U.S. Department of Health & Human Services Divider Arrow National Institutes of Health Divider Arrow NCATS

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Showing 631 - 640 of 1946 results

Status:
US Previously Marketed
Source:
CAMOQUIN HYDROCHLORIDE by PARKE DAVIS
(1950)
Source URL:
First approved in 1950

Class (Stereo):
CHEMICAL (ACHIRAL)


Conditions:

Amodiaquine is a medication used to treat malaria, including Plasmodium falciparum malaria when uncomplicated. The mechanism of plasmodicidal action of amodiaquine is not completely certain. Like other quinoline derivatives, it is thought to inhibit heme polymerase activity. This results in accumulation of free heme, which is toxic to the parasites. The drug binds the free heme preventing the parasite from converting it to a form less toxic. This drug-heme complex is toxic and disrupts membrane function. The side effects of amodiaquine are generally minor to moderate and are similar to those of chloroquine. Rarely liver problems or low blood cell levels may occur. When taken in excess headaches, trouble seeing, seizures, and cardiac arrest may occur. After oral administration amodiaquine hydrochloride is rapidly absorbed,and undergoes rapid and extensive metabolism to desethylamodiaquine which concentrates in red blood cells. It is likely that desethylamodiaquine, not amodiaquine, is responsible for most of the observed antimalarial activity, and that the toxic effects of amodiaquine after oral administration may in part be due to desethylamodiaquine.
Status:
US Previously Marketed
First approved in 1949

Class (Stereo):
CHEMICAL (RACEMIC)



Paramethadione is an anticonvulsant in the oxazolidinedione class developed by the Abbott Laboratories, approved by the Food and Drug Administration in 1949 for the treatment of absence seizures, also called partial seizures. Paramethadione acts to reduce T-type calcium currents in thalamic neurons which has been proposed to underlie the 3-Hz spike-and-wave discharge seen on electroencephalogram (EEG) during absence seizures.
Status:
US Previously Marketed
First approved in 1946

Class (Stereo):
CHEMICAL (ACHIRAL)



Trimethadione (brand name is TRIDIONE) is an oxazolidinedione compound that was developed as an antiepileptic agent for control of petit mal seizures that are refractory to treatment with other drugs. Tridione does not modify the maximal seizure pattern in patients undergoing electroconvulsive therapy and has a sedative effect that may increase to the point of ataxia when excessive doses are used. Trimethadione acts as a voltage-activated T-type Ca2+ channel blocker. Trimethadione is rapidly absorbed from the gastrointestinal tract. It is demethylated by liver microsomes to the active metabolite, dimethadione. Approximately 3% of a daily dose of tridione is recovered in the urine as the unchanged drug. The majority of trimethadione is excreted slowly by the kidney in the form of dimethadione.
Status:
US Previously Marketed
Source:
BUTABARBITAL SODIUM by WHITEWORTH TOWN PLSN
(1974)
Source URL:
First approved in 1939

Class (Stereo):
CHEMICAL (RACEMIC)


Conditions:

Barbiturates are non-selective depressants of the central nervous system. Butabarbital is one of them, which is used under brand name butisol sodium as a sedative or hypnotic. Like other barbiturates, butabarbital is capable of producing all levels of CNS mood alteration from excitation to mild sedation, to hypnosis, and deep coma. The mechanism of action by which barbiturates exert their effect is not yet completely understood, but is assumed, that butabarbital 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.
Quinacrine was initially developed as an anti-malarial drug marketed under the name Atabrine. Also it was approved for the teratment of ascites, however it was wothdrawn for both indication in 1995 and 2003, respectively. The drug is also used for the treatment of giardiasis, lupus, rheumatoid arthritis, refractory pulmonary effusion and pneumothorax, induce female sterilization etc. Proposed mechanisms of action include DNA intercalation interference with RNA transcription and translation, inhibition of succinate oxidation interference with electron transport, inhibition of cholinesterase, and inhibitor of phospholipase.
Status:
US Previously Marketed
Source:
trichloroethylene
(1935)
Source URL:
First marketed in 1935
Source:
trichloroethylene
Source URL:

Class (Stereo):
CHEMICAL (ACHIRAL)

Trichloroethylene (or TCE), a synthetic chemical that does not occur naturally in the environment. TCE is used to make chemicals. Additionally, it is used for spot removal in dry cleaning operations. TCE is the most common organic contaminant in groundwater. It was revealed that the compound was a human carcinogen that caused liver cancer, kidney cancer, and non-Hodgkin's lymphoma (NHL).
Status:
US Previously Marketed
Source:
Ethylmorphine Hydrochloride U.S.P.
(1921)
Source URL:
First marketed in 1921
Source:
Ethylmorphine Hydrochloride U.S.P.
Source URL:

Class (Stereo):
CHEMICAL (ABSOLUTE)


Conditions:

Ethylmorphine is a derivative of morphine with analgesic and antitussive effect. It acts by activating the opioid receptors and thus has a direct influence on the CNS system. Ethylmorphine was approved in Europe for the treatment of dry cough (Codethyline, Dionine).
Status:
US Previously Marketed
Source:
methylphenobarbital
(1921)
Source URL:
First marketed in 1921
Source:
methylphenobarbital
Source URL:

Class (Stereo):
CHEMICAL (RACEMIC)



Mephobarbital us a barbiturate derivative used primary as an anticonvulsant, but also as a sedative and anxiolytic. Marketing of mephobarbital was discontinued in 2012.
Status:
US Previously Marketed
Source:
Aconitine U.S.P.
(1921)
Source URL:
First marketed in 1921
Source:
Aconitine U.S.P.
Source URL:

Class (Stereo):
CHEMICAL (ABSOLUTE)



Aconitine is an alkaloid found in the Aconitum species. Aconitine is a highly toxic cardiotoxin and neurotoxin. In China and other countries, the herbal extract containing aconitine was used for the treatment of pain in musculoskeletal disorders, however the safety margin between therapeutic analgesic effect of aconitine and its known cardiotoxic effect is so narrow that the treatment may cause poisoning and death. The mechanism of aconitine action is explained by its ability to activate voltage-dependent sodium-ion channels.