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Propranolol Information

Propranolol (INN) sympatholytic non-selective beta blocker. Sympatholytics are used to treat hypertension, anxiety and panic. It was the first successful beta blocker developed. Propranolol is available in generic form as propranolol hydrochloride, as well as an AstraZeneca and Wyeth product under the trade names Inderal, Inderal LA, Avlocardyl (also available in prolonged absorption form named "Avlocardyl Retard"), Deralin, Dociton, Inderalici, InnoPran XL, Sumial, Anaprilinum (depending on marketplace and release rate), Bedranol SR (Sandoz).

Propranolol is one of the banned substances in the Olympics, presumably for its use in controlling social anxiety (stage fright) and tremors.

Contents

History and development

Scottish scientist James W. Black successfully developed propranolol in the 1960s. In 1988, he was awarded the Nobel Prize in Medicine for this discovery. Propranolol was derived from the early β-adrenergic antagonists dichloroisoprenaline and pronethalol. The key structural modification, which was carried through to essentially all subsequent beta blockers, was the insertion of a methoxy bridge into the aryl ethanolamine structure of pronethalol thus greatly increasing the potency of the compound. This also apparently eliminated the carcinogenicity found with pronethalol in animal models.

Newer, more selective beta-blockers (such as nebivolol, carvedilol, or metoprolol) are now used in the treatment of hypertension.

Indications

Propranolol is indicated for the management of various conditions including:

While once first-line treatment for hypertension, the role for beta-blockers was downgraded in June 2006 in the United Kingdom to fourth-line as they perform less well than other drugs, particularly in the elderly, and evidence is increasing that the most frequently used beta-blockers at usual doses carry an unacceptable risk of provoking type 2 diabetes.[7]

Propranolol is also used to lower portal vein pressure in portal hypertension and prevent esophageal variceal bleeding.

Off-label and investigational use

Propranolol is often used by musicians and other performers to prevent stage fright. It has been taken by surgeons to reduce their own innate hand tremors during surgery.[8]

Propranolol 80mg daily should be used post discharge in STEMI patients.[citation needed]

Propranolol is currently being investigated as a potential treatment for post-traumatic stress disorder.[9][10][11][12] Propranolol works to inhibit the actions of norepinephrine, a neurotransmitter that enhances memory consolidation. Studies have shown that individuals given propranolol immediately after a traumatic experience show less severe symptoms of PTSD compared to their respective control groups that did not receive the drug (Vaiva et al., 2003). Propranolol reduces the effects of nightmare-related cardiac activity by keeping sinus rhythm low during nightmares, as a higher pulse and increased adrenaline are associated with severe nightmares. However, results remain inconclusive as to the success of propranolol in treatment of PTSD, including nightmares experienced by those with PTSD. There are also many ethical and legal questions surrounding the use of Propranolol-based medications for use as a "memory dampener," including: altering (memory-recalled) evidence during an investigation, modifying behavioral response to past (albeit traumatic) experiences, the regulation of these drugs, and others.[13]

Propranolol in combination with etodolac is currently being investigated in a Phase 3 trial of 400 colorectal cancer patients as a potential treatment for prevention of colorectal cancer recurrence.[14] The aim of this study is to assess the use of perioperative medical intervention using a combination of a propranolol and etodolac in order to attenuate the surgically induced immunosuppression and other physiological perturbations, aiming to reduce the rate of tumor recurrence and distant metastatic disease.

Recent evidence (June 2008) suggests that propranolol can be used to treat severe infantile hemangiomas (IHs).[15] This treatment has proven superior to corticosteroids, as propranolol has fewer side effects and is more effective when treating IHs.

Propranolol was investigated for possible effects on resting energy expenditure and muscle catabolism in patients with severe burns.[16] In children with burns, treatment with propranolol during hospitalization attenuated hypermetabolism and reversed muscle wasting.

