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Phenacemide

Phenacemide structure

Phenacemide 

structure
  • CAS No:

    63-98-9

  • Formula:

    C9H10N2O2

  • Chemical Name:

    Phenacemide

  • Synonyms:

    Benzeneacetamide,N-(aminocarbonyl)-;Urea,(phenylacetyl)-;N-(Aminocarbonyl)benzeneacetamide;Epiclase;Phacetur;Phenacemide;Phenacetylcarbamide;Phenacetylurea;(Phenylacetyl)urea;α-Phenylacetylurea;Cetylureum;Phenacetur;Phenicarb;Fenacemid;Phenutal;Phenacalum;Neophedan;Phetylureum;NSC 39458;(2-Phenylacetyl)urea

  • Categories:

    Active Pharmaceutical Ingredients  >  Nervous System Drugs

Description

white to yellow powder


Solid


Phenacemide is a member of acetamides.|Phenacemide is used to control certain seizures in the treatment of epilepsy. This medicine acts on the central nervous system (CNS) to reduce the number and severity of seizures.

Phenacemide Basic Attributes

178.19

178.19

200-570-2

PAI7J52V09

757266|39458

DTXSID6023442

CRYSTALS FROM ALCOHOL|WHITE TO PRACTICALLY WHITE, FINE, CRYSTALLINE POWDER|WHITE TO CREAMY WHITE CRYSTALLINE SOLID

N - Nervous system

29242998

Characteristics

72.2

0.8

Solid

1.2221 (rough estimate)

212-216 °C

208 °C

1.5600 (estimate)

182mg/L(temperature not stated)

Store below 40 deg C (104 deg F), preferably between 15 and 30 deg C (59 and 86 deg F), unless otherwise specified by manufacturer. Store in a well-closed container. /Phenacemide Tablets USP/

LD50 in mice, rats (mmol/kg): 5.54, >10 orally (Nakamura)

ODORLESS, OR PRACTICALLY SO

TASTELESS

128.3 Ų [M+H]+ [CCS Type: TW, Method: calibrated with polyalanine and drug standards]

Safety Information

22

Xn

Commercially available phenacemide tablets have an expiration date of 5 years following the data of manufacture.

P264, P270, P301+P312, P330, P501

H302

Manufacturers, packers, and distributors of drug and drug products for human use are responsible for complying with the labeling, certification, and usage requirements as prescribed by the Federal Food, Drug, and Cosmetic Act, as amended (secs 201-902, 52 Stat. 1040 et seq., as amended; 21 U.S.C. 321-392).

Troupin AS; Drug Saf 14: 299-328 (1996). Dose related adverse effects of anticonvulsants.|Badalian LO, et al; Zh Nevropatol Psikhiatr Im S S Korsakova 93 (1): 90-3 (1993). Epilepsy and pregnancy a review.|Dostert P, Benedetti MS; Encephale 10 (5): 199-209 (1984). The first part of this article presents the mechanisms for the hepatotoxicity of xenobiotics known to date, in particular the interference with the metabolism of bilirubin, hepatotoxicity arising from the metabolism of drugs as well as hepatotoxicity due to immunological factors. In the second part, the classification of the diverse hepatic diseases due to drugs is presented: acute injury (cytotoxic, cholestatic, mixed) and chronic damage. The extrahepatic manifestations of drug induced hepatic injury are also mentioned. Finally, in the third part, ... the principal cases of hepatotoxicity caused by psychotropic drugs /is presented/: antidepressants (MAOIs and tricyclics), neuroleptics, phenothiazines, thioxanthenes, butyrophenones and benzamides) and anxiolytics, and ... the anticonvulsants (phenytoin, phenacemide, oxazolidinediones, carbamazepine and valproic acid). ...

|Warning|H302 (100%): Harmful if swallowed [Warning Acute toxicity, oral]|P264, P270, P301+P312, P330, and P501|Aggregated GHS information provided by 38 companies from 1 notifications to the ECHA C&L Inventory.

Toxicity

Oral, mouse: LD50 = 987 mg/kg; Oral, rabbit: LD50 = 2500 mg/kg; Oral, rat: LD50 = 1600 mg/kg

Concurrent use of alcohol or CNS depression-producing medications with phenacemide may enhance CNS depression.|There is a risk of additive toxicity when other anticonvulsants (especially ethotoin) are used concurrently with phenacemide. Concurrent use of ethotoin with phenacemide has been reported to cause paranoid symptoms. Extreme caution is recommended during concurrent use of phenacemide with other anticonvulsants.

Oral LD50 mice = 5.54 mmol/kg|Oral LD50 rat = >10 mmol/kg

Drug Information

Used to control certain seizures in the treatment of epilepsy.

