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Label Description ILX Version Created CID Modified Time CID Type Created Time Status Creator Last modified
Methohexital An intravenous anesthetic with a short duration of action that may be used for induction of anesthesia. (PubChem) Pharmacology: Methohexital, a barbiturate, is used for the induction of anesthesia prior to the use of other general anesthetic agents and for induction of anesthesia for short surgical, diagnostic, or therapeutic procedures associated with minimal painful stimuli. Little analgesia is conferred by barbiturates; their use in the presence of pain may result in excitation. Mechanism of action: Methohexital binds at a distinct binding site associated with a Cl- ionopore at the GABAA receptor, increasing the duration of time for which the Cl- ionopore is open. The post-synaptic inhibitory effect of GABA in the thalamus is, therefore, prolonged. Drug type: Approved. Small Molecule. Drug category: Anesthetics. Anesthetics, Intravenous. Barbiturates ILX:0106861 3 FDI Lab - SciCrunch.org 06/18/2018 FDI Lab - SciCrunch.org term 12/08/2016 0 NeuroLex NeuroLex
Methotrexate An antineoplastic antimetabolite with immunosuppressant properties. It is an inhibitor of tetrahydrofolate dehydrogenase and prevents the formation of tetrahydrofolate, necessary for synthesis of thymidylate, an essential component of DNA. (PubChem) Pharmacology: Methotrexate is an antineoplastic anti-metabolite. Anti-metabolites masquerade as purine or pyrimidine - which become the building blocks of DNA. They prevent these substances becoming incorporated in to DNA during the "S" phase (of the cell cycle), stopping normal development and division. Methotrexate inhibits folic acid reductase which is responsible for the conversion of folic acid to tetrahydrofolic acid. At two stages in the biosynthesis of purines and at one stage in the synthesis of pyrimidines, one-carbon transfer reactions occur which require specific coenzymes synthesized in the cell from tetrahydrofolic acid. Tetrahydrofolic acid itself is synthesized in the cell from folic acid with the help of an enzyme, folic acid reductase. Methotrexate looks a lot like folic acid to the enzyme, so it binds to it quite strongly and inhibits the enzyme. Thus, DNA synthesis cannot proceed because the coenzymes needed for one-carbon transfer reactions are not produced from tetrahydrofolic acid because there is no tetrahydrofolic acid. Methotrexate selectively affects the most rapidly dividing cells (neoplastic and psoriatic cells). Methotrexate is also indicated in the management of severe, active, classical, or definite rheumatoid arthritis. Mechanism of action: Methotrexate anti-tumor activity is a result of the inhibition of folic acid reductase, leading to inhibition of DNA synthesis and inhibition of cellular replication. The mechanism involved in its activity against rheumatoid arthritis is not known. Drug type: Approved. Small Molecule. Drug category: Abortifacient Agents. Abortifacient Agents, Nonsteroidal. Antimetabolites. Antimetabolites, Antineoplastic. Antineoplastic Agents. Antirheumatic Agents. Dermatologic Agents. Enzyme Inhibitors. Folic Acid Antagonists. Immunosuppressive Agents. Nucleic Acid Synthesis Inhibitors ILX:0106862 4 FDI Lab - SciCrunch.org 08/24/2018 FDI Lab - SciCrunch.org term 12/08/2016 0 NeuroLex troy sincomb
Methotrimeprazine A phenothiazine with pharmacological activity similar to that of both chlorpromazine and promethazine. It has the histamine-antagonist properties of the antihistamines together with central nervous system effects resembling those of chlorpromazine. (From Martindale, The Extra Pharmacopoeia, 30th ed, p604) Pharmacology: Methotrimeprazine is a phenothiazine with pharmacological activity similar to that of both chlorpromazine and promethazine. It has the histamine-antagonist properties of the antihistamines together with central nervous system effects resembling those of chlorpromazine. (From Martindale, The Extra Pharmacopoeia, 30th ed, p604) Mechanism of action: Methotrimeprazine exerts its actions through a central adrenergic-blocking, a dopamine-blocking, a serotonin-blocking, and a anticholinergic blocking. Drug type: Approved. Small Molecule. Drug category: Analgesics, Non-Narcotic. Antipsychotic Agents. Dopamine Antagonists ILX:0106863 3 FDI Lab - SciCrunch.org 06/18/2018 FDI Lab - SciCrunch.org term 12/08/2016 0 NeuroLex NeuroLex