Propranolol along with a number of other membrane-acting drugs have been investigated for possible effects on Plasmodium falciparum and so the treatment of malaria. In vitro positive effects until recently had not been matched by useful in vivo anti-parasite activity against P. vinckei,[17] or P. yoelii nigeriensis.[18] However a single study from 2006 has suggested that propranolol may reduce the dosages required for existing drugs to be effective against P. falciparum by 5- to 10-fold, suggesting a role for combination therapies.[19]

Precautions and contraindications

Propranolol should be used with caution in patients with:[20]

Propranolol is contraindicated in patients with:[20]

Adverse effects

This section requires expansion.

Adverse drug reactions (ADRs) associated with propranolol therapy are similar to other lipophilic beta blockers (see beta blocker).

Pregnancy and lactation

Propranolol, like other beta blockers, is classified as Pregnancy category C in the United States and ADEC Category C in Australia. Beta-blocking agents in general reduce perfusion of the placenta which may lead to adverse outcomes for the neonate, including pulmonary or cardiac complications, or premature birth. The newborn may experience additional adverse effects such as hypoglycemia and bradycardia.[citation needed]

Most beta-blocking agents appear in the milk of lactating women. This is especially the case for a lipophilic drug like propranolol. Breastfeeding is not recommended in patients receiving propranolol therapy.[citation needed]

Pharmacokinetics

Propranolol is rapidly and completely absorbed, with peak plasma levels achieved approximately 1–3 hours after ingestion. Co-administration with food appears to enhance bioavailability. Despite complete absorption, propranolol has a variable bioavailability due to extensive first-pass metabolism. Hepatic impairment will therefore increase its bioavailability. The main metabolite 4-hydroxypropranolol, with a longer half-life (5.2–7.5 hours) than the parent compound (3–4 hours), is also pharmacologically active.

Propranolol is a highly lipophilic drug achieving high concentrations in the brain. The duration of action of a single oral dose is longer than the half-life and may be up to 12 hours, if the single dose is high enough (e.g., 80 mg). Effective plasma concentrations are between 10–100 ng/mL.

Toxic levels are associated with plasma concentrations above 2000 ng/ml.

Mechanism of action

Propranolol is a non-selective beta blocker, that is, it blocks the action of epinephrine and norepinephrine on both β1- and β2-adrenergic receptors. It has little intrinsic sympathomimetic activity (ISA) but has strong membrane stabilizing activity (only at high blood concentrations, e.g. overdosage). Research has also shown that propranolol has inhibitory effects on the norepinephrine transporter and/or stimulates norepinephrine release (present experiments have shown that the concentration of norepinephrine is increased in the synapse but do not have the ability to discern which effect is taking place).[21] Since propranolol blocks β-adrenoceptors, the increase in synaptic norepinephrine only results in α-adrenergic activation, with the α1-adrenoceptor being particularly important for effects observed in animal models. Therefore, some have suggested that it be looked upon as an indirect α1 agonist as well as a β antagonist. Probably owing to the effect at the α1-adrenoceptor, the racemate and the individual enantiomers of propranolol have been shown to substitute for cocaine in rats, with the most potent enantiomer being S-(–)-propranolol. In addition, some evidence suggests that propranolol may function as a partial agonist at one or more serotonin receptors (possibly 5-HT1B).

Both enantiomers of the drug have a local anesthetic (topical) effect, which is normally mediated by blockade of voltage-gated sodium channels. Few studies have demonstrated propranolol's ability to block cardiac, neuronal, and skeletal voltage-gated sodium channels, accounting for its known “membrane stabilizing effect” and anti-arrhythmic and other central nervous system effects.[22] [23] [24]

Interactions

Beta blockers, including propranolol, have an additive effect with other drugs which decrease blood pressure, or which decrease cardiac contractility or conductivity. Clinically-significant interactions particularly occur with:[20]

Dosage

The usual maintenance dose ranges for oral propranolol therapy vary by indication:

Intravenous (IV) propranolol may be used in acute arrhythmia or thyrotoxic crisis.[27]

Chemistry

Propranolol, 1-(iso-propylamino)-3-(1-naphthyloxy)-2-propanol, is synthesized in two ways from the same initial substance. The first way consists of reacting 1-naphthol with epichlorohydrin. Opening of the epoxide ring gives 1-chloro-3-(1-naphthyloxy)-2-propanol, which is reacted further with iso-propylamine, giving propranolol. The second method uses the same reagents in the presence of a base and consists of initially making 3-(1-naphthyloxy)propylenoxide, the subsequent reaction with isopropylamine which results in epoxide ring opening leading to the formation of propranolol.

