[On the antimicrobial activity and syntheses of salicylanilide derivatives (author's transl)]. 1981

Y Hamada, and I Takeuchi, and Y Ito, and S Matsui, and T Ito

UI MeSH Term Description Entries
D004352 Drug Resistance, Microbial The ability of microorganisms, especially bacteria, to resist or to become tolerant to chemotherapeutic agents, antimicrobial agents, or antibiotics. This resistance may be acquired through gene mutation or foreign DNA in transmissible plasmids (R FACTORS). Antibiotic Resistance,Antibiotic Resistance, Microbial,Antimicrobial Resistance, Drug,Antimicrobial Drug Resistance,Antimicrobial Drug Resistances,Antimicrobial Resistances, Drug,Drug Antimicrobial Resistance,Drug Antimicrobial Resistances,Drug Resistances, Microbial,Resistance, Antibiotic,Resistance, Drug Antimicrobial,Resistances, Drug Antimicrobial
D001419 Bacteria One of the three domains of life (the others being Eukarya and ARCHAEA), also called Eubacteria. They are unicellular prokaryotic microorganisms which generally possess rigid cell walls, multiply by cell division, and exhibit three principal forms: round or coccal, rodlike or bacillary, and spiral or spirochetal. Bacteria can be classified by their response to OXYGEN: aerobic, anaerobic, or facultatively anaerobic; by the mode by which they obtain their energy: chemotrophy (via chemical reaction) or PHOTOTROPHY (via light reaction); for chemotrophs by their source of chemical energy: CHEMOLITHOTROPHY (from inorganic compounds) or chemoorganotrophy (from organic compounds); and by their source for CARBON; NITROGEN; etc.; HETEROTROPHY (from organic sources) or AUTOTROPHY (from CARBON DIOXIDE). They can also be classified by whether or not they stain (based on the structure of their CELL WALLS) with CRYSTAL VIOLET dye: gram-negative or gram-positive. Eubacteria
D012457 Salicylamides Amides of salicylic acid.
D012458 Salicylanilides 2-Hydroxy-N-phenylbenzamides. N-phenyl substituted salicylamides. Derivatives have been used as fungicides, anti-mildew agents and topical antifungal agents. In concentrated form may cause irritation of skin and mucous membranes. N-Phenylsalicylamides,N Phenylsalicylamides
D013329 Structure-Activity Relationship The relationship between the chemical structure of a compound and its biological or pharmacological activity. Compounds are often classed together because they have structural characteristics in common including shape, size, stereochemical arrangement, and distribution of functional groups. Relationship, Structure-Activity,Relationships, Structure-Activity,Structure Activity Relationship,Structure-Activity Relationships

Related Publications

Y Hamada, and I Takeuchi, and Y Ito, and S Matsui, and T Ito
September 1975, Tijdschrift voor diergeneeskunde,
Y Hamada, and I Takeuchi, and Y Ito, and S Matsui, and T Ito
April 1976, Yakugaku zasshi : Journal of the Pharmaceutical Society of Japan,
Y Hamada, and I Takeuchi, and Y Ito, and S Matsui, and T Ito
February 1975, Yakugaku zasshi : Journal of the Pharmaceutical Society of Japan,
Y Hamada, and I Takeuchi, and Y Ito, and S Matsui, and T Ito
June 1975, Yakugaku zasshi : Journal of the Pharmaceutical Society of Japan,
Y Hamada, and I Takeuchi, and Y Ito, and S Matsui, and T Ito
May 1976, Yakugaku zasshi : Journal of the Pharmaceutical Society of Japan,
Y Hamada, and I Takeuchi, and Y Ito, and S Matsui, and T Ito
November 1973, Yakugaku zasshi : Journal of the Pharmaceutical Society of Japan,
Y Hamada, and I Takeuchi, and Y Ito, and S Matsui, and T Ito
September 1980, Yao xue xue bao = Acta pharmaceutica Sinica,
Y Hamada, and I Takeuchi, and Y Ito, and S Matsui, and T Ito
October 1975, Yakugaku zasshi : Journal of the Pharmaceutical Society of Japan,
Y Hamada, and I Takeuchi, and Y Ito, and S Matsui, and T Ito
April 1976, Yakugaku zasshi : Journal of the Pharmaceutical Society of Japan,
Y Hamada, and I Takeuchi, and Y Ito, and S Matsui, and T Ito
April 1975, Yakugaku zasshi : Journal of the Pharmaceutical Society of Japan,
Copied contents to your clipboard!