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Search results for nonoxynol root_codes_@count in @count (approximate match)
Status:
US Previously Marketed
Source:
PROCAINE HYDROCHLORIDE by GD SEARLE LLC
(1982)
Source URL:
First marketed in 1905
Class (Stereo):
CHEMICAL (ACHIRAL)
Targets:
Conditions:
Procaine is an anesthetic agent indicated for production of local or regional anesthesia, particularly for oral surgery. Procaine (like cocaine) has the advantage of constricting blood vessels which reduces bleeding, unlike other local anesthetics like lidocaine. Procaine is an ester anesthetic. It is metabolized in the plasma by the enzyme pseudocholinesterase through hydrolysis into para-aminobenzoic acid (PABA), which is then excreted by the kidneys into the urine. Procaine acts mainly by inhibiting sodium influx through voltage gated sodium channels in the neuronal cell membrane of peripheral nerves. When the influx of sodium is interrupted, an action potential cannot arise and signal conduction is thus inhibited. The receptor site is thought to be located at the cytoplasmic (inner) portion of the sodium channel. Procaine has also been shown to bind or antagonize the function of N-methyl-D-aspartate (NMDA) receptors as well as nicotinic acetylcholine receptors and the serotonin receptor-ion channel complex.
Status:
US Previously Marketed
Source:
Holocaine
(1898)
Source URL:
First marketed in 1898
Class (Stereo):
CHEMICAL (ACHIRAL)
Conditions:
Phenacaine (UNII: V3M4D317W8) also known as holocaine is a local anesthetic used in ophthalmic medicine. Like other local anesthetics it inhibits the specific calmodulin-dependent stimulation of erythrocyte Ca2+-ATPase (ATP phosphohydrolase) and cyclic nucleotide phosphodiesterases (3',5'-cyclic-nucleotide 5'-nucleotidohydrolase) from brain and heart. Basal activities of these enzymes in the absence of calmodulin are relatively unaffected by concentrations of local anesthetics that strongly inhibit the specific stimulation by calmodulin. Increasing calmodulin, but not Ca2+, overcomes the inhibitory action of the local anesthetics on brain phosphodiesterase. However, excess calmodulin does not fully restore activity of erythrocyte CA2+-stimulated ATPase. Although the mechanism(s) by which the local anesthetics act is unclear, they inhibit binding of 125I-labeled calmodulin to the erythrocyte membrane. Antagonism of calmodulin provides a molecular mechanism that may explain the inhibition of many Ca2+-dependent cellular processes by local anesthetics--e.g., Ca2+ transport, exocytosis, excitation-contraction coupling, non-muscle-cell motility, and aggregation. Phenacaine hydrochloride is registered by FDA as an anorectal drug product and is in the list of OTC active ingredients. The Ointment Ophthalmic Holocaine and Epinephrine (1.5% phenacaine hydrochloride) were distributed by National Drug Co., a corporation, Philadelphia, Pa. and in 1939 and was alleged to be misbranded since it contained less phenacaine hydrochloride than indicated by the labeling.
Status:
US Previously Marketed
Source:
ALLONAL AMINOPHENAZONE by ROCHE
(1961)
Source URL:
First marketed in 1897
Class (Stereo):
CHEMICAL (ACHIRAL)
Targets:
Conditions:
Aminophenazone is a phenyl-pyrazolone derivative with potent analgesic and antipyretic properties. Aminophenazone has been used as salt or complexes, including topically as the salicylate. It was recommended for the treatment of a fever, neuralgia, myositis, acute rheumatism, arthritis, chorea. In 1999 the FDA suspended aminophenazone. The drug caused agranulocytosis. Some of the cases of agranulocytosis were fatal. Another reason for suspending this drug from the market was its ability to react with nitrite-containing food, thus forming carcinogenic nitrosamines. A breath test with 13C-labeled aminopyrine has been used as a non-invasive measure of cytochrome P-450 metabolic activity in liver function tests.