Methoxamine An alpha-adrenergic agonist that causes prolonged peripheral vasoconstriction. It has little if any direct effect on the central nervous system. (PubChem) Pharmacology: Methoxamine is a potent sympathomimetic amine that increases both systolic and diastolic blood pressure. Methoxamine is indicated for prevention and treatment of the acute hypotensive state occurring with spinal anesthesia. It is also indicated as adjunctive treatment of hypotension due to hemorrhage, reactions to medications, surgical complications, and shock associated with brain damage due to trauma or tumor. Methoxamine acts on both 1-adrenergic receptors but appears to have no effect on -adrenergic receptors. It acts by increasing the force of the heart's pumping action as well as constricting peripheral blood vessels. Mechanism of action: Methoxamine acts through peripheral vasoconstriction by acting as a pure alpha-1 adrenergic receptor agonist, consequently increasing systemic blood pressure (both systolic and diastolic). Drug type: Approved. Small Molecule. Drug category: Adrenergic alpha-Agonists. Sympathomimetics. Vasoconstrictor Agents ILX:0106864 4 FDI Lab - SciCrunch.org 08/24/2018 FDI Lab - SciCrunch.org term 12/08/2016 0 NeuroLex troy sincomb
Methoxsalen A naturally occurring furocoumarin compound found in several species of plants, including Psoralea corylifolia. It is a photoactive substance that forms DNA adducts in the presence of ultraviolet A irradiation. (PubChem) Pharmacology: Methoxsalen selectively inhibits the synthesis of deoxyribonucleic acid (DNA). The guanine and cytosine content correlates with the degree of Methoxsalen-induced cross-linking. At high concentrations of the drug, cellular RNA and protein synthesis are also suppressed. Mechanism of action: After activation it binds preferentially to the guanine and cytosine moieties of DNA, leading to cross-linking of DNA, thus inhibiting DNA synthesis and function. Drug type: Approved. Small Molecule. Drug category: Antineoplastic Agents. Cross-Linking Reagents. Photosensitizing Agents. Pigmenting Agents ILX:0106865 3 FDI Lab - SciCrunch.org 06/18/2018 FDI Lab - SciCrunch.org term 12/08/2016 0 NeuroLex NeuroLex
Methoxychlor Organic Compound;Pesticide;Aromatic Hydrocarbon;Organochloride; Methoxychlor is a manufactured organochlorine used as an insecticide against flies, mosquitoes, cockroaches, chiggers, and a wide variety of other insects. It is used on agricultural crops and livestock, and in animal feed, barns, grain storage bins, home garden, and on pets. ILX:0106866 3 FDI Lab - SciCrunch.org 06/18/2018 FDI Lab - SciCrunch.org term 12/08/2016 0 NeuroLex NeuroLex
Methoxyflurane An inhalation anesthetic. Currently, methoxyflurane is rarely used for surgical, obstetric, or dental anesthesia. If so employed, it should be administered with nitrous oxide to achieve a relatively light level of anesthesia, and a neuromuscular blocking agent given concurrently to obtain the desired degree of muscular relaxation. (From AMA Drug Evaluations Annual, 1994, p180) Pharmacology: Methoxyflurane is a general inhalation anesthetic used for induction and maintenance of general anesthesia. It induces muscle relaxation and reduces pains sensitivity by altering tissue excitability. It does so by decreasing the extent of gap junction mediated cell-cell coupling and altering the activity of the channels that underlie the action potential. Mechanism of action: Methoxyflurane induces a reduction in junctional conductance by decreasing gap junction channel opening times and increasing gap junction channel closing times. Methoxyflurane also activates calcium dependent ATPase in the sarcoplasmic reticulum by increasing the fluidity of the lipid membrane. It also appears to bind the D subunit of ATP synthase and NADH dehydogenase. Methoxyflurane also binds to the GABA receptor, the large conductance Ca2+ activated potassium channel, the glutamate receptor and the glycine receptor. Drug type: Approved. Small Molecule. Drug category: Anesthetics, Inhalation ILX:0106867 3 FDI Lab - SciCrunch.org 06/18/2018 FDI Lab - SciCrunch.org term 12/08/2016 0 NeuroLex NeuroLex