References

  1. ^ Kornischka J, Cordes J, Agelink MW (April 2007). "[40 years beta-adrenoceptor blockers in psychiatry]" (in German). Fortschritte Der Neurologie-Psychiatrie 75 (4): 199–210. doi:10.1055/s-2006-944295. PMID 17200914.
  2. ^ Vieweg V, Pandurangi A, Levenson J, Silverman J (1994). "The consulting psychiatrist and the polydipsia-hyponatremia syndrome in schizophrenia". International Journal of Psychiatry in Medicine 24 (4): 275–303. doi:10.2190/5WG5-VV1V-BXAD-805K. PMID 7737786.
  3. ^ Kishi Y, Kurosawa H, Endo S (1998). "Is propranolol effective in primary polydipsia?". International Journal of Psychiatry in Medicine 28 (3): 315–25. doi:10.2190/QPWL-14H7-HPGG-A29D. PMID 9844835.
  4. ^ Kramer MS, Gorkin R, DiJohnson C (1989). "Treatment of neuroleptic-induced akathisia with propranolol: a controlled replication study". The Hillside Journal of Clinical Psychiatry 11 (2): 107–19. PMID 2577308.
  5. ^ Thibaut F, Colonna L (1993). "[Anti-aggressive effect of beta-blockers]" (in French). L'Encéphale 19 (3): 263–7. PMID 7903928.
  6. ^ Clinical summary
  7. ^ Sheetal Ladva (2006-06-28). "NICE and BHS launch updated hypertension guideline". National Institute for Health and Clinical Excellence. http://www.nice.org.uk/download.aspx?o=335988. Retrieved 2009-10-11.
  8. ^ Elman MJ, Sugar J, Fiscella R, et al. (1998). "The effect of propranolol versus placebo on resident surgical performance". Transactions of the American Ophthalmological Society 96: 283–91; discussion 291–4. PMC 1298399. PMID 10360293.
  9. ^ "Doctors test a drug to ease traumatic memories - Mental Health - MSNBC.com". http://www.msnbc.msn.com/id/10806799/. Retrieved 2007-06-30.
  10. ^ Brunet A, Orr SP, Tremblay J, Robertson K, Nader K, Pitman RK (2007). "Effect of post-retrieval propranolol on psychophysiologic responding during subsequent script-driven traumatic imagery in post-traumatic stress disorder". Journal of Psychiatric Research 42 (6): 503–6. doi:10.1016/j.jpsychires.2007.05.006. PMID 17588604.
  11. ^ Brunet A, Orr SP, Tremblay J, Robertson K, Nader K, Pitman RK (May 2008). "Effect of post-retrieval propranolol on psychophysiologic responding during subsequent script-driven traumatic imagery in post-traumatic stress disorder". Journal of Psychiatric Research 42 (6): 503–6. doi:10.1016/j.jpsychires.2007.05.006. PMID 17588604.
  12. ^ http://www.cbsnews.com/stories/2006/11/22/60minutes/main2205629.shtml?tag=contentMain;contentBody A pill to forget
  13. ^ Kolber, Adam J. (2006). "Therapeutic Forgetting: The Legal and Ethical Implications of Memory Dampening.". Vanderbilt Law Review, San Diego Legal Studies Paper No. 07-37. 59: 1561.