Status:
US Previously Marketed
Source:
Bantron by Campana
(1953)
Source URL:
First marketed in 1882
Source:
Lobeline Sulphate by E. Merck
Source URL:
Class (Stereo):
CHEMICAL (ABSOLUTE)
Lobeline is an alkaloid found in "Indian tobacco" (Lobelia inflata), "Devil's tobacco" (Lobelia tupa), "cardinal flower" (Lobelia cardinalis), "great lobelia" (Lobelia siphilitica), and Hippobroma longiflora. Additionally, it is also found in Lobelia Chinensis. In its pure form, it is a white amorphous powder which is freely soluble in water. Lobeline has been sold, in tablet form, for use as a smoking cessation aid, and may have application in the treatment of other drug addictions such as addiction to amphetamines, cocaine, or alcohol. Lobeline has multiple mechanisms of action, acting as a VMAT2 ligand, which stimulates dopamine release to a moderate extent when administered alone, but reduces the dopamine release caused by methamphetamine. It also inhibits the reuptake of dopamine and serotonin and acts as a mixed agonist-antagonist at nicotinic acetylcholine receptors to which it binds at the subunit interfaces of the extracellular domain. It is also an antagonist at μ-opioid receptors. It seems to be a P-glycoprotein inhibitor, according to at least one study. It has been hypothesized that P-glycoprotein inhibition reduces chemotherapeutic resistance in cancer, presumably affecting any substrates of P-gp.
Status:
US Previously Marketed
Source:
Bantron by Campana
(1953)
Source URL:
First marketed in 1882
Source:
Lobeline Sulphate by E. Merck
Source URL:
Class (Stereo):
CHEMICAL (ABSOLUTE)
Lobeline is an alkaloid found in "Indian tobacco" (Lobelia inflata), "Devil's tobacco" (Lobelia tupa), "cardinal flower" (Lobelia cardinalis), "great lobelia" (Lobelia siphilitica), and Hippobroma longiflora. Additionally, it is also found in Lobelia Chinensis. In its pure form, it is a white amorphous powder which is freely soluble in water. Lobeline has been sold, in tablet form, for use as a smoking cessation aid, and may have application in the treatment of other drug addictions such as addiction to amphetamines, cocaine, or alcohol. Lobeline has multiple mechanisms of action, acting as a VMAT2 ligand, which stimulates dopamine release to a moderate extent when administered alone, but reduces the dopamine release caused by methamphetamine. It also inhibits the reuptake of dopamine and serotonin and acts as a mixed agonist-antagonist at nicotinic acetylcholine receptors to which it binds at the subunit interfaces of the extracellular domain. It is also an antagonist at μ-opioid receptors. It seems to be a P-glycoprotein inhibitor, according to at least one study. It has been hypothesized that P-glycoprotein inhibition reduces chemotherapeutic resistance in cancer, presumably affecting any substrates of P-gp.
Status:
US Previously Marketed
Source:
Amyl Nitrite U.S.P.
(1880)
Source URL:
First marketed in 1880
Source:
Amyl Nitrite U.S.P.
Source URL:
Class (Stereo):
CHEMICAL (ACHIRAL)
Status:
US Previously Marketed
Source:
21 CFR 310.545(a)(6)(i) cough/cold:antihistamine thenyldiamine hydrochloride
Source URL:
Class (Stereo):
CHEMICAL (ACHIRAL)
Conditions:
There is not much available information about thenyldiamine, is known, that it is used as antihistamine and for the treatment of asthma and bronchitis.
Status:
Possibly Marketed Outside US
Source:
Hepadial by Unicler
Source URL:
First approved in 2024
Source:
M016
Source URL:
Class (Stereo):
CHEMICAL (ACHIRAL)
Conditions:
Dimecrotic acid is a choleretic agent with spasmolytic properties. It is obtained by reaction of resorcinol with acetoacetate to give 4-methyl-7-hydroxycoumarin. It is indicated for the treatment of hepato-digestive insufficiency and its manifestations. It shouldn’t be used in case of blockage of bile ducts, severe liver failure and severe renal impairment. Diarrhea may be associated with high doses of dimecrotic acid.
Status:
Possibly Marketed Outside US
Source:
M006
(2023)
Source URL:
First approved in 2023
Source:
M006
Source URL:
Class (Stereo):
CHEMICAL (RACEMIC)
Status:
Possibly Marketed Outside US
Source:
BLA125734
(2023)
Source URL:
First approved in 2023
Source:
BLA125734
Source URL:
Class (Stereo):
CHEMICAL (ABSOLUTE)
Targets:
Conditions:
2′-Deoxycytidine (deoxyC) is one of the deoxy nucleosides, which after phosphorylation to dCTP is used to synthesize DNA via various DNA polymerases or reverse transcriptases. Deoxycytidine is phosphorylated by deoxycytidine kinase (dCK). This enzyme catalyzes the initial conversion of the nucleosides deoxyadenosine (dA), deoxyguanosine (dG), and deoxycytidine (dC) into their monophosphate forms, with subsequent phosphorylation to the triphosphate forms performed by additional enzymes.