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Antibacterial and Antispore Activities of Isolated Compounds from Piper cubeba L.

Piper cubeba L. is the berry of a shrub that is indigenous to Java, Southern Borneo, Sumatra, and other islands in the Indian Ocean. The plant is usually used in folk traditional medicine and is an important ingredient in cooking. The purpose of this study was to isolate and purify the bioactive com...

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Autores principales: Alqadeeri, Fatimah, Rukayadi, Yaya, Abbas, Faridah, Shaari, Khozirah
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6749514/
https://www.ncbi.nlm.nih.gov/pubmed/31454974
http://dx.doi.org/10.3390/molecules24173095
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author Alqadeeri, Fatimah
Rukayadi, Yaya
Abbas, Faridah
Shaari, Khozirah
author_facet Alqadeeri, Fatimah
Rukayadi, Yaya
Abbas, Faridah
Shaari, Khozirah
author_sort Alqadeeri, Fatimah
collection PubMed
description Piper cubeba L. is the berry of a shrub that is indigenous to Java, Southern Borneo, Sumatra, and other islands in the Indian Ocean. The plant is usually used in folk traditional medicine and is an important ingredient in cooking. The purpose of this study was to isolate and purify the bioactive compounds from P. cubeba L. fractions. In addition, the isolated compounds were tested for their antibacterial and antispore activities against vegetative cells and spores of Bacillus cereus ATCC33019, B. subtilis ATCC6633, B. pumilus ATCC14884, and B. megaterium ATCC14581. The phytochemical investigation of the DCM fraction yielded two known compounds: β-asarone (1), and asaronaldehyde (2) were successfully isolated and identified from the methanol extract and its fractions of P. cubeba L. Results showed that exposing the vegetative cells of Bacillus sp. to isolated compounds resulted in an inhibition zone with a large diameter ranging between 7.21 to 9.61 mm. The range of the minimum inhibitory concentration (MIC) was between 63.0 to 125.0 µg/mL and had minimum bactericidal concentration (MBC) at 250.0 to 500.0 µg/mL against Bacillus sp. Isolated compounds at a concentration of 0.05% inactivated more than 3-Log(10) (90.99%) of the spores of Bacillus sp. after an incubation period of four hours, and all the spores were killed at a concentration of 0.1%. The structures were recognizably elucidated based on 1D and 2D-NMR analyses (1H, 13C, COSY, HSQC, and HMBC) and mass spectrometry data. Compounds 1, and 2 were isolated for the first time from this plant. In conclusion, the two compounds show a promising potential of antibacterial and sporicidal activities against Bacillus sp. and thus can be developed as an anti-Bacillus agent.
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spelling pubmed-67495142019-09-27 Antibacterial and Antispore Activities of Isolated Compounds from Piper cubeba L. Alqadeeri, Fatimah Rukayadi, Yaya Abbas, Faridah Shaari, Khozirah Molecules Article Piper cubeba L. is the berry of a shrub that is indigenous to Java, Southern Borneo, Sumatra, and other islands in the Indian Ocean. The plant is usually used in folk traditional medicine and is an important ingredient in cooking. The purpose of this study was to isolate and purify the bioactive compounds from P. cubeba L. fractions. In addition, the isolated compounds were tested for their antibacterial and antispore activities against vegetative cells and spores of Bacillus cereus ATCC33019, B. subtilis ATCC6633, B. pumilus ATCC14884, and B. megaterium ATCC14581. The phytochemical investigation of the DCM fraction yielded two known compounds: β-asarone (1), and asaronaldehyde (2) were successfully isolated and identified from the methanol extract and its fractions of P. cubeba L. Results showed that exposing the vegetative cells of Bacillus sp. to isolated compounds resulted in an inhibition zone with a large diameter ranging between 7.21 to 9.61 mm. The range of the minimum inhibitory concentration (MIC) was between 63.0 to 125.0 µg/mL and had minimum bactericidal concentration (MBC) at 250.0 to 500.0 µg/mL against Bacillus sp. Isolated compounds at a concentration of 0.05% inactivated more than 3-Log(10) (90.99%) of the spores of Bacillus sp. after an incubation period of four hours, and all the spores were killed at a concentration of 0.1%. The structures were recognizably elucidated based on 1D and 2D-NMR analyses (1H, 13C, COSY, HSQC, and HMBC) and mass spectrometry data. Compounds 1, and 2 were isolated for the first time from this plant. In conclusion, the two compounds show a promising potential of antibacterial and sporicidal activities against Bacillus sp. and thus can be developed as an anti-Bacillus agent. MDPI 2019-08-26 /pmc/articles/PMC6749514/ /pubmed/31454974 http://dx.doi.org/10.3390/molecules24173095 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Alqadeeri, Fatimah
Rukayadi, Yaya
Abbas, Faridah
Shaari, Khozirah
Antibacterial and Antispore Activities of Isolated Compounds from Piper cubeba L.
title Antibacterial and Antispore Activities of Isolated Compounds from Piper cubeba L.
title_full Antibacterial and Antispore Activities of Isolated Compounds from Piper cubeba L.
title_fullStr Antibacterial and Antispore Activities of Isolated Compounds from Piper cubeba L.
title_full_unstemmed Antibacterial and Antispore Activities of Isolated Compounds from Piper cubeba L.
title_short Antibacterial and Antispore Activities of Isolated Compounds from Piper cubeba L.
title_sort antibacterial and antispore activities of isolated compounds from piper cubeba l.
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6749514/
https://www.ncbi.nlm.nih.gov/pubmed/31454974
http://dx.doi.org/10.3390/molecules24173095
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