of anxiety the committee found that there was little convincing evidence that benzodiazepines retained efficacy in the treatment of anxiety after 4 months continuous use due to the development of tolerance.[17]

Dependence

Chlordiazepoxide can cause physical dependence, addiction and what is known as the benzodiazepine withdrawal syndrome. Withdrawal from chlordiazepoxide or other benzodiazepines often leads to withdrawal symptoms which are similar to those seen with alcohol and barbiturates. The higher the dose and the longer the drug is taken the greater the risk of experiencing unpleasant withdrawal symptoms. Withdrawal symptoms can however occur at standard dosages and also after short term use. Benzodiazepine treatment should be discontinued as soon as possible via a slow and gradual dose reduction regime.[18]

Chlordiazepoxide taken during pregnancy can cause a postnatal benzodiazepine withdrawal syndrome.[19]

Overdose

An individual who has consumed excess chlordiazepoxide may display some of the following symptoms:

In animal models, the oral median lethal dose of chlordiazepoxide is 537 mg/kg.

Chlordiazepoxide is a drug which is very frequently involved in drug intoxication, including overdose.[20] Chlordiazepoxide overdose is considered a medical emergency and generally requires the immediate attention of medical personnel. The antidote for an overdose of chlordiazepoxide (or any other benzodiazepine) is flumazenil (Anexate).

Pharmacology

Chlordiazepoxide acts on benzodiazepine subreceptors of the main GABAA receptor and this results in an increased binding of the inhibitory neurotransmitter GABA to the GABAA receptor thereby producing inhibitory effects on the central nervous system and body similar to the effects of other benzodiazepines.[21] Chlordiazepoxide is anticonvulsant.[22] There is preferential storage of chlordiazepoxide in some organs including the heart of the neonate. Absorption by any administered route and the risk of accumulation is significantly increased in the neonate. The withdrawal of chlordiazepoxide during pregnancy and breast feeding is recommended, as chlordiazepoxide rapidly crosses the placenta and also is excreted in breast milk.[23] Chlordiazepoxide also decreases prolactin release in rats.[24] Benzodiazepines act via micromolar benzodiazepine binding sites as Ca2+ channel blockers and significantly inhibit depolarization-sensitive Calcium uptake in animal nerve terminal preparations.[25] Chlordiazepoxide inhibits acetylcholine release in mouse hippocampal synaptosomes in vivo. This has been found by measuring sodium-dependent high affinity choline uptake in vitro after pretreatment of the mice in vivo with chlordiazepoxide. This may play a role in chlordiazepoxide's anticonvulsant properties.[26]

Pharmacokinetics

Chlordiazepoxide is a long acting benzodiazepine drug. The half life of Chlordiazepoxide is 5 – 30 hours but has an active benzodiazepine metabolite (desmethyldiazepam) which has a half life of 36 – 200 hours.[27] The half life of chlordiazepoxide increases significantly in the elderly which may result in prolonged action as well as accumulation of the drug during repeated administration. Delayed body clearance of the long half life active metabolite also occurs in those over 60 years of age which further prolongs the effects of the drugs with additional accumulation after repeated dosing.[28]

Interactions

Some of the major interactions involving Chlordiazepoxide are listed below.[29]

Recreational use

Dr. Carl F. Essig of the Addiction Research Center of the National Institute of Mental Health spoke at a symposium on drug abuse at an annual meeting of the American Association for the Advancement of Science, in December 1963. He named meprobamate, glutethimide, ethinamate, ethchlorvynol, methyprylon and chlordiazepoxide as drugs whose usefulness can hardly be questioned. However, Essig labeled these newer products as drugs of addiction, like barbiturates, whose habit-forming qualities were more widely known. He mentioned a 90-day study of chlordiazepoxide, which concluded that the automobile accident rate among 68 users was 10 times higher than normal. Participants' daily dosage ranged from 5 to 100 milligrams.[30]

Chlordiazepoxide is a drug of potential misuse and is frequently detected in urine samples of drug users who have not been prescribed the drug.[31] Chlordiazepoxide in animal studies has been shown to increase reward seeking behaviours which may suggest an increased risk of addictive behavioural patterns.[32] In addition chlordiazepoxide has been shown to be able to substitute for the behavioural effects of barbiturates in a primate study.[33]

Legal status

Internationally, chlordiazepoxide is a Schedule IV controlled drug under the Convention on Psychotropic Substances.[1]

Toxicity

Animal

Laboratory tests assessing the toxicity of chlordiazepoxide, nitrazepam and diazepam on mice spermatozoa found that chlordiazepoxide produced toxicities in sperm including abnormalities involving both the shape and size of the sperm head. Nitrazepam however caused more profound abnormalities than chlordiazepoxide.[34]

Availability

Chlordiazepoxide is available in 5 mg, 10 mg and 25 mg strengths.

Trade names

Chlordiazepoxide is available under the following trade names in English speaking countries.[35]

  • Librium
  • Novapam
  • Tropium

Combination Drugs

See also

References

Cite error: Invalid <references> tag; parameter "group" is allowed only.