Methyclothiazide A thiazide diuretic with properties similar to those of hydrochlorothiazide. (From Martindale, The Extra Pharmacopoeia, 30th ed, p825) Pharmacology: Methyclothiazide, a diuretic-antihypertensive agent, is a member of the benzothiadiazine (thiazide) class of drugs. Methyclothiazide has a per mg natriuretic activity approximately 100 times that of the prototype thiazide, chlorothiazide. At maximal therapeutic dosages, all thiazides are approximately equal in their diuretic/natriuretic effects. Like other benzothiadiazines, methyclothiazide also has antihypertensive properties, and may be used for this purpose either alone or to enhance the antihypertensive action of other drugs. Mechanism of action: Methyclothiazide appears to block the active reabsorption of chloride and possibly sodium in the ascending loop of Henle, altering electrolyte transfer in the proximal tubule. This results in excretion of sodium, chloride, and water and, hence, diuresis. As a diuretic, methyclothiazide inhibits active chloride reabsorption at the early distal tubule via the Na-Cl cotransporter, resulting in an increase in the excretion of sodium, chloride, and water. Thiazides like methyclothiazide also inhibit sodium ion transport across the renal tubular epithelium through binding to the thiazide sensitive sodium-chloride transporter. This results in an increase in potassium excretion via the sodium-potassium exchange mechanism. The antihypertensive mechanism of methyclothiazide is less well understood although it may be mediated through its action on carbonic anhydrases in the smooth muscle or through its action on the large-conductance calcium-activated potassium (KCa) channel, also found in the smooth muscle. Drug type: Approved. Small Molecule. Drug category: Diuretics. Diuretics, Thiazide. Sodium Chloride Symporter Inhibitors ILX:0106868 3 FDI Lab - SciCrunch.org 06/18/2018 FDI Lab - SciCrunch.org term 12/08/2016 0 NeuroLex NeuroLex
Methyl aminolevulinate Methyl aminolevulinate is a prodrug that is metabolised to Protoporphyrin IX (a photosensitizer) used in photodynamic therapy. Pharmacology: After topical application of methyl aminolevulinate, porphyrins will accumulate intracellularly in the treated skin lesions. The intracellular porphyrins (including PpIX) are photoactive, fluorescing compounds and, upon light activation in the presence of oxygen, singlet oxygen is formed which causes damage to cellular compartments, in particular the mitochondria. Light activation of accumulated porphyrins leads to a photochemical reaction and thereby phototoxicity to the light-exposed target cells. Mechanism of action: Photosensitization following application of methyl aminolevulinate cream occurs through the metabolic conversion of methyl aminolevulinate (prodrug) to photoactive porphyrins (PAP), which accumulates in the skin lesions to which the cream has been applied. When exposed to light of appropriate wavelength and energy, the accumulated photoactive porphyrins produce a photodynamic reaction, resulting in a cytotoxic process dependent upon the simultaneous presence of oxygen. The absorption of light results in an excited state of porphyrin molecules, and subsequent spin transfer from photoactive porphyrins to molecular oxygen generates singlet oxygen, which can further react to form superoxide and hydroxyl radicals. Drug type: Approved. Small Molecule. Drug category: Antineoplastic Agents ILX:0106869 3 FDI Lab - SciCrunch.org 06/18/2018 FDI Lab - SciCrunch.org term 12/08/2016 0 NeuroLex NeuroLex
Methyldopa An alpha-2 adrenergic agonist that has both central and peripheral nervous system effects. Its primary clinical use is as an antihypertensive agent. (PubChem) Pharmacology: Methyldopa is an aromatic-amino-acid decarboxylase inhibitor in animals and in man. Only methyldopa, the L-isomer of alpha-methyldopa, has the ability to inhibit dopa decarboxylase and to deplete animal tissues of norepinephrine. In man the antihypertensive activity appears to be due solely to the L-isomer. About twice the dose of the racemate (DL-alpha-methyldopa) is required for equal antihypertensive effect. Methyldopa has no direct effect on cardiac function and usually does not reduce glomerular filtration rate, renal blood flow, or filtration fraction. Cardiac output usually is maintained without cardiac acceleration. In some patients the heart rate is slowed. Normal or elevated plasma renin activity may decrease in the course of methyldopa therapy. Methyldopa reduces both supine and standing blood pressure. Methyldopa usually produces highly effective lowering of the supine pressure with infrequent symptomatic postural hypotension. Exercise hypotension and diurnal blood pressure variations rarely occur. Mechanism of action: Although the mechanism of action has yet to be conclusively demonstrated, the antihypertensive effect of methyldopa probably is due to its metabolism to alpha-methylnorepinephrine, which then lowers arterial pressure by stimulation of central inhibitory alpha-adrenergic receptors, false neurotransmission, and/or reduction of plasma renin activity. Methyldopa has been shown to cause a net reduction in the tissue concentration of serotonin, dopamine, norepinephrine, and epinephrine. Drug type: Approved. Small Molecule. Drug category: Adrenergic alpha-Agonists. Antihypertensive Agents. Sympatholytics ILX:0106870 3 FDI Lab - SciCrunch.org 06/18/2018 FDI Lab - SciCrunch.org term 12/08/2016 0 NeuroLex NeuroLex