Anticonvulsants|PHENACEMIDE SHOULD BE USED ONLY IN THERAPY OF TEMPORAL LOBE EPILEPSY REFRACTORY TO OTHER AGENTS, IN ASSOCIATION WITH OTHER DRUGS, & ONLY IF ADEQUATE SUPERVISION & MONITORING ARE POSSIBLE.|PHENACEMIDE IS EFFECTIVE ANTICONVULSANT THAT MAY BE USEFUL IN...GENERALIZED TONIC-CLONIC, ABSENCE, & MIXED SEIZURES.|MEDICATION (VET): ANTICONVULSANT. USE/D/ IN CHOREA & VARIOUS EPILEPTIFORM CONVULSIVE DISORDERS OF DOGS USUALLY IN COMBINATION WITH SMALL DOSES OF PHENOBARBITAL.|For more Therapeutic Uses (Complete) data for PHENACEMIDE (6 total), please visit the HSDB record page.

Phenacemide has produced hepatitis and jaundice which have proceeded to fatal liver necrosis. Severe bone marrow depression, including fatalities resulting from aplastic anemia or agranulocytosis has also occurred in association with phenacemide therapy. Leukopenia (leukocyte count of 4000/cu mm or less) has been the most commonly observed effect.|Phenacemide has also produced acute psychoses, often with suicidal tendencies. Phenacemide-induced psychological disturbances subside promptly when the drug is discontinued. Some authorities believe that phenacemide merely exacerbates or intensifies previously existing personality disorders.|Phenacemide has occasionally produced nephritis characterized by marked albuminuria. A substantial increase in serum creatinine concentration in the absence of elevated BUN or any other evidence of renal disease may also occur in some patients receiving phenacemide.|Other adverse reactions which have occurred during phenacemide therapy are anorexia and weight loss, drowsiness, fatigue, dizziness, insomnia, headache, paresthesia, fever, muscle pain, palpitations, and rashes.|For more Drug Warnings (Complete) data for PHENACEMIDE (12 total), please visit the HSDB record page.

Phenacemide is a ureal anticonvulsant indicated for control of severe epilepsy, particularly mixed forms of complex partial (psychomotor or temporal lobe) seizures, refractory to other anticonvulsants. Phenacemide elevates the threshold for minimal electroshock convulsions and abolishes the tonic phase of maximal electroshock seizures. It also prevents or modifies seizures induced by pentylenetetrazol or other convulsants.

Almost completely absorbed.|PHENACEMIDE IS ALMOST COMPLETELY ABSORBED FROM GI TRACT. ... UNCHANGED DRUG IS NOT EXCRETED IN URINE... PLASMA CONCN ASSOCIATED WITH EFFICACY & SAFETY HAVE NOT BEEN ESTABLISHED.|COMPARISON OF EXCRETION OF (14)C-PHENACETYLUREA IN DIFFERENT SPECIES SHOWED DIFFERENCES IN BIOTRANSFORMATION. AFTER ORAL DOSE, RATS EXCRETED 63% OF (14)C IN 48-HR URINE, GUINEA-PIGS 56%, RABBITS 87%, & MICE 62%.

Metabolized in the liver by hepatic microsomal enzymes, where it is inactivated by p-hydroxylation.|BIOTRANSFORMATION OF PHENACETYLUREA IN RABBITS GAVE PHENYLACETIC ACID & PHENACETURIC ACID BY HYDROLYSIS OF UREIDO-GROUP, & 4-HYDROXYPHENACETYLUREA & 3-METHOXY-4-HYDROXYPHENACETYLUREA BY SUCCESSIVE RING-HYDROXYLATION & METHYLATION OF PHENOLIC HYDROXY-GROUP. PHENACETYLUREA N-GLUCURONIDE...DID NOT APPEAR TO BE FORMED...|BIOTRANSFORMATION BY HEPATIC MICROSOMAL ENZYMES INCL INACTIVATION BY PARAHYDROXYLATION OF PHENYL SUBSTITUENT; RING CLOSURE TO FORM HYDANTOIN DOES NOT OCCUR.

22-25 hours.|In one study using 1 control subject and 3 epileptic patients, the half-life of phenacemide was demonstrated to be 22 to 25 hours.

Phenacemide binds to and blocks neuronal sodium channels or voltage sensitive calcium channels. This blocks or suppresses neuronal depolarization and hypersynchronization. Hypersynchronization is what often causes seizures.|IT ACTS BOTH TO INCR THRESHOLD FOR CONVULSIVE STIMULI REACHING CNS AS WELL AS PREVENTING SPREAD OF SEIZURE DISCHARGE FROM INITIATING FOCI.|...HAS BROAD SPECTRUM OF ANTICONVULSANT ACTIVITY IN EXPTL ANIMALS. IN NONTOXIC DOSES, IT ABOLISHES TONIC EXTENSOR PHASE OF MAX ELECTROSHOCK SEIZURES, ELEVATES THRESHOLD FOR ELECTROSHOCK CONVULSIONS IN NORMAL & HYPONATREMIC ANIMALS, & PREVENTS OR MODIFIES PENTYLENETETRAZOL SEIZURES...|The mechanism of action in humans has not been established. However, in animals, at doses well below those causing neurological signs, phenacemide elevates the threshold for minimal electroshock convulsions and abolishes the tonic phase of maximal electroshock seizures. It also prevents or modified seizures induced by pentylenetetrazol or other convulsants.

