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Type :article
Subject :Q Science (General)
Main Author :Wan Mohd Nuzul Hakimi Wan Salleh
Additional Authors :Shamsul Khamis
Title :Chemical composition of the essential oil of diospyros wallichii king & gamble (Ebenaceae)
Place of Production :Tanjong Malim
Publisher :Fakulti Sains dan Matematik
Year of Publication :2020
Corporate Name :Universiti Pendidikan Sultan Idris
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Abstract : Universiti Pendidikan Sultan Idris
The chemical composition of the essential oil from the leaves of Diospyros wallichii (Ebenaceae) growing in Malaysia was investigated for the first time. The essential oil was obtained by hydrodistillation and fully characterized by gas chromatography (GC-FID) and gas chromatography-mass spectrometry (GC-MS). A total of 34 components (95.8%) were successfully identified in the essential oil which were characterized by high proportions of β-eudesmol (28.5%), caryophyllene oxide (9.5%), β-caryophyllene (7.2%), α-eudesmol (6.5%) and germacrene D (6.2%).   

References

Adams, R. P. (2007). Identification of essential oil components by gas chromatography/mass spectroscopy. Carol Stream (IL): Allured.

Byun, E. B., Kim, M. J., Kim, S. J., Oh, N. S., Park, S. H., Kim, W. S., Song, H. Y., Han, J., Kim, K., & Byun, E. H. (2020). Antioxidant activity and neuroprotective effects of ethanol extracts from the core of Diospyros kaki. Korean Journal of Food Science and Technology, 52, 60-66.

Chiou, L. C., Ling, J. Y., & Chang, C. C. (1995). β-Eudesmol as an antidote for intoxication from organophosphorus anticholinesterase agents. European Journal of Pharmacology, 292, 151-156.

Chiou, L. C., Ling, J. Y., & Chang, C. C. (1997). Chinese herb constituent β-eudesmol alleviated the electroshock seizures in mice and electrographic seizures in rat hippocampal slices. Neuroscience Letters, 231, 171-174.

Dhifi, W., Bellili, S., Jazi, S., Bahloul, N., & Mnif, W. (2016). Essential oils' chemical characterization and investigation of some biological activities: A critical review. Medicines, 3, 25.

Feusso, H. M. F., Mvot Akak, C., Feussi Tala, M., Azebaze, A. G. B., Vardamides, J. C., & Laatsch, H. (2017). Mannic acid, a new ent-kaurane dimer diterpenoid and other chemical constituents from different parts of Diospyros mannii. Biochemical Systematics and Ecology, 74, 51-56.

Han, J., Kang, S., Choue, R., Kim, H., Leem, K., Chung, S., Kim, C., & Chung, J. (2002). Free radical scavenging effect of Diospyros kaki, Laminaria japonica and Undaria pinnatifida. Fitoterapia, 73, 710-712.

Jugreet, B. S., Suroowan, S. Rengasamy, R. R. K., & Mahomoodally, M. W. (2020). Chemistry, bioactivities, mode of action and industrial applications of essential oils. Trends in Food Science & Technology, 101, 89-105.

Kimura, Y., & Sumiyoshi, M. (2012). Effects of an Atractylodes lancea rhizome extract and a volatile component βeudesmol on gastrointestinal motility in mice. Journal of Ethnopharmacolpgy, 141, 530-536.

Lim, D. Y., & Kee, Y. W. (2005). Influence of β-eudesmol on blood pressure. Natural Product Sciences, 11, 33-40.

Nematollahi, A., Aminimoghadamfarou, N., Bradshaw, T. D., & Wiart, C. (2012). In vitro cytotoxic activity of two malaysian rainforest plants on colon carcinoma cell-line. Asian Journal of Pharmaceutical and Health Sciences, 2(1), 293-295.

Obara, Y., Aoki, T., Kusano, M., & Ohizumi, Y. (2002). β-Eudesmol induces neurite outgrowth in rat pheochromocytoma cells accompanied by an activation of mitogen-activated protein kinase. Journal of Pharmacology and Experimental Therapeutics, 301, 803-811.

Pino, J., Glory, L. C., & Fuentes, V. (2008). Volatile components of Mabolo (Diospyros blancoi A.DC.) Grown in Cuba. Journal of Essential Oil Research, 20(6), 506-508.

Plengsuriyakarn, T., Karbwang, J., & Na-Bangchang, K. (2015). Anticancer activity using positron emission tomographycomputed tomography and pharmacokinetics of β-eudesmol in human cholangiocarcinoma xenografted nude mouse model. Clinical and Experimental Pharmacology and Physiology, 42, 293-304.

Rauf, A., Uddin, G., Khan, H., Arfan, M., & Siddiqui, B. S. (2016). Bioassay-guided isolation of antibacterial constituents from Diospyros lotus roots. Natural Product Research, 30, 426-428.

