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Antibacterial And Cytotoxic Evaluation Of Sequential Extracts Of Ocimum Basilicum Leaves Against Common Poultry Pathogens

By: Shomaila Naz (2013-VA-1001) | Dr. Muhammad Ovais Omer.
Contributor(s): Dr. Muhammad Adil Rasheed | Prof. Dr. Aftab Ahmad Anjum.
Material type: materialTypeLabelBookPublisher: 2016Description: 117p.Subject(s): Department of Pharmacology and ToxicologyDDC classification: 2443-T Dissertation note: Antimicrobial compounds having plant origin inhibit bacteria through different mechanisms and can be used for the treatment of infections against resistant microbes. Majority of antibacterial drugs in clinical use are derived from natural origin. Hence, the present study is designed for antibacterial and cytotoxic evaluation of different extracts of Ocimum basilicum seeds against common poultry pathogens. The four sequential i.e. hexane, chloroform, ethanol and aqueous extracts of Ocimum basilicum leaves and seeds were prepared by soxhlet extraction. Antibacterial activity of these extracts was determined by agar well diffusion method against Staphylococcus aureus, Clostridium perfringens type A, Escherichia coli, Salmonella enterica and Haemophilus paragallinarum. Zone of inhibitions were determined by well diffusion method. MICs of plant extracts were determined by micro broth dilution method. Cytotoxic activity was evaluated by applying MTT assay on Vero cell lines. All the results were statistically analyzed by one way ANOVA and compared means by Duncan’s multiple range of posthoc test at significance level of P≤0.05. The results of zone of inhibitions showed by Ocimum basilicum leaves and seeds extracts ranging from 11.33-20.0 mm values of MIC results ranging from 4.889 μg/ml-2500 μg/ml of hexane, chloroform and ethanol. The aqueous extract of Ocimum basilicum have no activity against any bacterial pathogen. Ethanol extract of Ocimum basilicum leaves was cytotoxic at 500 μg/ml. Hexane extract of Ocimum basilicum seeds was cytotoxic at concentration ≥625 μg/ml, chloroform at concentration ≥19.53 μg/ml and ethanol extract at concentration ≥750 μg/ml. The indigenous plant Ocimum basilicum have antibacterial activity against common poultry pathogens and helpful to develop new drug from plant origin.
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Veterinary Science 2443-T (Browse shelf) Available 2443-T
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Antimicrobial compounds having plant origin inhibit bacteria through different mechanisms and can be used for the treatment of infections against resistant microbes. Majority of antibacterial drugs in clinical use are derived from natural origin. Hence, the present study is designed for antibacterial and cytotoxic evaluation of different extracts of Ocimum basilicum seeds against common poultry pathogens.
The four sequential i.e. hexane, chloroform, ethanol and aqueous extracts of Ocimum basilicum leaves and seeds were prepared by soxhlet extraction. Antibacterial activity of these extracts was determined by agar well diffusion method against Staphylococcus aureus, Clostridium perfringens type A, Escherichia coli, Salmonella enterica and Haemophilus paragallinarum. Zone of inhibitions were determined by well diffusion method. MICs of plant extracts were determined by micro broth dilution method. Cytotoxic activity was evaluated by applying MTT assay on Vero cell lines. All the results were statistically analyzed by one way ANOVA and compared means by Duncan’s multiple range of posthoc test at significance level of P≤0.05.
The results of zone of inhibitions showed by Ocimum basilicum leaves and seeds extracts ranging from 11.33-20.0 mm values of MIC results ranging from 4.889 μg/ml-2500 μg/ml of hexane, chloroform and ethanol. The aqueous extract of Ocimum basilicum have no activity against any bacterial pathogen. Ethanol extract of Ocimum basilicum leaves was cytotoxic at 500 μg/ml. Hexane extract of Ocimum basilicum seeds was cytotoxic at concentration ≥625 μg/ml, chloroform at concentration ≥19.53 μg/ml and ethanol extract at concentration ≥750 μg/ml.
The indigenous plant Ocimum basilicum have antibacterial activity against common poultry pathogens and helpful to develop new drug from plant origin.

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