Research Article
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Year 2021, Volume: 8 Issue: 1, 1 - 12, 31.03.2021
https://doi.org/10.37929/nveo.786172

Abstract

References

  • Ahmad, B. F., Moharm, B. A., Jantan, I. (2010). A comparative study of the constituents of the essential oils of Goniothalamus tapis Miq. and G. tapisoides Mat Salleh from Borneo. Journal of Essential Oil Research, 22(6), 499-502.
  • Ahmad, F. B., Tukol, W. A., Omar, S., Sharif, A. M. (1991). 5-Acetyl goniothalamin, a styryl dihydropyrone from Goniothalamus uvaroides. Phytochemistry, 30(7), 2430-2431.
  • Akter, N., Habiba, N. A., Afrin, T., Ferdushi, M., Islam, S., Masud, K. N. A. (2018). Study of cytotoxic and thrombolytic activity of Goniothalamus sesquipedalis in different extracts. International Journal of Research in Pharmacy and Pharmaceutical Sciences, 3(6), 19-22.
  • Alkofahi, A., Rupprecht, J., Smith, D. L., Chang, C.J., Mclaughlin, J. L. (1998). Goniothalamin and annonacin: Bioactive acetogenins from Goniothamalus giganteus (Annonaceae). Experientia, 44, 83-85.
  • Anary, P. M., Brandao E., Déborah, Y., Santos, A. C. (2016). Chapter 9 - Nutritional value of the pulp of different sugar apple cultivars (Annona squamosa L.). Nutritional Composition of Fruit Cultivars.
  • Aslam, M. S., Ahmad, M. S., Mamat, A. S., Ahmad, M. Z., Salam, F.. (2016). Goniothalamus: phytochemical and ethnobotanical review. Recent Advances in Biology and Medicine, 2, 34-47.
  • Burger, P., Plainfossé, H., Brochet, X., Chemat, F., Fernandez, X. (2019). Extraction of natural fragrance ıngredients: history overview and future trends. Chemistry and Biodiversity, 16(10), e1900424.
  • Burkill, I. H. (1966). A Dictionary of Economic Pproducts of the Malay Peninsula. Ministry of Agriculture and Co-operative: Kuala Lumpur, Malaysia.
  • Duc, L. V., Thanh, T. B., Thanh, H. N., Tien, V. N. (2016). Chemical constituents and cytotoxic effect from the barks of Goniothalamus chinensis Merr. & Chun. growing in Vietnam. Journal of Applied Pharmaceutical Science, 6(4), 1-5.
  • Funnimid, N., Pompimon, W., Nuntasaen, N. (2019). In vitro evaluation of crude extracts and isolated compounds from Goniothalamus rongklanus and Goniothalamus latestigma for bioactive properties. Journal of Natural Remedies, 19(3), 146-152.
  • Ghani, S. H. A., Nor Azah, M. A., Mastura, M., Mailina, J., Saiful, J. A., Muhajir, H., Puad, A. M. (2010). Chemical constituents and antimicrobial activity of Goniothalamus macrophyllus (Annonaceae) from Pasoh Forest Reserve, Malaysia. African Journal of Biotechnology, 9(34), 5511-5515.
  • Iqbal, E., Salim, K. A., Lim, L. B. L. (2015). Phytochemical screening, total phenolics and antioxidant activities of bark and leaf extracts of Goniothalamus velutinus (Airy Shaw) from Brunei Darussalam. Journal of King Saud University – Science, 27(3), 224-232.
  • Inayat-Hussain, S. H., Osman, A. B., Din, L. B., Ali, A. M., Snowden, R. T. (1999). Caspases-3 and-7 are activated in Goniothalamin-induced apoptosis in human Jurkat T-cells. Federation of European Biochemical Societies Letters, 456(3), 379-383.
  • Jantan, I., Ahmad, A. S., Ahmad, F. (2005). A comparative study of the essential oils of four Goniothalamus species. Acta Horticulturae, 677, 27-36.
  • Jiang, M. M., Feng, Y. F., Gao, H., Zhang, X., Tang, J. S., Yao, X. S. (2011). Three new bis styryllactones from Goniothalamus cheliensis. Fitoterapia, 82(4), 524-527.
  • Jusoh, S., Ahmad, F., Din, L. B., Zakaria, Z. (2015). Essential oils from different parts of Goniothalamus ridleyi plant. Sains Malaysiana, 44(11), 1579-1585.
  • Kim, R. P. T., Bihud, V., Mohamad, K., Leong, K. H., Mohamad, J., Ahmad, F., Hazni, H., Kasim, N., Halim, S. N. A., Awang, K. (2013). Cytotoxic and antioxidant compounds from the stem bark of Goniothalamus tapisoides mat salleh. Molecules, 18(1), 128-139.
  • Mahiwan, C., Buayairaksa, M., Nuntasaen, N., Meepowpan, P., Pompimo, W. (2013). Potential cancer chemopreventive activity of styryllactones from Goniothalamus marcanii. American Journal of Applied Sciences, 10, 112-116.
  • Moharam, B. A., Jantan, I., Ahmad, F. B., Jalil, J. (2010). Antiplatelet aggregation and platelet activating factor (PAF) receptor antagonistic activities of the essential oils of five Goniothalamus species. Molecules, 15(8), 5124-5138.
  • Moharam, B. A., Jantan, I., Jalil, J., Ahmad, F. B. (2012). Inhibitory effect of compounds from Goniothalamus tapis Miq. and Goniothalamus uvaroides king on platelet activating factor receptor binding. Phytotherapy Research, 26(5), 687-691.
  • Nielsen, I. (1993). Flowers of Annonaceae: morphology, classification and evolution. Nordic Journal of Botany, 13(5), 1. Quisumbing, E. (1951). Medicinal Plants of the Philippines. Bureau of Printing, Manila.
  • Salleh, W. M. N. H. W., Ahmad, F., Khong, H. Y. (2014a). 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, 13(5), 488-497.
  • Salleh, W. M. N. H. W., Ahmad, F., Khong, H. Y. (2014b). 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., Zulkifli, R. M. (2015a). Chemical compositions and biological activities of essential oils of Beilschmiedia glabra. Natural Product Communications, 10(7), 1297-1300.
  • Salleh, W. M. N. H. W., Ahmad, F., Khong, H. Y. (2015b). Antioxidant and anticholinesterase activities of essential oils of Cinnamomum griffithii and C. macrocarpum. Natural Product Communications, 10(8), 1465-1468.
  • Salleh, W. M. N. H. W., Kamil, F., Ahmad, F., Sirat, H. M. (2015c). 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., Khong, H. Y., Zulkifli, R. M. (2016a). Essential oil composition of Malaysian Lauraceae: A mini review. Journal of Pharmaceutical Sicences, 22(1), 60-67.
  • Salleh, W. M. N. H. W., Ahmad, F., Khong, H. Y., Zulkifli, R. M. (2016b). Comparative study of the essential oils of three Beilschmiedia species and their biological activities. International Journal of Food Science and Technology, 51, 240-249.
  • Salleh, W. M. N. H. W., Ahmad, F., Khong, H. Y., Zulkifli, R. M. (2016c). Chemical composition and biological activities of essential oil of Beilschmiedia pulverulenta. Pharmaceutical Biology, 54(2), 322-330.
  • Shaharudin, S. M., Ahmad, N., Yusof, F. (2013). Improved cluster partition in principal component analysis guided clustering. International Journal of Computer Applications, 75, 22-25.
  • Shaharudin, S. M., Ahmad, N., Zainuddin, N. H., Mohamed, N. S. (2018). Identification of rainfall patterns on hydrological simulation using Robust Principal Component Analysis. Indonesian Journal of Electrical Engineering and Computer Science, 11, 1162-1167.
  • Silva, F. G., Oliveira, C. B. A., Pinto, J. E. B. P., Nascimento, V. E., Santos, S. C., Seraphin, J. C., Ferri, P. H. (2007). Seasonal variability in the essential oils of wild and cultivated Baccharis trimera. Journal of the Brazilian Chemical Society, 18, 990-997.
  • Wiart, C. (2006). Medicinal Plants of Asia and the Pacific. Taylor & Francis, Boca Raton, London, New York.
  • Wiart, C. (2007) Goniothalamus species: a source of drugs for the treatment of cancers and bacterial infections?. Evidence-Based Complementary and Alternative Medicine, 4, 299-311.
  • Wickramagamage, P. (2010). Seasonality and spatial pattern of rainfall of Sri Lanka: Exploratory factor analysis. International Journal of Climatology, 30, 1235-1245.
  • Winska, K., Mączka, W., Lyczko, J., Grabarczyk, M., Czubaszek, A., Szumny, A. (2019). essential oils as antimicrobial agents-myth or real alternative?. Molecules, 24(11), 2130.
  • Wu, Y. C., Duh, C. Y., Chang, F. R., Chang, G. Y., Wang, S. K. (1991). The crystal structure and cytotoxicity of goniodiol-7-monoacetate from Goniothalamus amuyon. Journal of Natural Products, 54(4), 1077-1081.