  14. ^ "β-adrenergic Blocker and a COX2 Inhibitor for Prevention of Colorectal Cancer Recurrence". http://clinicaltrials.gov/ct2/show/NCT00888797. Retrieved 2010-07-19.
  15. ^ Léauté-Labrèze C et al. (June 2008). "Propranolol for Severe Hemangiomas of Infancy". New England Journal of Medicine 358 (24): 2649–2651. doi:10.1056/NEJMc0708819. PMID 18550886.
  16. ^ Herndon DN et al. (October 2001). "Reversal of Catabolism by Beta-Blockade after Severe Burns". New England Journal of Medicine 345 (17): 1223–1229. doi:10.1056/NEJMoa010342. PMID 11680441.
  17. ^ Ohnishi S, Sadanaga K, Katsuoka M, Weidanz W (1990). "Effects of membrane acting-drugs on plasmodium species and sickle cell erythrocytes". Mol Cell Biochem 91 (1-2): 159–65. doi:10.1007/BF00228091. PMID 2695829.
  18. ^ Singh N, Puri S (2000). "Interaction between chloroquine and diverse pharmacological agents in chloroquine resistant Plasmodium yoelii nigeriensis". Acta Trop 77 (2): 185–93. doi:10.1016/S0001-706X(00)00133-9. PMID 11080509.
  19. ^ Murphy S, Harrison T, Hamm H, Lomasney J, Mohandas N, Haldar K (December 2006). "Erythrocyte G protein as a novel target for malarial chemotherapy". PLoS Med 3 (12): e528. doi:10.1371/journal.pmed.0030528. PMC 1716186. PMID 17194200.
  20. ^ a b c Rossi S, editor. Australian Medicines Handbook 2006. Adelaide: Australian Medicines Handbook; 2006.
  21. ^ Young R, Glennon RA (April 2009). "S(-)Propranolol as a discriminative stimulus and its comparison to the stimulus effects of cocaine in rats". Psychopharmacology (Berl.) 203 (2): 369–82. doi:10.1007/s00213-008-1317-2. PMID 18795268.
  22. ^ Wang, D. W., Mistry, A. M., Kahlig, K. M., Kearney, J. A., Xiang, J., and George, A. L. Jr. (2010). Propranolol blocks cardiac and neuronal voltage-gated sodium channels. Front. Pharmacol. 1:144. doi: 10.3389/fphar.2010.00144.
  23. ^ Bankston, J. R., and Kass, R. S. (2010). Molecular determinants of local anesthetic action of beta-blocking drugs: implications for therapeutic management of long QT syndrome variant 3. J. Mol. Cell. Cardiol. 48, 246–253.
  24. ^ Desaphy, J. F., Pierno, S., De Luca, A., Didonna, P., and Camerino, D. C. (2003). Different ability of clenbuterol and salbutamol to block sodium channels predicts their therapeutic use in muscle excitability disorders. Mol. Pharmacol. 63, 659–670.
  25. ^ van Harten J (1995). "Overview of the pharmacokinetics of fluvoxamine". Clinical Pharmacokinetics 29 (Suppl 1): 1–9. doi:10.2165/00003088-199500291-00003. PMID 8846617.
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  27. ^ *Joint Formulary Committee. British National Formulary, 47th edition. London: British Medical Association and Royal Pharmaceutical Society of Great Britain; 2004.

