1.Antimicrobial Activity of Some Schiff Bases Derived from Benzoin, Salicylaldehyde, Aminophenol and 2,4 Dinitrophenyl Hydrazine.
Mele JESMIN ; M Mohsin ALI ; M S SALAHUDDIN ; M Rowshanul HABIB ; Jahan Ara KHANAM
Mycobiology 2008;36(1):70-73
The antibacterial and antifungal activities of three schiff bases were evaluated against some pathogenic bacteria and fungi. Parallel experiments were also carried out with standard drugs (Kanamycin for bacteria and Nystatin for fungi). Two compounds [N-(1-phenyl-2-hydroxy-2phenylethylidine)-2',4' dinitrophenyl hydrazine, abbreviated as PDH and N-(2-hydroxy benzylidine)-2'-hydroxy imine, abbreviated as HHP] showed significant antimicrobial activities. The rest one [N-(1-phenyl 2-hydroxy-2 phenyl ethylidine) 2'-hydroxy phenyl imine, abbreviated as PHP] showed moderate activity. All these three compounds were found to possess pronounced cytotoxic effect. These compounds can be considered as potent antimicrobial agents.
Aldehydes
;
Anti-Infective Agents
;
Bacteria
;
Benzoin
;
Fungi
;
Hydrazines
;
Nystatin
;
Schiff Bases
2.Biological Screening of a Novel Nickel (II) Tyrosine Complex.
Md Rafiqul ISLAM ; S M Rafiqul ISLAM ; Abu Shadat Mohammod NOMAN ; Jahan Ara KHANAM ; Shaikh Mohammad Mohsin ALI ; Shahidul ALAM ; Min Woong LEE
Mycobiology 2007;35(1):25-29
A newly synthesized Nickel (II) tyrosine complex was screened as potential antimicrobial agent against a number of medically important bacteria (Bacillus subtilis, Streptococcus beta-haemolytica, Escherichia coli, Shigella dysenterae) and fungi (Aspergillus fumigatus, Candida albicans, Aspergillus niger, Aspergillus flavus, Penicillium sp.) strains. were used for antifungal activity. The antimicrobial activity was evaluated using the Agar Disc method. Moreover, the minimum inhibitory concentration of the complexes was determined against the same pathogenic bacteria and the values were found between 4~64 microg ml(-1). Brine shrimp bioassay was carried out for cytotoxicity measurements of the complexes. The LC50 values were calculated after probit transformation of the resulting mortality data and found to be 6 microg ml(-1).
Agar
;
Artemia
;
Aspergillus flavus
;
Aspergillus niger
;
Bacteria
;
Biological Assay
;
Candida albicans
;
Escherichia coli
;
Fungi
;
Mass Screening*
;
Microbial Sensitivity Tests
;
Mortality
;
Nickel*
;
Penicillium
;
Shigella
;
Streptococcus
;
Tyrosine*