Issue 31, 2016

Evaluation of the antimicrobial activity of Moringa oleifera seed extract as a sustainable solution for potable water

Abstract

Pathogen contamination in drinking water sources is of great concern, particularly for communities with limited resources across the globe. At the same time, there is a pressing need to develop water treatment solutions which are sustainable and are ‘green’. To address this issue, we have provided a detailed antimicrobial study of the seed extract of Moringa oleifera, which is a common medicinal plant found all over southeast Asia and Africa. In this study we report the efficacy of the extract in inhibiting bacterial growth on agar and in nutrient medium (lauryl tryptose broth) and the role of different parameters of bacteria concentration and extract concentration on its antimicrobial activity. This study further involves the determination of the decay rates of a Gram-negative (Escherichia coli) and a Gram-positive (Bacillus subtilis) bacteria in 100 mL of non-turbid water in the presence of 2, 3, 5 and 10 mL of the seed extract. The seed extract volume of 10 mL led to a maximum bacterial decay of 93.2% for E. coli and 96.2% for B. subtilis. The bacterial decay data were fitted to exponential curves and three different regimes of decay were observed over a period of 6 h. B. subtilis showed 35% re-growth during the third regime compared to the initial test concentration, which can be attributed to the resistance created by the modification of the peptidoglycan backbone of the cell wall.

Graphical abstract: Evaluation of the antimicrobial activity of Moringa oleifera seed extract as a sustainable solution for potable water

Article information

Article type
Paper
Submitted
13 Feb 2016
Accepted
27 Feb 2016
First published
01 Mar 2016

RSC Adv., 2016,6, 25918-25926

Evaluation of the antimicrobial activity of Moringa oleifera seed extract as a sustainable solution for potable water

S. Dasgupta, N. S. Kumar Gunda and S. K. Mitra, RSC Adv., 2016, 6, 25918 DOI: 10.1039/C6RA04011J

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