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· · Serotonergics
5-HT1 receptor ligands
5-HT1A Agonists: Azapirones: AlnespironeBinospironeBuspironeEnilospironeEptapironeGepironeIpsapironePerospironeRevospironeTandospironeTiospironeUmespironeZalospirone; Antidepressants: EtoperidoneNefazodoneTrazodone; Antipsychotics: AripiprazoleAsenapineClozapineQuetiapineZiprasidone; Ergolines: DihydroergotamineErgotamineLisurideMethysergideLSD; Tryptamines: 5-CT5-MeO-DMT5-MTBufoteninDMTIndorenatePsilocinPsilocybin; Others: 8-OH-DPATAdatanserinBefiradolBMY-14802CannabidiolDimemebfeEbalzotanEltoprazine • F-11,461 • F-12,826 • F-13,714 • F-14,679 • F-15,063 • F-15,599FlesinoxanFlibanserinLesopitronLu AA21004LY-293,284 • LY-301,317 • MKC-242NBUMPOsemozotanOxaflozanePardoprunoxPiclozotanRauwolscineRepinotanRoxindoleRU-24,969 • S 14,506 • S-14,671S-15,535Sarizotan • SSR-181,507 • SunepitronU-92,016-AUrapidilVilazodoneXaliprodenYohimbine Antagonists: Antipsychotics: IloperidoneRisperidoneSertindole; Beta blockers: AlprenololCyanopindololIodocyanopindololOxprenolol • Pindobind • PindololPropranololTertatolol; Others: AV965 • BMY-7,378CSP-2503DotarizineFlopropione • GR-46611 • IsamoltaneLecozotanMefwayMetitepine/MethiothepinMPPFNAN-190PRX-00023RobalzotanS-15535SB-649,915 • SDZ 216-525 • SpiperoneSpiramideSpiroxatrineUH-301WAY-100,135WAY-100,635Xylamidine
5-HT1B Agonists: Lysergamides: DihydroergotamineErgotamineMethysergide; Piperazines: EltoprazineTFMPP; Triptans: AvitriptanEletriptanSumatriptanZolmitriptan; Tryptamines: 5-CT5-MT; Others: CGS-12066ACP-93,129CP-94,253 • CP-135,807 • RU-24,969 Antagonists: Lysergamides: Metergoline; Others: AR-A000002ElzasonanGR-127,935IsamoltaneMetitepine/MethiothepinSB-216,641 • SB-224,289 • SB-236,057 • Yohimbine
5-HT1D Agonists: Lysergamides: DihydroergotamineMethysergide; Triptans: AlmotriptanAvitriptanEletriptanFrovatriptanNaratriptanRizatriptanSumatriptanZolmitriptan; Tryptamines: 5-CT5-Ethyl-DMT5-MT5-(Nonyloxy)tryptamine; Others: CP-135,807 • CP-286,601 • GR-46611 • L-694,247 • L-772,405 • PNU-109,291 • PNU-142,633 Antagonists: Lysergamides: Metergoline; Others: AlniditanBRL-15,572ElzasonanGR-127,935Ketanserin • LY-310,762 • LY-367,642 • LY-456,219 • LY-456,220 • Metitepine/MethiothepinRitanserinYohimbineZiprasidone
5-HT1E Agonists: Lysergamides: Methysergide; Triptans: Eletriptan; Tryptamines: BRL-54443Tryptamine Antagonists: Metitepine/Methiothepin
5-HT1F Agonists: Triptans: EletriptanNaratriptanSumatriptan; Tryptamines: 5-MT; Others: BRL-54443LasmiditanLY-334,370 Antagonists: Metitepine/Methiothepin
5-HT2 receptor ligands
