Synthesis and antibacterial activity of some novel 1-substituted 1,4-dihydro-4-oxo-7-pyridinyl-3-quinolinecarboxylic acids. Potent antistaphylococcal agents. 1995

M Reuman, and S J Daum, and B Singh, and M P Wentland, and R B Perni, and P Pennock, and P M Carabateas, and M D Gruett, and M T Saindane, and P H Dorff
Sterling Winthrop Inc., Collegeville, Pennsylvania 19426, USA.

The palladium-catalyzed coupling of 3- and 4-(trialkylstannyl)pyridines with 7-bromo or 7-chloro 1-substituted 1,4-dihydro-4-oxo-3-quinolinecarboxylates has provided access to the corresponding 1-substituted 1,4-dihydro-4-oxo-7-pyridinyl-3-quinolinecarboxylic acids. The antibacterial activity of these derivatives was studied with the finding that the optimal 1- and 7-position substituents for Gram positive activity are cyclopropyl and 4-(2,6-dimethylpyridinyl), respectively. We find that for the fluorine-substituted derivatives studied, the position of the fluorine on the quinolone nucleus or the number of fluorine atoms does not seem to be important for good Gram positive activity. For 1-cyclopropyl 7-(2,6-dimethyl-4-pyridinyl) derivatives, the 6-fluoro 4a, 8-fluoro 10d, 6,8-difluoro 10b, and 5,6,8-trifluoro 8, all provided equal antibacterial activity against Staphylococcus aureus ATCC 29213. There is also a correlation between the substitution on the 7-(4-pyridinyl) group and the Gram positive activity, particularly for S. aureus, clearly indicating that the 2,6-dimethylpyridinyl group is optimal. The MIC50 value for the most potent agents in this study against S. aureus ATCC 29213 is 0.008 microgram/mL. By comparison, ciprofloxacin and aminopyrrolidine 28 gave values of 0.25 and 0.015 microgram/mL, respectively, against this organism.

UI MeSH Term Description Entries
D011550 Pseudomonas aeruginosa A species of gram-negative, aerobic, rod-shaped bacteria commonly isolated from clinical specimens (wound, burn, and urinary tract infections). It is also found widely distributed in soil and water. P. aeruginosa is a major agent of nosocomial infection. Bacillus aeruginosus,Bacillus pyocyaneus,Bacterium aeruginosum,Bacterium pyocyaneum,Micrococcus pyocyaneus,Pseudomonas polycolor,Pseudomonas pyocyanea
D002264 Carboxylic Acids Organic compounds containing the carboxy group (-COOH). This group of compounds includes amino acids and fatty acids. Carboxylic acids can be saturated, unsaturated, or aromatic. Carboxylic Acid,Acid, Carboxylic,Acids, Carboxylic
D000900 Anti-Bacterial Agents Substances that inhibit the growth or reproduction of BACTERIA. Anti-Bacterial Agent,Anti-Bacterial Compound,Anti-Mycobacterial Agent,Antibacterial Agent,Antibiotics,Antimycobacterial Agent,Bacteriocidal Agent,Bacteriocide,Anti-Bacterial Compounds,Anti-Mycobacterial Agents,Antibacterial Agents,Antibiotic,Antimycobacterial Agents,Bacteriocidal Agents,Bacteriocides,Agent, Anti-Bacterial,Agent, Anti-Mycobacterial,Agent, Antibacterial,Agent, Antimycobacterial,Agent, Bacteriocidal,Agents, Anti-Bacterial,Agents, Anti-Mycobacterial,Agents, Antibacterial,Agents, Antimycobacterial,Agents, Bacteriocidal,Anti Bacterial Agent,Anti Bacterial Agents,Anti Bacterial Compound,Anti Bacterial Compounds,Anti Mycobacterial Agent,Anti Mycobacterial Agents,Compound, Anti-Bacterial,Compounds, Anti-Bacterial
D001407 Bacillus A genus of BACILLACEAE that are spore-forming, rod-shaped cells. Most species are saprophytic soil forms with only a few species being pathogenic. Bacillus bacterium
D013211 Staphylococcus aureus Potentially pathogenic bacteria found in nasal membranes, skin, hair follicles, and perineum of warm-blooded animals. They may cause a wide range of infections and intoxications.
D013293 Enterococcus faecalis A species of gram-positive, coccoid bacteria commonly isolated from clinical specimens and the human intestinal tract. Most strains are nonhemolytic. Streptococcus Group D,Streptococcus faecalis
D013296 Streptococcus pneumoniae A gram-positive organism found in the upper respiratory tract, inflammatory exudates, and various body fluids of normal and/or diseased humans and, rarely, domestic animals. Diplococcus pneumoniae,Pneumococcus
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

M Reuman, and S J Daum, and B Singh, and M P Wentland, and R B Perni, and P Pennock, and P M Carabateas, and M D Gruett, and M T Saindane, and P H Dorff
September 1992, Journal of medicinal chemistry,
M Reuman, and S J Daum, and B Singh, and M P Wentland, and R B Perni, and P Pennock, and P M Carabateas, and M D Gruett, and M T Saindane, and P H Dorff
September 2001, Farmaco (Societa chimica italiana : 1989),
M Reuman, and S J Daum, and B Singh, and M P Wentland, and R B Perni, and P Pennock, and P M Carabateas, and M D Gruett, and M T Saindane, and P H Dorff
January 1993, Yao xue xue bao = Acta pharmaceutica Sinica,
M Reuman, and S J Daum, and B Singh, and M P Wentland, and R B Perni, and P Pennock, and P M Carabateas, and M D Gruett, and M T Saindane, and P H Dorff
December 1995, Bioorganic & medicinal chemistry,
M Reuman, and S J Daum, and B Singh, and M P Wentland, and R B Perni, and P Pennock, and P M Carabateas, and M D Gruett, and M T Saindane, and P H Dorff
May 1978, Journal of medicinal chemistry,
M Reuman, and S J Daum, and B Singh, and M P Wentland, and R B Perni, and P Pennock, and P M Carabateas, and M D Gruett, and M T Saindane, and P H Dorff
September 1987, Journal of medicinal chemistry,
M Reuman, and S J Daum, and B Singh, and M P Wentland, and R B Perni, and P Pennock, and P M Carabateas, and M D Gruett, and M T Saindane, and P H Dorff
March 1988, Journal of medicinal chemistry,
M Reuman, and S J Daum, and B Singh, and M P Wentland, and R B Perni, and P Pennock, and P M Carabateas, and M D Gruett, and M T Saindane, and P H Dorff
February 1987, Yakugaku zasshi : Journal of the Pharmaceutical Society of Japan,
M Reuman, and S J Daum, and B Singh, and M P Wentland, and R B Perni, and P Pennock, and P M Carabateas, and M D Gruett, and M T Saindane, and P H Dorff
December 2002, Journal of medicinal chemistry,
M Reuman, and S J Daum, and B Singh, and M P Wentland, and R B Perni, and P Pennock, and P M Carabateas, and M D Gruett, and M T Saindane, and P H Dorff
February 1992, Journal of medicinal chemistry,
Copied contents to your clipboard!