Methylergonovine A homolog of ergonovine containing one more CH2 group. (Merck Index, 11th ed) Pharmacology: Methylergonovine is a semisynthetic ergot alkaloid and a derivative of ergonovine and is used for the prevention and control of postpartum and post-abortion hemorrhage. In general, the effects of all the ergot alkaloids appear to results from their actions as partial agonists or antagonists at adrenergic, dopaminergic, and tryptaminergic receptors. The spectrum of effects depends on the agent, dosage, species, tissue, and experimental or physiological conditions. All of the alkaloids of ergot significantly increase the motor activity of the uterus. After small doses contractions are increased in force or frequency, or both, but are followed by a normal degree of relaxation. As the dose is increased, contractions become more forceful and prolonged, resting tonus is markedly increased, and sustained contracture can result. Mechanism of action: Methylergonovine acts directly on the smooth muscle of the uterus and increases the tone, rate, and amplitude of rhythmic contractions through binding and the resultant antagonism of the dopamine D1 receptor. Thus, it induces a rapid and sustained tetanic uterotonic effect which shortens the third stage of labor and reduces blood loss. Drug type: Approved. Small Molecule. Drug category: Oxytocics ILX:0106871 3 FDI Lab - SciCrunch.org 06/18/2018 FDI Lab - SciCrunch.org term 12/08/2016 0 NeuroLex NeuroLex
Methylphenidate A central nervous system stimulant used most commonly in the treatment of attention-deficit disorders in children and for narcolepsy. Its mechanisms appear to be similar to those of dextroamphetamine. (PubChem) Pharmacology: Methylphenidate is a central nervous system stimulant used most commonly in the treatment of attention-deficit disorders in children and for narcolepsy. Its mechanisms appear to be similar to those of dextroamphetamine. Mechanism of action: Methylphenidate blocks dopamine uptake in central adrenergic neurons by blocking dopamine transport or carrier proteins. Methylphenidate acts at the brain stem arousal system and the cerebral cortex and causes increased sympathomimetic activity in the central nervous system. Alteration of serotonergic pathways via changes in dopamine transport may result. Drug type: Approved. Investigational. Small Molecule. Drug category: Adrenergic Agents. Adrenergic Uptake Inhibitors. Central Nervous System Stimulants. Dopamine Uptake Inhibitors. Sympathomimetics ILX:0106872 3 FDI Lab - SciCrunch.org 06/18/2018 FDI Lab - SciCrunch.org term 12/08/2016 0 NeuroLex NeuroLex
Methylphenobarbital A barbiturate that is metabolized to phenobarbital. It has been used for similar purposes, especially in epilepsy, but there is no evidence mephobarbital offers any advantage over phenobarbital. (PubChem) Pharmacology: Methylphenobarbital, a barbiturate, is used in combination with acetaminophen or aspirin and caffeine for its sedative and relaxant effects in the treatment of tension headaches, migraines, and pain. Barbiturates act as nonselective depressants of the central nervous system (CNS), capable of producing all levels of CNS mood alteration from excitation to mild sedation, hypnosis, and deep coma. In sufficiently high therapeutic doses, barbiturates induce anesthesia. Mechanism of action: Methylphenobarbital binds at a distinct binding site associated with a Cl- ionopore at the GABAA receptor, increasing the duration of time for which the Cl- ionopore is open. The post-synaptic inhibitory effect of GABA in the thalamus is, therefore, prolonged. Drug type: Approved. Small Molecule. Drug category: Anticonvulsants. GABA Modulators. Hypnotics and Sedatives ILX:0106873 3 FDI Lab - SciCrunch.org 06/18/2018 FDI Lab - SciCrunch.org term 12/08/2016 0 NeuroLex NeuroLex
