Determination of MIC and NIC values of Allivum sativum methanolic extract against Aeromonas hydrophila

Plant extracts have been studied extensively for their ability to suppress the growth of bacteria. Because these findings were not reported on in the benchmark values, it was not possible to compare the results of this study to other investigations. Nonlinear regression analysis of the data is one o...

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Main Authors: Ismail, Ahmad Syazwan, Shukor, Mohd Yunus, Masdor, Noor Azlina
Formato: Artigo
Publicado: Hibiscus Publisher 2022
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spelling oai:psasir.upm.edu.my:100935 http://psasir.upm.edu.my/id/eprint/100935/ Determination of MIC and NIC values of Allivum sativum methanolic extract against Aeromonas hydrophila Ismail, Ahmad Syazwan Shukor, Mohd Yunus Masdor, Noor Azlina Plant extracts have been studied extensively for their ability to suppress the growth of bacteria. Because these findings were not reported on in the benchmark values, it was not possible to compare the results of this study to other investigations. Nonlinear regression analysis of the data is one of the most accurate methods of determining this value. The minimum inhibitory concentration (MIC) and non-inhibitory concentration (NIC) values of the methanolic extract of Allium sativum against the pathogen Aeromonas hydrophila were successfully determined using Lambert and Pearson's modified Gompertz model. As shown by the model's high correlation coefficient (0.995), garlic's MIC and NIC values of 28.02 mg/mL (95% Confidence Interval from 26.42 to 29.71) and 12.60 mg/mL (95% C.I., 11.88 to 13.37) suggest that it could be used as an inhibitory agent against this essential fish pathogen. Hibiscus Publisher 2022-07-31 Article PeerReviewed Ismail, Ahmad Syazwan and Shukor, Mohd Yunus and Masdor, Noor Azlina (2022) Determination of MIC and NIC values of Allivum sativum methanolic extract against Aeromonas hydrophila. Bulletin of Environmental Science and Sustainable Management, 6 (1). 25 - 27. ISSN 2716-5353 https://journal.hibiscuspublisher.com/index.php/BESSM/article/view/706 10.54987/bessm.v6i1.706
institution UPM IR
collection UPM IR
description Plant extracts have been studied extensively for their ability to suppress the growth of bacteria. Because these findings were not reported on in the benchmark values, it was not possible to compare the results of this study to other investigations. Nonlinear regression analysis of the data is one of the most accurate methods of determining this value. The minimum inhibitory concentration (MIC) and non-inhibitory concentration (NIC) values of the methanolic extract of Allium sativum against the pathogen Aeromonas hydrophila were successfully determined using Lambert and Pearson's modified Gompertz model. As shown by the model's high correlation coefficient (0.995), garlic's MIC and NIC values of 28.02 mg/mL (95% Confidence Interval from 26.42 to 29.71) and 12.60 mg/mL (95% C.I., 11.88 to 13.37) suggest that it could be used as an inhibitory agent against this essential fish pathogen.
format Article
author Ismail, Ahmad Syazwan
Shukor, Mohd Yunus
Masdor, Noor Azlina
spellingShingle Ismail, Ahmad Syazwan
Shukor, Mohd Yunus
Masdor, Noor Azlina
Determination of MIC and NIC values of Allivum sativum methanolic extract against Aeromonas hydrophila
author_facet Ismail, Ahmad Syazwan
Shukor, Mohd Yunus
Masdor, Noor Azlina
author_sort Ismail, Ahmad Syazwan
title Determination of MIC and NIC values of Allivum sativum methanolic extract against Aeromonas hydrophila
title_short Determination of MIC and NIC values of Allivum sativum methanolic extract against Aeromonas hydrophila
title_full Determination of MIC and NIC values of Allivum sativum methanolic extract against Aeromonas hydrophila
title_fullStr Determination of MIC and NIC values of Allivum sativum methanolic extract against Aeromonas hydrophila
title_full_unstemmed Determination of MIC and NIC values of Allivum sativum methanolic extract against Aeromonas hydrophila
title_sort determination of mic and nic values of allivum sativum methanolic extract against aeromonas hydrophila
publisher Hibiscus Publisher
publishDate 2022
_version_ 1819301233476763648
score 13.4562235