5-HT2A Agonists: Lysergamides: ALD-52ErgometrineLisurideLA-SS-AzLSDLSD-PipLysergic acid 2-butyl amideLysergic acid 3-pentyl amideMethysergide; Phenethylamines: 25I-NBF25I-NBMD25I-NBOH25I-NBOMe2C-B2C-B-FLY2CB-Ind2C-C-NBOMe2C-E2C-I2C-TFM-NBOMe2C-T-22C-T-72C-T-212CBCB-NBOMe2CBFly-NBOMeBromo-DragonFLYDOBDOCDOIDOMMDAMDMAMescalineTCB-2TFMFly; Piperazines: BZPQuipazineTFMPP; Tryptamines: 5-CT5-MeO-α-ET5-MeO-α-MT5-MeO-DET5-MeO-DiPT5-MeO-DMT5-MeO-DPT5-MTα-ETα-Methyl-5-HTα-MTBufoteninDETDiPTDMTDPTPsilocinPsilocybin; Others: AL-34662AL-37350ADimemebfeMedifoxamineOxaflozanePNU-22394RH-34 Antagonists: Atypical antipsychotics: AmperozideAripiprazoleCarpipramineClocapramineClozapineGevotrolineIloperidoneMelperoneMosapramineOlanzapinePaliperidonePimozideQuetiapineRisperidoneSertindoleZiprasidoneZotepine; Typical antipsychotics: LoxapinePipamperone; Antidepressants: AmitriptylineAmoxapineAptazapineEtoperidoneMianserinMirtazapineNefazodoneTrazodone; Others: 5-I-R91150 • AC-90179 • AdatanserinAltanserinAMDA • APD-215 • BlonanserinCinanserinCSP-2503CyproheptadineDeramciclaneDotarizineEplivanserinEsmirtazapineFananserinFlibanserinKetanserinKML-010LubazodoneMepiprazoleMetitepine/MethiothepinNanteninePimavanserinPizotifenPruvanserinRauwolscineRitanserinS-14,671SarpogrelateSetoperoneSpiperoneSpiramide • SR-46349B • VolinanserinXylamidineYohimbine
5-HT2B Agonists: Oxazolines: 4-MethylaminorexAminorex; Phenethylamines: ChlorphentermineCloforexDOBDOCDOIDOMFenfluramineMDAMDMANorfenfluramine; Tryptamines: 5-CT5-MTα-Methyl-5-HT; Others: BW-723C86CabergolinemCPPPergolidePNU-22394Ro60-0175 Antagonists: AgomelatineAsenapine • EGIS-7625 • KetanserinLisurideLY-272,015Metitepine/MethiothepinPRX-08066RauwolscineRitanserinRS-127,445Sarpogrelate • SB-200,646 • SB-204,741 • SB-206,553 • SB-215,505 • SB-221,284 • SB-228,357 • SDZ SER-082TegaserodYohimbine
5-HT2C Agonists: Phenethylamines: 2C-B2C-E2C-I2C-T-22C-T-72C-T-21DOBDOCDOIDOMMDAMDMAMescaline; Piperazines: AripiprazolemCPPTFMPP; Tryptamines: 5-CT5-MeO-α-ET5-MeO-α-MT5-MeO-DET5-MeO-DiPT5-MeO-DMT5-MeO-DPT5-MTα-ETα-Methyl-5-HTα-MTBufoteninDETDiPTDMTDPTPsilocinPsilocybin; Others: A-372,159AL-38022ACP-809,101DimemebfeLorcaserinMedifoxamine • MK-212 • Org 12,962ORG-37,684OxaflozanePNU-22394Ro60-0175Ro60-0213Vabicaserin • WAY-629 • WAY-161,503 • YM-348 Antagonists: Atypical antipsychotics: ClozapineIloperidoneMelperoneOlanzapinePaliperidonePimozideQuetiapineRisperidoneSertindoleZiprasidoneZotepine; Typical antipsychotics: ChlorpromazineLoxapinePipamperone; Antidepressants: AgomelatineAmitriptylineAmoxapineAptazapineEtoperidoneFluoxetineMianserinMirtazapineNefazodoneNortriptylineTrazodone; Others: AdatanserinCinanserinCyproheptadineDeramciclaneDotarizineEltoprazineEsmirtazapine • FR-260,010 • KetanserinKetotifenLatrepirdineLu AA24530Metitepine/MethiothepinMethysergidePizotifenRitanserinRS-102,221S-14,671 • SB-200,646 • SB-206,553 • SB-221,284 • SB-228,357 • SB-242,084 • SB-243,213 • SDZ SER-082Xylamidine
5-HT3, 5-HT4, 5-HT5, 5-HT6, 5-HT7 ligands
