Please use this identifier to cite or link to this item: https://oarep.usim.edu.my/jspui/handle/123456789/10856
Title: Antibacterial And Antibiofilm Analyses Of Melastoma Malabathricum Leaves Extract Against Streptococcus Mutans On Tooth Surfaces
Authors: Fatin Farhana Azizan 
Rohazila Mohamad Hanafiah 
Marwan Jawad Msarah 
Norefrina Shafinaz Md. Nor 
Nazlina Ibrahim 
Wan Syaidatul Aqma 
Keywords: antibacterial, biofilm, Melastoma malabathricum, Streptococcus mutans
Issue Date: 2020
Publisher: Malaysian Society for Microbiology
Journal: Malaysian Journal of Microbiology 
Abstract: 
Aims: Dental caries is a chronic infectious disease caused by Streptococcus mutans due to its ability to form biofilm. This study aims to assess the antimicrobial efficacy of Melastoma malabathricum leaf extract against S. mutans on the surface of tooth samples as a potential therapy for dental caries. Methodology and results: Extraction of M. malabathricum leaves was done using acetone as the solvent and antibacterial activity of the extracts was determined by minimum inhibitory concentration (MIC) and minimum bactericidal concentration (MBC). Antibiofilm activity of M. malabathricum extract against S. mutans was determined by comparing the colony count, biofilm formation assay and morphology observation by scanning electron microscope (SEM). The MIC value of extracts was 6.25 mg/mL and MBC value was >25 mg/mL. A decrease in colony count was noted when tooth samples were incubated with M. malabathricum extract for 8 h compared to 4 h incubation. At pH 5, the formation of the colony was the least, medium at pH 8 and maximum at pH 7. A decrease in biofilm formation was observed when tooth samples were incubated with the extract for 8 h. SEM observations showed treatment with the extract caused S. mutans cell membrane to leak leading to cell morphology changes. Conclusion, significance and impact of study: Acetone extract of M. malabathricum leaves showed excellent antibacterial activity against S. mutans. It has bactericidal activity with the ability to inhibit biofilm in dose-dependent manner against S. mutans. The morphological analyses suggested that the extract disrupted the cell membrane of the bacteria.
Description: 
Volume :16 No:6
URI: https://oarep.usim.edu.my/jspui/handle/123456789/10856
ISSN: 2231-7538
DOI: http://dx.doi.org/10.21161/mjm.190678
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