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1.
Indian J Pharm Sci ; 75(4): 463-75, 2013 Jul.
Article in English | MEDLINE | ID: mdl-24302802

ABSTRACT

In the present investigation, a series of 12 Mannich bases (QP1-12) and 5 Schiff bases (QSP1-5) of pyrazol-5(4H)-one moiety containing 3-(hydrazinyl)-2-phenylquinazolin-4(3H)-one has been synthesized and characterized by physicochemical as well as spectral means. The synthesized Mannich and Schiff bases were screened for their preliminary antimicrobial activity against Gram-positive and Gram-negative bacterial as well as fungal strains by the determination of zone of inhibition. Mannich bases (QP1-12) were found to be more potent antibacterial agents against Gram-positive bacteria, whereas Schiff bases (QSP1-5) were more potent against Gram-negative bacteria and fungi. Minimum inhibitory concentration result demonstrated that Mannich base compound (QP7) having ortho -OH and para -COOH group showed some improvement in antibacterial activity (minimum inhibitory concentration of 48.88×10(-3) µM/ml) among the tested Gram-positive organisms and it also exhibit minimum inhibitory concentration of value of 12.22×10(-3) µM/ml for Klebsiella pneumoniae. The antitubercular activity of synthesized compounds against Mycobacterium tuberculosis (H37Rv) was determined using microplate alamar blue assay. Compound QP11 showed appreciable antitubercular activity (minimum inhibitory concentration of 6.49×10(-3) µM/ml) which was more active than the standard drugs, ethambutol (minimum inhibitory concentration of 7.60×10(-3) µM/ml) and ciprofloxacin (9.4×10(-3) µM/ml). Compounds QP11, QP9, QSP1, QSP2, and QSP5 have good selective index and may be selected as a lead compound for the development of novel antitubercular agents.

2.
J Pharm Bioallied Sci ; 5(2): 126-35, 2013 Apr.
Article in English | MEDLINE | ID: mdl-23833518

ABSTRACT

PURPOSE: Synthesis and antimicrobial activity of some Schiff bases of 3-amino-1-phenyl-4- [2-(4-phenyl-1,3-thiazol-2-yl) hydrazin-1-ylidene]-4,5-dihydro-1H-pyrazol-5-ones (TZP4a-l) are described. MATERIALS AND METHODS: Structures of the synthesized compounds were confirmed using infrared, (1)H nuclear magnetic resonance, and mass spectral data. Synthesized compounds were tested in-vitro against four Gram-positive and four Gram-negative bacterial strains, three fungal strains and two mycobacterial strains. Title compounds were screened its in-vitro cytotoxicity (IC50) by 3-(4,5-dimethythiazol-2-yl)-2,5-diphenyl tetrazolium bromide (MTT) assay using mouse embryonic fibroblasts cell line (NIH 3T3). RESULTS AND DISCUSSION: Compounds TZP4 g and TZP4 h were found to be significant activity against Bacillus substilis (bacteria) and Aspergillus niger (fungi). In-vitro anti-tuberculosis (TB) activity of compound TZP4g showed appreciable antitubercular activity against Mycobacterium tuberculosis H37Rv strain (minimum inhibitory concentration [MIC] =0.6.48 × 10(-3) µM/mL) which was 1.69 and 3.91 times more active than the standard drug, pyrazinamide (25.38 × 10(-3) µM/mL) and streptomycin (MIC = 11.01 × 10(-3) µM/mL), respectively. Their in-vitro cytotoxicity (IC50) was determined to establish a selectivity index (SI) (SI = IC50/MIC). Compounds TZP4 c, TZP4 g, and TZP4 h have SI 82.85, 168.88, and 199.07, respectively. CONCLUSION: All the title compounds had mild toxicity on the mouse embryonic fibroblasts NIH 3T3 cells (IC50 ≥ 100 µM). In comparison to the results of toxicity and antimycobacterial activity tests, it was observed that the activity of the compounds is not due to general toxicity effect; however, their antimycobacterial activity can be possibly because of their selective antimycobacterial effect. We concluded from our investigations that TZP4 c, TZP4 g, and TZP4 h may be considered promising for the development of new anti-TB agents.

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