trimeprazine has been researched along with acepromazine in 7 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 5 (71.43) | 18.7374 |
1990's | 1 (14.29) | 18.2507 |
2000's | 0 (0.00) | 29.6817 |
2010's | 1 (14.29) | 24.3611 |
2020's | 0 (0.00) | 2.80 |
Authors | Studies |
---|---|
Chan, C; Croft, SL; Douglas, KT; Fairlamb, AH; Garforth, J; Jaouhari, R; McKie, JH; Rock, PJ; Speers, P; Yardley, V; Yin, H | 1 |
Cantin, LD; Chen, H; Kenna, JG; Noeske, T; Stahl, S; Walker, CL; Warner, DJ | 1 |
Krieglstein, J; Staab, J | 1 |
Krieglstein, J; Meiler, W; Staab, J | 1 |
Janssen, PA; Lenaerts, FM; Niemegeers, CJ; Schellekens, KH | 1 |
Benmaman, JD; Plein, EM; Sorby, DL | 1 |
LAMBERT, PA | 1 |
7 other study(ies) available for trimeprazine and acepromazine
Article | Year |
---|---|
Phenothiazine inhibitors of trypanothione reductase as potential antitrypanosomal and antileishmanial drugs.
Topics: Animals; Antiprotozoal Agents; Binding Sites; Crithidia fasciculata; Enzyme Inhibitors; Glutathione Disulfide; Glutathione Reductase; Kinetics; Leishmania donovani; Models, Chemical; NADH, NADPH Oxidoreductases; NADP; Phenothiazines; Trypanocidal Agents; Trypanosoma brucei brucei; Trypanosoma cruzi | 1998 |
Mitigating the inhibition of human bile salt export pump by drugs: opportunities provided by physicochemical property modulation, in silico modeling, and structural modification.
Topics: Animals; ATP Binding Cassette Transporter, Subfamily B, Member 11; ATP-Binding Cassette Transporters; Bile Acids and Salts; Cell Line; Chemical and Drug Induced Liver Injury; Humans; Quantitative Structure-Activity Relationship | 2012 |
[Participation of the basic side-chain of phenothiazine derivatives in their albumin binding].
Topics: Acepromazine; Chlorpromazine; Hydrogen-Ion Concentration; Phenothiazines; Promazine; Promethazine; Protein Binding; Serum Albumin, Bovine; Triflupromazine; Trimeprazine | 1970 |
Hydrophobic and ionic interactions of phenothiazine derivatives with bovine serum albumin.
Topics: Acepromazine; Animals; Aspirin; Cattle; Chemical Phenomena; Chemistry; Chlorpromazine; Chromatography, Gel; Dialysis; Fatty Alcohols; Hydroxyzine; Mathematics; Models, Chemical; Phenothiazines; Promazine; Promethazine; Protein Binding; Serum Albumin, Bovine; Solubility; Thermodynamics; Triflupromazine; Trimeprazine; Water | 1972 |
Is it possible to predict the clinical effects of neuroleptic drugs (major tranquillizers) from animal data? IV. An improved experimental design for measuring the inhibitory effects of neuroleptic drugs on amphetamine-or apomorphine-induced "Cheroing" and
Topics: Acepromazine; Amphetamine; Animals; Apomorphine; Behavior, Animal; Benperidol; Chlorpromazine; Chlorprothixene; Fluphenazine; Haloperidol; Male; Mastication; Methods; Motor Activity; Norepinephrine; Perphenazine; Phenothiazines; Prochlorperazine; Promazine; Rats; Thiazines; Thioridazine; Tranquilizing Agents; Trifluoperazine; Triflupromazine; Trimeprazine | 1967 |
Adsorption of phenothiazine derivatives by solid adsorbents.
Topics: Acepromazine; Adsorption; Charcoal; Chlorpromazine; Fluphenazine; Humans; Hydrogen-Ion Concentration; Intestinal Absorption; Kaolin; Muscles; Phenothiazines; Prochlorperazine; Promazine; Promethazine; Sodium Chloride; Spectrophotometry; Talc; Temperature; Thioridazine; Tranquilizing Agents; Trifluoperazine; Triflupromazine; Trimeprazine; Ultraviolet Rays | 1966 |
[TRIAL SYSTEMATIZATION OF NEUROLEPTIC COMBINATIONS].
Topics: Acepromazine; Antipsychotic Agents; Chemical Phenomena; Chemistry; Chlorpromazine; Chlorprothixene; Electroencephalography; Haloperidol; Humans; Methotrimeprazine; Pharmacology; Phenothiazines; Prochlorperazine; Promethazine; Reserpine; Thioridazine; Tranquilizing Agents; Trifluoperazine; Trimeprazine | 1964 |