Efficiency of Detergents against Microbial Biofilm Growth in Kuching, Sarawak
Biofilms formed on these surfaces are the main cause of contamination in the final product. The attachment of bacteria to food product or the product contact surfaces leads to serious hygienic problems and economic losses due to food spoilage. Detergent is commonly used as cleaning product to mitiga...
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OMICS International
2016
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Online Access: | http://ir.unimas.my/id/eprint/21855/1/Efficiency%20of%20Detergents%20against%20Microbial%20Biofilm%20Growth%20in%20Kuching%2C%20Sarawak%20%28abstract%29.pdf http://ir.unimas.my/id/eprint/21855/ https://www.omicsonline.org/open-access/efficiency-of-detergents-against-microbial-biofilm-growth-in-kuching-sarawak-2327-5073-1000263.php?aid=80972 |
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my.unimas.ir.218552018-10-01T08:44:00Z http://ir.unimas.my/id/eprint/21855/ Efficiency of Detergents against Microbial Biofilm Growth in Kuching, Sarawak Elexson, Anak Nillian Sheryl, Melinda Micky, Anak Vincent Lesley, Maurice Bilung Q Science (General) QH301 Biology QR Microbiology Biofilms formed on these surfaces are the main cause of contamination in the final product. The attachment of bacteria to food product or the product contact surfaces leads to serious hygienic problems and economic losses due to food spoilage. Detergent is commonly used as cleaning product to mitigate the growth of microbial on the food product surface and in any food supply chain process. In this study, the efficiency of commercial detergent was analyzed against single cell of foodborne pathogens to biofilm form; Klebsiella pneumonia, Bacillus cereus and Staphylococcus aureus. The antibacterial activity of three detergent; Detergent 1, Detergent 2 and Detergent 3, were evaluated by measuring the diameter zone of inhibition using disc diffusion test. S. aureus showed the highest zone inhibition which is 27.67 ± 0.577 mm (mean ± standard deviation) whereas K. pneumonia showed the lowest zone of inhibition which is 19.97 ± 0.577 mm against Detergent 4. Minimum inhibitory concentration (MIC) and minimal bactericidal concentration (MBC) were determined using 96-well microtiter plates. All detergents exhibited inhibitory activity against bacteria tested. D3 showed the lowest MIC and MBC of S. aureus at 0.390 mg/ml and 0.781 mg/ml respectively, whereas K. pneumonia has the highest MIC and MBC at 3.125 mg/ml and 6.25 mg/ml. The studies have been further done to test minimum bactericidal eradication concentration (MBEC) in related to biofilm eradication capacity. The MBEC result showed Detergent 3 could eradicate biofilm of S. aureus at 3.125 mg/ml. Thus, the appropriate detergent can be incorporated into food product surfaces and processing lines to mitigate the biofilm growth that potentially cause disease outbreak in future. OMICS International 2016 E-Article PeerReviewed text en http://ir.unimas.my/id/eprint/21855/1/Efficiency%20of%20Detergents%20against%20Microbial%20Biofilm%20Growth%20in%20Kuching%2C%20Sarawak%20%28abstract%29.pdf Elexson, Anak Nillian and Sheryl, Melinda and Micky, Anak Vincent and Lesley, Maurice Bilung (2016) Efficiency of Detergents against Microbial Biofilm Growth in Kuching, Sarawak. Clinical Microbiology, 5 (5). pp. 1-4. ISSN 2327-5073 https://www.omicsonline.org/open-access/efficiency-of-detergents-against-microbial-biofilm-growth-in-kuching-sarawak-2327-5073-1000263.php?aid=80972 DOI:10.4172/2327-5073.1000263 |
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Q Science (General) QH301 Biology QR Microbiology Elexson, Anak Nillian Sheryl, Melinda Micky, Anak Vincent Lesley, Maurice Bilung Efficiency of Detergents against Microbial Biofilm Growth in Kuching, Sarawak |
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Biofilms formed on these surfaces are the main cause of contamination in the final product. The attachment of bacteria to food product or the product contact surfaces leads to serious hygienic problems and economic losses due to food spoilage. Detergent is commonly used as cleaning product to mitigate the growth of microbial on the food product surface and in any food supply chain process. In this study, the efficiency of commercial detergent was analyzed against single cell of foodborne pathogens to biofilm form; Klebsiella pneumonia, Bacillus cereus and Staphylococcus aureus. The antibacterial activity of three detergent; Detergent 1, Detergent 2 and Detergent 3, were evaluated by measuring the diameter zone of inhibition using disc diffusion test. S. aureus showed the highest zone inhibition which is 27.67 ± 0.577 mm (mean ± standard deviation) whereas K. pneumonia showed the lowest zone of inhibition which is 19.97 ± 0.577 mm against Detergent 4. Minimum inhibitory concentration (MIC) and minimal bactericidal concentration (MBC) were determined using 96-well microtiter plates. All detergents exhibited inhibitory activity against bacteria tested. D3 showed the lowest MIC and MBC of S. aureus at 0.390 mg/ml and 0.781 mg/ml respectively, whereas K. pneumonia has the highest MIC and MBC at 3.125 mg/ml and 6.25 mg/ml. The studies have been further done to test minimum bactericidal eradication concentration (MBEC) in related to biofilm eradication capacity. The MBEC result showed Detergent 3 could eradicate biofilm of S. aureus at 3.125 mg/ml. Thus, the appropriate detergent can be incorporated into food product surfaces and processing lines to mitigate the biofilm growth that potentially cause disease outbreak in future. |
format |
E-Article |
author |
Elexson, Anak Nillian Sheryl, Melinda Micky, Anak Vincent Lesley, Maurice Bilung |
author_facet |
Elexson, Anak Nillian Sheryl, Melinda Micky, Anak Vincent Lesley, Maurice Bilung |
author_sort |
Elexson, Anak Nillian |
title |
Efficiency of Detergents against Microbial Biofilm Growth in Kuching, Sarawak |
title_short |
Efficiency of Detergents against Microbial Biofilm Growth in Kuching, Sarawak |
title_full |
Efficiency of Detergents against Microbial Biofilm Growth in Kuching, Sarawak |
title_fullStr |
Efficiency of Detergents against Microbial Biofilm Growth in Kuching, Sarawak |
title_full_unstemmed |
Efficiency of Detergents against Microbial Biofilm Growth in Kuching, Sarawak |
title_sort |
efficiency of detergents against microbial biofilm growth in kuching, sarawak |
publisher |
OMICS International |
publishDate |
2016 |
url |
http://ir.unimas.my/id/eprint/21855/1/Efficiency%20of%20Detergents%20against%20Microbial%20Biofilm%20Growth%20in%20Kuching%2C%20Sarawak%20%28abstract%29.pdf http://ir.unimas.my/id/eprint/21855/ https://www.omicsonline.org/open-access/efficiency-of-detergents-against-microbial-biofilm-growth-in-kuching-sarawak-2327-5073-1000263.php?aid=80972 |
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1644513631435489280 |