5-HT3 Agonists: Piperazines: BZPQuipazine; Tryptamines: 2-Methyl-5-HT5-CT; Others: ChlorophenylbiguanideButanolEthanolHalothaneIsofluraneRS-56812 • SR-57,227 • SR-57,227-A • TolueneTrichloroethaneTrichloroethanolTrichloroethylene • YM-31636 Antagonists: Antiemetics: AS-8112AlosetronAzasetronBatanoprideBemesetronCilansetronDazoprideDolasetronGranisetronLerisetronOndansetronPalonosetronRamosetronRenzaprideTropisetronZacoprideZatosetron; Atypical antipsychotics: ClozapineOlanzapineQuetiapine; Tetracyclic antidepressants: AmoxapineMianserinMirtazapine; Others: CSP-2503 • ICS-205,930 • Lu AA21004Lu AA24530 • MDL-72,222 • MemantineNitrous OxideRicasetronSevofluraneThujoneXenon
5-HT4 Agonists: Gastroprokinetic Agents: CinitaprideCisaprideDazoprideMetoclopramideMosapridePrucaloprideRenzaprideTegaserodVelusetragZacopride; Others: 5-MTBIMU8 • CJ-033,466 • PRX-03140 • RS-67333 • RS-67506 • SL65.0155Antagonists: GR-113,808 • GR-125,487 • L-LysinePiboserod • RS-39604 • RS-67532 • SB-203,186
5-HT5A Agonists: Lysergamides: ErgotamineLSD; Tryptamines: 5-CT; Others: Valerenic Acid Antagonists: AsenapineLatrepirdineMetitepine/MethiothepinRitanserinSB-699,551 * Note that the 5-HT5B receptor is not functional in humans.
5-HT6 Agonists: Lysergamides: DihydroergotamineErgotamineLisurideLSDMesulergineMetergolineMethysergide; Tryptamines: 2-Methyl-5-HT5-BT5-CT5-MTBufotenin • E-6801 • E-6837 • EMD-386,088EMDT • LY-586,713 • N-Methyl-5-HT • Tryptamine; Others: WAY-181,187WAY-208,466 Antagonists: Antidepressants: AmitriptylineAmoxapineClomipramineDoxepinMianserinNortriptyline; Atypical antipsychotics: AripiprazoleAsenapineClozapine • Fluperlapine • IloperidoneOlanzapineTiospirone; Typical antipsychotics: ChlorpromazineLoxapine; Others: BGC20-760 • BVT-5182 • BVT-74316 • EGIS-12,233 • GW-742,457 • KetanserinLatrepirdineLu AE58054Metitepine/MethiothepinMS-245PRX-07034RitanserinRo04-6790 • Ro 63-0563 • SB-258,585SB-271,046SB-357,134SB-399,885SB-742,457
5-HT7 Agonists: Lysergamides: LSD; Tryptamines: 5-CT5-MTBufotenin; Others: 8-OH-DPATAS-19Bifeprunox • LP-12 • LP-44 • RU-24,969Sarizotan Antagonists: Lysergamides: 2-Bromo-LSD • BromocriptineDihydroergotamineErgotamineMesulergineMetergolineMethysergide; Antidepressants: AmitriptylineAmoxapineClomipramineImipramineMaprotilineMianserin; Atypical antipsychotics: AmisulprideAripiprazoleClozapineOlanzapineRisperidoneSertindoleTiospironeZiprasidoneZotepine; Typical antipsychotics: ChlorpromazineLoxapine; Others: ButaclamolEGIS-12,233Ketanserin • LY-215,840 • Metitepine/MethiothepinPimozideRitanserin • SB-258,719 • SB-258,741 • SB-269,970 • SB-656,104 • SB-656,104-A • SB-691,673 • SLV-313 • SLV-314 • Spiperone • SSR-181,507
Reuptake inhibitors
