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Phytochemical Compounds of Raw Versus Methanol-Extracted Kelulut, Tualang, and Manuka Honeys

Honey has been widely used for medicinal purposes since ancient times. It is produced by stinging bees or stingless bees by processing the collected nectar or plant sap in their bodies into raw honey. Extraction of honey will result in the pooling of crude volatile bioactive materials that could enh...

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Autores principales: Chu, Liu Imm, Berahim, Zurairah, Mohamad, Suharni, Shahidan, Wan Nazatul Shima, Yhaya, Mohd Firdaus, Zainuddin, Siti Lailatul Akmar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cureus 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10226524/
https://www.ncbi.nlm.nih.gov/pubmed/37255896
http://dx.doi.org/10.7759/cureus.38297
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author Chu, Liu Imm
Berahim, Zurairah
Mohamad, Suharni
Shahidan, Wan Nazatul Shima
Yhaya, Mohd Firdaus
Zainuddin, Siti Lailatul Akmar
author_facet Chu, Liu Imm
Berahim, Zurairah
Mohamad, Suharni
Shahidan, Wan Nazatul Shima
Yhaya, Mohd Firdaus
Zainuddin, Siti Lailatul Akmar
author_sort Chu, Liu Imm
collection PubMed
description Honey has been widely used for medicinal purposes since ancient times. It is produced by stinging bees or stingless bees by processing the collected nectar or plant sap in their bodies into raw honey. Extraction of honey will result in the pooling of crude volatile bioactive materials that could enhance its benefits. This work aims to compare the phytochemical characteristics of raw and methanol-extracted honeys in the Kelulut, Tualang and Manuka honeys. All types of raw honey samples were extracted by using the methanol extraction method and both groups were analysed using gas chromatography/mass spectrometry (GC/MS) at the National Poison Centre, Universiti Sains Malaysia, Malaysia. The findings showed that 23 compounds were identified in raw Kelulut honey and 18 compounds in methanol-extracted Kelulut honey; 28 compounds were identified in raw Tualang honey and 29 compounds in methanol-extracted Tualang honey; 19 compounds in raw Manuka honey and 22 compounds in methanol-extracted Manuka honey. There were differences in the phytochemical substances detected in raw and methanol-extracted honeys. The major compounds in raw honeys were mostly from the ketone, alcohol, and ester groups, whereas the ketone group was dominant in methanol-extracted honeys. Most bioactive substances identified in the methanol-extracted variant of honeys were more concentrated than the raw variant. A majority of these substances have antimicrobial characteristics.
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spelling pubmed-102265242023-05-30 Phytochemical Compounds of Raw Versus Methanol-Extracted Kelulut, Tualang, and Manuka Honeys Chu, Liu Imm Berahim, Zurairah Mohamad, Suharni Shahidan, Wan Nazatul Shima Yhaya, Mohd Firdaus Zainuddin, Siti Lailatul Akmar Cureus Other Honey has been widely used for medicinal purposes since ancient times. It is produced by stinging bees or stingless bees by processing the collected nectar or plant sap in their bodies into raw honey. Extraction of honey will result in the pooling of crude volatile bioactive materials that could enhance its benefits. This work aims to compare the phytochemical characteristics of raw and methanol-extracted honeys in the Kelulut, Tualang and Manuka honeys. All types of raw honey samples were extracted by using the methanol extraction method and both groups were analysed using gas chromatography/mass spectrometry (GC/MS) at the National Poison Centre, Universiti Sains Malaysia, Malaysia. The findings showed that 23 compounds were identified in raw Kelulut honey and 18 compounds in methanol-extracted Kelulut honey; 28 compounds were identified in raw Tualang honey and 29 compounds in methanol-extracted Tualang honey; 19 compounds in raw Manuka honey and 22 compounds in methanol-extracted Manuka honey. There were differences in the phytochemical substances detected in raw and methanol-extracted honeys. The major compounds in raw honeys were mostly from the ketone, alcohol, and ester groups, whereas the ketone group was dominant in methanol-extracted honeys. Most bioactive substances identified in the methanol-extracted variant of honeys were more concentrated than the raw variant. A majority of these substances have antimicrobial characteristics. Cureus 2023-04-29 /pmc/articles/PMC10226524/ /pubmed/37255896 http://dx.doi.org/10.7759/cureus.38297 Text en Copyright © 2023, Chu et al. https://creativecommons.org/licenses/by/3.0/This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Other
Chu, Liu Imm
Berahim, Zurairah
Mohamad, Suharni
Shahidan, Wan Nazatul Shima
Yhaya, Mohd Firdaus
Zainuddin, Siti Lailatul Akmar
Phytochemical Compounds of Raw Versus Methanol-Extracted Kelulut, Tualang, and Manuka Honeys
title Phytochemical Compounds of Raw Versus Methanol-Extracted Kelulut, Tualang, and Manuka Honeys
title_full Phytochemical Compounds of Raw Versus Methanol-Extracted Kelulut, Tualang, and Manuka Honeys
title_fullStr Phytochemical Compounds of Raw Versus Methanol-Extracted Kelulut, Tualang, and Manuka Honeys
title_full_unstemmed Phytochemical Compounds of Raw Versus Methanol-Extracted Kelulut, Tualang, and Manuka Honeys
title_short Phytochemical Compounds of Raw Versus Methanol-Extracted Kelulut, Tualang, and Manuka Honeys
title_sort phytochemical compounds of raw versus methanol-extracted kelulut, tualang, and manuka honeys
topic Other
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10226524/
https://www.ncbi.nlm.nih.gov/pubmed/37255896
http://dx.doi.org/10.7759/cureus.38297
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