Use <references />, or <references group="..." />

External links

de:Chlordiazepoxid

es:Clordiazepóxido fr:Chlordiazépoxide gl:Clordiacepóxido it:Clordiazepossido hu:Klórdiazepoxid nl:Chloordiazepoxide ja:クロルジアゼポキシド pl:Chlordiazepoksyd pt:Clorodiazepóxido ru:Хлордиазепоксид fi:Klooridiatsepoksidi

sv:Klordiazepoxid
  1. Ban, TA. (2006). "The role of serendipity in drug discovery". Dialogues Clin Neurosci. 8 (3): 335–44. PMID 17117615. 
  2. Lua error in package.lua at line 80: module 'Module:Citation/CS1/Suggestions' not found.
  3. Lua error in package.lua at line 80: module 'Module:Citation/CS1/Suggestions' not found.
  4. Lua error in package.lua at line 80: module 'Module:Citation/CS1/Suggestions' not found.
  5. New York Times (28 February 1960). "Help For Mental Ills (Reports on Tests of Synthetic Drug Say The Results are Positive)". USA: New York Times. p. E9. 
  6. Lua error in package.lua at line 80: module 'Module:Citation/CS1/Suggestions' not found.
  7. Sternbach LH (1972). "The discovery of librium". Agents Actions. 2 (4): 193–6. doi:10.1007/BF01965860. PMID 4557348. 
  8. Lua error in package.lua at line 80: module 'Module:Citation/CS1/Suggestions' not found.
  9. Liu, GG.; Christensen, DB. (2002). "The continuing challenge of inappropriate prescribing in the elderly: an update of the evidence". J Am Pharm Assoc (Wash). 42 (6): 847–57. doi:10.1331/108658002762063682. PMID 12482007. 
  10. Lua error in package.lua at line 80: module 'Module:Citation/CS1/Suggestions' not found.
  11. Lua error in package.lua at line 80: module 'Module:Citation/CS1/Suggestions' not found.
  12. Lua error in package.lua at line 80: module 'Module:Citation/CS1/Suggestions' not found.
  13. drugs. "Chlordiazepoxide patient advice including side effects". drugs.com. Retrieved April 7, 2008. 
  14. Lua error in package.lua at line 80: module 'Module:Citation/CS1/Suggestions' not found.
  15. Lua error in package.lua at line 80: module 'Module:Citation/CS1/Suggestions' not found.
  16. Lua error in package.lua at line 80: module 'Module:Citation/CS1/Suggestions' not found.
  17. Committee on the Review of Medicines (March 29, 1980). "Systematic review of the benzodiazepines. Guidelines for data sheets on diazepam, chlordiazepoxide, medazepam, clorazepate, lorazepam, oxazepam, temazepam, triazolam, nitrazepam, and flurazepam. Committee on the Review of Medicines" (pdf). Br Med J. 280 (6218): 910–2. doi:10.1136/bmj.280.6218.910. PMC 1601049Freely accessible. PMID 7388368. 
  18. Lua error in package.lua at line 80: module 'Module:Citation/CS1/Suggestions' not found.
  19. Lua error in package.lua at line 80: module 'Module:Citation/CS1/Suggestions' not found.
  20. Lua error in package.lua at line 80: module 'Module:Citation/CS1/Suggestions' not found.
  21. Lua error in package.lua at line 80: module 'Module:Citation/CS1/Suggestions' not found.
  22. Lua error in package.lua at line 80: module 'Module:Citation/CS1/Suggestions' not found.
  23. Lua error in package.lua at line 80: module 'Module:Citation/CS1/Suggestions' not found.
  24. Grandison L (1982). "Suppression of prolactin secretion by benzodiazepines in vivo". Neuroendocrinology. 34 (5): 369–73. doi:10.1159/000123330. PMID 6979001. 
  25. Lua error in package.lua at line 80: module 'Module:Citation/CS1/Suggestions' not found.
  26. Lua error in package.lua at line 80: module 'Module:Citation/CS1/Suggestions' not found.
  27. Lua error in package.lua at line 80: module 'Module:Citation/CS1/Suggestions' not found.
  28. Vozeh S. (November 21, 1981). "[Pharmacokinetic of benzodiazepines in old age]". Schweiz Med Wochenschr. 111 (47): 1789–93. PMID 6118950. 
  29. British National Formulary. "Chlordiazepoxide interactions". BNF. Retrieved 07 A p r 2008.  Check date values in: |access-date= (help)
  30. Lua error in package.lua at line 80: module 'Module:Citation/CS1/Suggestions' not found.
  31. Lua error in package.lua at line 80: module 'Module:Citation/CS1/Suggestions' not found.
  32. Lua error in package.lua at line 80: module 'Module:Citation/CS1/Suggestions' not found.
  33. Lua error in package.lua at line 80: module 'Module:Citation/CS1/Suggestions' not found.
  34. Lua error in package.lua at line 80: module 'Module:Citation/CS1/Suggestions' not found.
  35. "Benzodiazepine Names". non-benzodiazepines.org.uk. Retrieved 2008-12-29.