Initial treatment should include gastric lavage and/or induction of emesis and general supportive measures. The patient's renal, hepatic, and hematologic status, and mental state should be carefully evaluated following recovery from acute overdosage.|There is no specific antidote for phenacemide overdose. Recommended treatment consists of the following. To decrease absorption - evacuation of stomach by induction of emesis or lavage. Supportive care - patients in whom intentional overdose is confirmed or suspected should be referred for psychiatric consultation. Following recovery, evaluation of hepatic and renal function, mental state, and blood-forming organs should be performed.

Overdosage of phenacemide produces excitement or mania followed by drowsiness, ataxia, and coma which has persisted for nearly 24 hours.|Clinical effects of overdose /of phenacemide/ include excitement or mania (unusual nervousness or irritability), ataxia (clumsiness or unsteadiness), and severe drowsiness.|OBJECTIVE: To report two cases of incr true serum creatinine (Scr) without renal failure caused by an anticonvulsant drug, phenacemide, and to discuss the possible mechanisms. CASE SUMMARY: Two patients treated with phenacemide were investigated for markedly incr Scr and decr creatinine clearance (Clcr) values. Glomerular filtration rates, as determined by (125)I-iothlalamate clearance, were normal in both patients and analytical interferences with the Jaffe reaction were excluded. After discontinuation of the drug, phenacemide concn became undetectable within 2 days but it took 7-14 days for Scr and Clcr to return to normal values. DISCUSSION: The Scr increase with phenacemide (120-170 percent) was higher than that reported with cimetidine or trimethoprim (10-40%) and could not be explained solely by inhibition of the tubular secretion of creatinine. The hypothesis of an overproduction of creatinine caused by phenacemide was ruled out by experimental studies in rats. Creatinine incr in tissues was lower than that in the serum of rats given phenacemide. In vitro creatinine influx into red blood cells was inhibited in a dose dependent way by phenacemide. CONCLUSIONS: Incr Scr concn in these patients could be related to an inhibition of transport and a decr in creatinine volume of distribution. Creatinine concn should not be considered when dosage adjustments of renally eliminated drugs are being calculated for patients with such metabolic interferences.|Three adolescent patients with severe seizure disorders were treated with phenacemide. All three patients showed elevated serum creatinine and normal blood urea nitrogen values while on phenacemide. Simultaneous urea and creatinine clearance studies performed on each patient demonstrated normal urea clearances and decr creatinine clearances. Inulin clearance performed in one patient was normal. The medication was discontinued in two of the patients because of co-existing neutropenia. Serum creatinine values returned to normal after phenacemide treatment was terminated. The elevation in serum creatinine values with phenacemide appears to be dose related, reversible, and unrelated to impairment of glomerular filtration.|The Hungarian Case-Control Surveillance of Congenital Anomalies from 1980-1987, involved 10,698 malformed cases and 21,546 non-malformed controls. Ninety-five pregnant women were treated by 144 anticonvulsants excluding diazepam and barbiturates. The rate of anticonvulsant use was 2.9 times higher in pregnant women having malformed offspring than in control mothers and this difference was greater in polytherapy than in monotherapy.

(phenylacetyl)urea

Phenacemide Use and Manufacturing

Methods of Manufacturing

PREPD BY ACTION OF AQ NH3 ON PHENACETYLURETHAN: BASTERFIELD, GREIG, CAN J RES 8, 454 (1933); OF PHENACETYL CHLORIDE ON UREA: SPIELMAN ET AL, J AM CHEM SOC 70, 4189 (1948).

Uses

Anticonvulsant.

PHENACEMIDE, NF (PHENURONE), IS AVAILABLE AS 500-MG TABLETS.

THE SEPARATION & IDENTIFICATION OF ANTIEPILEPTIC COMPOUNDS BY ISOTHERMAL GAS-PHASE CHROMATOGRAPHY.|Prediction of retention in gradient elution normal phase high performance liquid chromatography with binary solvent gradients.|GLC determination of phenacemide in tablets.

... A rapid and sensitive assay for the determination of plasma phenacemide concn by high performance liquid chromatography to monitor drug levels during therapy.

Human Drugs -> FDA Approved Drug Products with Therapeutic Equivalence Evaluations (Orange Book) -> Active Ingredients|Pharmaceuticals

Computed Properties

Molecular Weight:178.19
XLogP3:0.9
Hydrogen Bond Donor Count:2
Hydrogen Bond Acceptor Count:2
Rotatable Bond Count:2
Exact Mass:178.074227566
Monoisotopic Mass:178.074227566
Topological Polar Surface Area:72.2
Heavy Atom Count:13
Complexity:198
Covalently-Bonded Unit Count:1
Compound Is Canonicalized:Yes

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