SERT Selective serotonin reuptake inhibitors (SSRIs): AlaproclateCitalopramDapoxetineDesmethylcitalopramDesmethylsertralineEscitalopramFemoxetineFluoxetineFluvoxamineIndalpineIfoxetineLitoxetineLu AA21004LubazodonePanuramineParoxetinePirandamineRTI-353SeproxetineSertralineVilazodoneZimelidine; Serotonin-norepinephrine reuptake inhibitors (SNRIs): BicifadineDesvenlafaxineDuloxetineEclanamineLevomilnacipranMilnacipranSibutramineVenlafaxine; Serotonin-norepinephrine-dopamine reuptake inhibitors (SNDRIs): BrasofensineDiclofensineDOV-102,677DOV-21,947DOV-216,303NS-2359SEP-225289SEP-227,162Tesofensine; Tricyclic antidepressants (TCAs): AmitriptylineButriptylineCianopramineClomipramineDesipramineDosulepinDoxepinImipramineLofepramineNortriptylinePipofezineProtriptylineTrimipramine; Tetracyclic antidepressants (TeCAs): Amoxapine; Piperazines: NefazodoneTrazodone; Antihistamines: BrompheniramineChlorphenamineDiphenhydramineMepyramine/PyrilaminePheniramineTripelennamine; Opioids: PethidineMethadonePropoxyphene; Others: CocaineCP-39,332CyclobenzaprineDextromethorphanDextrorphanEXP-561FezolamineMesembrineNefopamPIM-35PridefineRoxindoleSB-649,915Ziprasidone
VMAT IbogaineReserpineTetrabenazine
Releasing agents
Aminoindanes: 5-IAI • AMMI • ETAIMDAIMDMAIMMAITAI; Aminotetralins: 6-CAT8-OH-DPATMDATMDMAT; Oxazolines: 4-MethylaminorexAminorexClominorexFluminorex; Phenethylamines (also Amphetamines, Cathinones, Phentermines, etc): 2-Methyl-MDA4-CAB4-FA4-FMA4-HA4-MTA5-APDB5-Methyl-MDA6-APDB6-Methyl-MDA • AEMMA • AmiflamineBDBBOHBrephedroneButyloneChlorphentermineCloforexAmfepramoneMetamfepramoneDFMDADMADMMAEBDBEDMAEthyloneEtolorexFenfluramine (Dexfenfluramine) • FlephedroneIAPIMPLophophineMBDBMDAMDEAMDHMAMDMAMDMPEAMDOHMDPEAMephedroneMethedroneMethyloneMMAMMDAMMDMA • MMMA • NAPNorfenfluramine • 4-TFMA • pBApCApIAPMAPMEAPMMATAP; Piperazines: 2C-B-BZP • 2-BZP • 3-MeOPP • BZP • DCPP • MBZPmCPPMDBZPMeOPPMepiprazolepCPPpFPP • pTFMPP • TFMPP; Tryptamines: 4-Methyl-αET4-Methyl-αMT5-CT5-MeO-αET5-MeO-αMT5-MTαETαMTDMTTryptamine (itself); Others: IndeloxazineTramadolViqualine
Enzyme inhibitors
Anabolism
TPH AGN-2979Fenclonine
AAAD BenserazideCarbidopaGenisteinMethyldopa
Catabolism
MAO Nonselective: BenmoxinCaroxazoneEchinopsidineFurazolidoneHydralazineIndantadolIproclozideIproniazidIsocarboxazidIsoniazidLinezolidMebanazineMetfendrazineNialamideOctamoxinParaxazonePhenelzinePheniprazinePhenoxypropazinePivalylbenzhydrazineProcarbazineSafrazineTranylcypromine; MAO-A Selective: AmiflamineBazinaprineBefloxatone • Befol • BrofaromineCimoxatoneClorgiline • Esuprone • Harmala alkaloids (Harmine, Harmaline, Tetrahydroharmine, Harman, Norharman, etc) • Methylene BlueMetralindoleMinaprineMoclobemidePirlindoleSercloremineTetrindoleToloxatoneTyrima
Others
Precursors L-Tryptophan5-HTP
Cofactors Ferrous iron (Fe2+) • Magnesium (Mg2+) • TetrahydrobiopterinVitamin B3 (Niacin, NicotinamideNADPH) • Vitamin B6 (Pyridoxine, Pyridoxamine, PyridoxalPyridoxal phosphate) • Vitamin B9 (Folic AcidTetrahydrofolic acid) • Vitamin C (Ascorbic acid) • Zinc (Zn2+)
Others Activity enhancers: BPAPPPAP; Reuptake enhancers: Tianeptine

Categories: Anxiolytics | Beta blockers | Scottish inventions | Naphthol ethers | Alcohols | Amines

 

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