Salae, A. W., Karalai, C., Ponglimanont, C., Kanjana-Opas, A., & Yuenyongsawad, S. (2010). Naphthalene derivatives from Diospyros wallichii. Canadian Journal of Chemistry, 88, 922-927. Nat. Volatiles & E

Salleh, W. M. N. H. W., Ahmad, F., & Khong, H. Y. (2014a). Chemical compositions and antimicrobial activity of the essential oils of Piper abbreviatum, P. erecticaule and P. lanatum (Piperaceae). Natural Product Communications, 9(12), 1795-1798.

Salleh, W. M. N. H. W., Ahmad, F., & Khong, H. Y. (2014b). Chemical composition of Piper stylosum Miq. and Piper ribesioides Wall. essential oils and their antioxidant, antimicrobial and tyrosinase inhibition activities. Boletin Latinoamericano y del Caribe de Plantas Medicinales y Aromaticas, 13(5), 488-497.

Salleh, W. M. N. H. W., Ahmad, F., & Khong, H. Y. (2014c). Antioxidant and anti-tyrosinase activities from Piper officinarum C.DC (Piperaceae). Journal of Applied Pharmaceutical Sciences, 4(5), 87-91.

Salleh, W. M. N. H. W., Kamil, F., Ahmad, F., & Sirat, H. M. (2015). Antioxidant and anti-inflammatory activities of essential oil and extracts of Piper miniatum. Natural Product Communications, 10(11), 2005-2008.

Salleh, W. M. N. H. W., & Ahmad, F. (2016a). Antioxidant and anti-inflammatory activities of essential oils of Actinodaphne macrophylla and A. pruinosa (Lauraceae). Natural Product Communications, 11(6), 853-855.

Salleh, W. M. N. H. W., Ahmad, F., Khong, H. Y., & Zulkifli, R. M. (2016b). Essential oil composition of Malaysian Lauraceae: A mini review. Pharmaceutical Sciences, 22(1), 60-67.

Salleh, W. M. N. H. W., Ahmad, F., Khong, H. Y., Zulkifli, R. M., Sarker, S. D. (2016c). Madangones A and B: Two new neolignans from the stem bark of Beilschmiedia madang and their bioactivities. Phytochemistry Letters, 15, 168-173.

Smith, R. M., & Belardo, L. O. (1992). Volatile compounds from the fruit peelings of Diospyros discolor Willd. Journal of Essential Oil Research, 4, 287-289.

Smitinand, T. (2001). Thai Plant Names. The Forest Herbarium, Royal Forest Dept., Bangkok.

Su, Y. C., Hsu, K. P., Wang, E. I. C., & Ho, C. L. (2015). Composition, in vitro cytotoxic, and antimicrobial activities of the flower essential oil of Diospyros discolor from Taiwan. Natural Product Communications, 10, 1311-1314.

Sulub-Tun, R. A., Rodríguez-García, C. M., Peraza-Echeverría, L., Torres-Tapia, L. W., Peraza-Sánchez, S. R., Pérez-Brito, D., & Vera-Ku, B. M. (2020). Antifungal activity of wild and nursery Diospyros cuneata, a native species of dune scrub. South African Journal of Botany, 131, 484-493.

Tameye, N. S. J., Akak, C. M., Happi, G. M., Frese, M., Stammler, H. G., Neumann, B., Lenta, B. N., Sewald, N., & Nkengfack, A. E. (2020). Antioxidant norbergenin derivatives from the leaves of Diospyros gilletii De Wild (Ebenaceae). Phytochemistry Letters, 36, 63-67.

The Plant List (2012). Version 1. Retrieved from http://www.theplantlist.org/

Tsuneki, H., Ma, E. L., Kobayashi, S., Sekizaki, N., Maekawa, K., Sasaoka, T., Wang, M. W., & Kimura, I. (2005). Antiangiogenic activity of β-eudesmol in vitro and in vivo. European Journal of Pharmacology, 512, 105-115.

Utsunomiya, N., Subhadrabandhu, S., Yonemori, K., Oshida, M., Kanzaki, S., Nakatsubo, F., & Sugiura, A. (1998). Diospyros species in Thailand: their distribution, fruit morphologhy and uses. Economic Botany, 52, 343-351.

Viswanathan, M. B., Maridass, M., Thangadurai, & D., Ramesh, N. (2002). Chemical constituents of the fruit essential oil of Diospyros malabarica (Desr.) Kostel (Ebenaceae). Acta Pharmaceutica, 52, 207-211.

Wisetsai, A., Schevenels, F. T., & Lekphrom, R. (2019). Chemical constituents and their biological activities from the roots of Diospyros filipendula. Natural Product Research, in press. https://doi.org/10.1080/14786419.2019.1656630

Yang, H. Q., Chen, G. H., Dong, S., Sun, Z., Wang, Y., Luo, X., Chen, B., Yao, G., Gao, Y., Chunxia, L. V., Zheng, D., Zhao, Y.,

Wang, T., Yan, S., & Yang, Y. (2020). Chemical constituents and medical function of leaves of Diospyros lotus L. Thermal Science, 24, 1633-1639.

Yang, Y. P., & Liu, H. Y. (1999). Manual of Taiwan vascular plants. Council of Agriculture, Taipei, Taiwan


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