Methylprednisolone A prednisolone derivative with similar anti-inflammatory action. (PubChem) Pharmacology: Methylprednisolone and its derivatives, methylprednisolone sodium succinate and methylprednisolone acetate, are synthetic glucocorticoids used as antiinflammatory or immunosuppressive agents. Mechanism of action: Unbound glucocorticoids cross cell membranes and bind with high affinity to specific cytoplasmic receptors, modifying transcription and protein synthesis. By this mechanism, glucocorticoids can inhibit leukocyte infiltration at the site of inflammation, interfere with mediators of inflammatory response, and suppress humoral immune responses. The antiinflammatory actions of corticosteroids are thought to involve phospholipase A2 inhibitory proteins, lipocortins, which control the biosynthesis of potent mediators of inflammation such as prostaglandins and leukotrienes. Drug type: Approved. Small Molecule. Drug category: Adrenergic Agents. Anti-inflammatory Agents. Antiemetics. Glucocorticoids. Neuroprotective Agents ILX:0106874 3 FDI Lab - SciCrunch.org 06/18/2018 FDI Lab - SciCrunch.org term 12/08/2016 0 NeuroLex NeuroLex
Methylscopolamine A muscarinic antagonist used to study binding characteristics of muscarinic cholinergic receptors. (PubChem) Pharmacology: Methscopolamine is a muscarinic antagonist structurally similar to the neurotransmitter acetylcholine and acts by blocking the muscarinic acetylcholine receptors and is thus classified as an anticholinergic. Methscopolamine has many uses including the prevention of motion sickness. It is not clear how Methscopolamine prevents nausea and vomiting due to motion sickness. The vestibular part of the ear is very important for balance. When a person becomes disoriented due to motion, the vestibule sends a signal through nerves to the vomiting center in the brain, and vomiting occurs. Acetylcholine is a chemical that nerves use to transmit messages to each other. It is believe that Methscopolamine prevents communication between the nerves of the vestibule and the vomiting center in the brain by blocking the action of acetylcholine. Methscopolamine also may work directly on the vomiting center. Methscopolamine must be taken before the onset of motion sickness to be effective. Mechanism of action: Methscopolamine acts by interfering with the transmission of nerve impulses by acetylcholine in the parasympathetic nervous system (specifically the vomiting center). Drug type: Approved. Small Molecule. Drug category: Anticholinergic Agents. Antispasmodics. Parasympatholytics ILX:0106875 3 FDI Lab - SciCrunch.org 06/18/2018 FDI Lab - SciCrunch.org term 12/08/2016 0 NeuroLex NeuroLex
Methyprylon Methyprylon is a sedative of the piperidinedione derivative family. This medicine was used for treating insomnia, but is now rarely used as it has been replaced by newer drugs with less side effects, such as benzodiazepines. Methyprylon was withdrawn from the US market in June 1965 and the Canadian market in September 1990. (Wikipedia) Pharmacology: Methyprylon, a piperidinedione CNS depressant, is close to barbituric acid in structure, but different enough to be called a "non-barbiturate" sedative-hynotic. Methyprylon is used for insomnia and daytime tension. Methyprylon depresses the activity of muscle tissues, the heart, and the respiratory system. Mechanism of action: Methyprylon binds at a distinct binding site associated with a Cl- ionopore at the GABAA receptor, increasing the duration of time for which the Cl- ionopore is open. The post-synaptic inhibitory effect of GABA in the thalamus is, therefore, prolonged. Drug type: Approved. Illicit. Small Molecule. Withdrawn. Drug category: Sedatives and Hypnotics ILX:0106876 4 FDI Lab - SciCrunch.org 08/24/2018 FDI Lab - SciCrunch.org term 12/08/2016 0 NeuroLex troy sincomb
Methysergide An ergot derivative that is a congener of lysergic acid diethylamide. It antagonizes the effects of serotonin in blood vessels and gastrointestinal smooth muscle, but has few of the properties of other ergot alkaloids. Methysergide is used prophylactically in migraine and other vascular headaches and to antagonize serotonin in the carcinoid syndrome. (PubChem) Pharmacology: Methysergide has been shown, in vitro and in vivo, to inhibit or block the effects of serotonin, a substance which may be involved in the mechanism of vascular headaches. Serotonin has been variously described as a central neurohumoral agent or chemical mediator, as a "headache substance" acting directly or indirectly to lower pain threshold, as an intrinsic "motor hormone" of the gastrointestinal tract, and as a "hormone" involved in connective tissue reparative processes. Mechanism of action: Methysergide is serotonin antagonists acts on central nervous system (CNS), which directly stimulates the smooth muscle leading to vasoconstriction. Some alpha-adrenergic blocking activity has been reported. Suggestions have been made by investigators as to the mechanism whereby Methysergide produces its clinical effects, but this has not been finally established, although it may be related to the antiserotonin effect. Drug type: Approved. Small Molecule. Drug category: Serotonin Antagonists. Sympatholytics. Vasoconstrictor Agents ILX:0106877 4 FDI Lab - SciCrunch.org 08/24/2018 FDI Lab - SciCrunch.org term 12/08/2016 0 NeuroLex troy sincomb
