UPSI Digital Repository (UDRep)
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Abstract : Universiti Pendidikan Sultan Idris |
The genus Lindera consists of approximately 100 species that are widely distributed in tropical and subtropical areas throughout the world. It is represented by widely wellknown medicinal and aromatic plants that produce essential oil. This review attempts to summarise the information on the essential oils of Lindera species together with their chemical composition and biological properties. The data and information were collected via an electronic search engine, namely: Scopus, ScienceDirect, Google Scholar, PubMed, and SciFinder. A total of thirteen Lindera species have been reported for their essential oils and biological activities. Sesquiterpenes were identified as the major group components in Lindera species with the presence mainly of β-caryophyllene, as well as monoterpenes which were dominated by limonene, α-copaene, α-pinene, and 1,8-cineole. In addition, the Lindera essential oils also displayed various biological activities including anti-allergic, anti-arthritic, antivirus, antibacterial, anticancer, anti-inflammatory, antitumor, and cytotoxicity. The outcome of these studies will further support the therapeutic potential of the genus Lindera and provide convincing evidence for its future clinical applications in modern medicine. © 2024, INNOVHUB - Stazioni Sperimentali per l'Industria S.r.l - Area Oli e Grassi. All rights reserved. |
References |
W.M.N.H.W. Salleh, F. Ahmad, K.H. Yen, (2015) Chemical compositions, and biological activities of the essential oils of Beilschmiedia madang Blume (Lauraceae). Arch. Pharm. Res. 38, 485-493. W.M.N.H.W. Salleh, F. Ahmad, K.H. Yen, R.M. Zulkifli, S.D. Sarker, Madangones A and B: Two new neolignans from the stem bark of Beilschmiedia madang and their bioactivities. Phytochem. Lett. 15, 68-173 (2016). W.M.N.H.W. Salleh, F. Ahmad, K.H. Yen, R.M. Zulkifli, J.J. Chen, L. Nahar, J.D. Wansi, S.D. Sarker, Beilschglabrines A and B: Two new bioactive phenanthrene alkaloids from the stem bark of Beilschmiedia glabra. Phytochem. Lett. 16, 192-196. H. Feng, Y. Jiang, H. Cao, Y. Shu, X. Yang, D. Zhu, M. Shao. (2022) Chemical characteristics of the sesquiterpenes and diterpenes from Lauraceae family and their multifaceted health benefits: a review. Heliyon 8(12), e12013. W.M.N.H.W. Salleh, F. Ahmad, K.H. Yen, R. Zulkifli, Essential oil compositions of Malaysian lauraceae: a mini review. Pharm. Sci. 22(1), 60-67. M.E. Haque, S. Azam, R. Balakrishnan, M. Akther, I.S. Kim, (2020) Therapeutic potential of Lindera obtusiloba: focus on antioxidative and pharmacological properties. Plants 9(12), 1765. T. Britannica. (2023) Editors of Encyclopaedia Lauraceae. Encyclopedia Britannica. M. Nakamura, S. Nanami, S. Okuno, S.K. Hirota, A. Matsuo, Y. Suyama, H. Takumoto, S. Yoshihara, A. Itoh, (2021) Genetic diversity and structure of apomictin and sexually reproducing Lindera species (Lauraceae) in Japan. Forest 12(2), 227. D. Trivedi, (2021) Aromatherapy and Yagya therapy for mental health. Interdis. J. Yagya Res. 3(2), 29-41. F.L.M. Zaki, W.M.N.H.W. Salleh, N.N.M. Noor, S.M. Shaharudin, N.A .Ghani, (2022) Characterisation of the essential oil components and their multivariate statistical analysis of the genus Vitex and Plectranthus (Lamiaceae). Riv. Ital. Sostanze Grasse 99(3), 263-268. A.A.H. Yahaya, W.M.N.H.W. Salleh, (2022) Magnolia genus - A systematic review on the composition and biological properties of its essential oils. Riv. Ital. Sostanze Grasse 99(3), 249-261. N.H.A. Kadir, W.M.N.H.W. Salleh, (2022) A systematic review on essential oils and biological activities of the genus Syzygium (Myrtaceae). Riv. Ital. Sostanze Grasse 99(2), 165-178. M.A.M. Azhar, W.M.N.H.W. Salleh, S. Khamis, N.A. Ghani. (2022) Variation in essential oil composition of three Litsea species from Malaysia. Riv. Ital. Sostanze Grasse 99(1), 57-61. W.M.N.H.W. Salleh, H. Kassim, A. Tawang, (2021) Volatile components and biological activities of Pulicaria essential oils. A review. Riv. Ital. Sostanze Grasse 98(1), 49-58. N.M. Shakri, W.M.N.H.W. Salleh, N.A.M. Ali, (2020) Chemical composition and biological activities of the essential oils of genus Xylopia L. (Annonaceae)- a review. Riv. Ital. Sostanze Grasse 97(4), 25-34,. D. Moher, A. Liberati, J. Tetzlaff, G.A. Douglas, (2009) PRISMA Group. Preferred reporting items for systematic review and meta-analyses: The PRISMA statement. ANN. Intern. Med. 151, 264-269,. Y. Lv, Y. Zou, X. Zhang, B. Liu, X. Peng, C. Chu, (2023) A review on the chemical constituents and pharmacological efficacies of Lindera aggregata (Sims) Kosterm. Front. Nutr. 16(9), 1071276. C.P. Yang, P.H. Shie, G.J. Huang, S.C. Chien, Y.H. Kuo, (2019) New anti-inflammatory flavonol glycosides from Lindera akoensis Hayata. Molecules 24(3), 563. Q. Zhao, Y. Zhao, K. Wng, (2006) Antinociceptive and free radical scavenging activities of alkaloids isolated from Lindera angustifolia Chen. J. Ethnopharmacol. 106(3), 408-413. |
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