Meticillin One of the penicillins which is resistant to penicillinase but susceptible to a penicillin-binding protein. It is inactivated by gastric acid so administered by injection. (PubChem) Pharmacology: Meticillin (INN, BAN) or methicillin (USAN) is a narrow spectrum beta-lactam antibiotic of the penicillin class. It is no longer clinically used. Its role in therapy has been largely replaced by flucloxacillin and dicloxacillin, however the term methicillin-resistant Staphylococcus aureus (MRSA) continues to be used to describe Staphylococcus aureus strains resistant to all penicillins. Mechanism of action: Like other beta-lactam antibiotics, meticillin acts by inhibiting the synthesis of bacterial cell walls. It inhibits cross-linkage between the linear peptidoglycan polymer chains that make up a major component of the cell wall of Gram-positive bacteria. It does this by binding to and competitively inhibiting the transpeptidase enzyme used by bacteria to cross-link the peptide (D-alanyl-alanine) used in peptidogylcan synthesis. Drug type: Approved. Small Molecule. Drug category: Anti-Bacterial Agents. Penicillins ILX:0106878 3 FDI Lab - SciCrunch.org 06/18/2018 FDI Lab - SciCrunch.org term 12/08/2016 0 NeuroLex NeuroLex
Metipranolol A beta-adrenergic antagonist effective for both beta-1 and beta-2 receptors. It is used as an antiarrhythmic, antihypertensive, and antiglaucoma agent. (PubChem) Pharmacology: Metipranolol is a beta1 and beta2 (non-selective) adrenergic receptor-blocking agent that does not have significant intrinsic sympathomimetic, direct myocardial depressant, or local anesthetic (membrane-stabilizing) activity. Metipranolol is indicated in the treatment of elevated intraocular pressure in patients with ocular hypertension or open-angle glaucoma. Metipranolol, when applied topically to the eye, has the action of reducing elevated, as well as normal, intraocular pressure, whether or not accompanied by glaucoma. Elevated intraocular pressure is a major risk factor in the pathogenesis of glaucomatous visual field loss and optic nerve damage. Metipranolol reduces intraocular pressure with little or no effect on pupil size or accommodation in contrast to the miosis which cholinergic agents are known to produce. Mechanism of action: Although it is known that metipranolol binds the beta1 and beta2 adrenergic receptors, the mechanism of metipranolol's action is not known. It has no significant intrinsic sympathomimetic activity, and has only weak local anesthetic (membrane-stabilizing) and myocardial depressant activity. It appears that the ophthalmic beta-adrenergic blocking agents reduce aqueous humor production, as demonstrated by tonography and fluorophotometry. A slight increase in aqueous humor outflow may be an additional mechanism. Drug type: Approved. Small Molecule. Drug category: Adrenergic beta-Antagonists. Anti-Arrhythmia Agents. Antihypertensive Agents. Sympatholytics ILX:0106879 4 FDI Lab - SciCrunch.org 08/24/2018 FDI Lab - SciCrunch.org term 12/08/2016 0 NeuroLex troy sincomb
Metixene Metixene (or methixene) is a anticholinergic used as an anti-parkinson drug. (Wikipedia) Pharmacology: Metixene is a tertiary antimuscarinic with actions similar to those of atropine; it also has antihistaminic and direct antispasmodic properties. It is used for the symptomatic treatment of parkinsonism, including the alleviation of the extrapyramidal syndrome induced by other drugs such as phenothiazines, but, like other antimuscarinics, it is of no value against tardive dyskinesias. Metixene has been discontinued. Mechanism of action: Parkinsonism is thought to result from an imbalance between the excitatory (cholinergic) and inhibitory (dopaminergic) systems in the corpus striatum. The mechanism of action of centrally active anticholinergic drugs such as metixene is considered to relate to competitive antagonism of acetylcholine at cholinergic receptors in the corpus striatum, which then restores the balance. Drug type: Approved. Small Molecule. Drug category: Antiparkinson Agents. Muscarinic Antagonists ILX:0106880 3 FDI Lab - SciCrunch.org 06/18/2018 FDI Lab - SciCrunch.org term 12/08/2016 0 NeuroLex NeuroLex

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