Review on Malaysian Goniothalamus essential oils and their comparative study using multivariate statistical analysis

Year 2021, Volume: 8 Issue: 1, 1 - 12, 31.03.2021
https://doi.org/10.37929/nveo.786172

Abstract

The genus Goniothalamus is belonging to the Annonaceae family, consists of ca. 2500 species and found in tropical Southeast Asia. The Goniothalamus essential oils were recognized to possess considerable biological activities with varied chemical composition. This article aims to overview the medicinal uses, chemical compositions, and biological activities of Malaysian Goniothalamus essential oils considered as a medicinal plants, widely used as traditional herbal medicines in the treatment of various diseases. The data were collected from the scientific electronic databases including SciFinder, Scopus, Elsevier, PubMed and Google Scholar. Ten Goniothalamus species have been reported for their essential oils and biological activities. It can be observed that the major components were α-cadinol, terpinen-4-ol, β-eudesmol, β-selinene, linalool, limonene, α-copaene, 1,8-cineole and β-cubebene. In addition, the selected chemical components from the bark, leaf and root oils were analysed using Principal Component Analysis (PCA) and Hierarchical Cluster Analysis (HCA) and were able to cluster in four groups based on relationships and chemical patterns in essential oils. This multivariate data analysis may be used for the identification and characterization of essential oils from different Goniothalamus species that are to be used as raw materials of traditional herbal products.

References

  • Ahmad, B. F., Moharm, B. A., Jantan, I. (2010). A comparative study of the constituents of the essential oils of Goniothalamus tapis Miq. and G. tapisoides Mat Salleh from Borneo. Journal of Essential Oil Research, 22(6), 499-502.
  • Ahmad, F. B., Tukol, W. A., Omar, S., Sharif, A. M. (1991). 5-Acetyl goniothalamin, a styryl dihydropyrone from Goniothalamus uvaroides. Phytochemistry, 30(7), 2430-2431.
  • Akter, N., Habiba, N. A., Afrin, T., Ferdushi, M., Islam, S., Masud, K. N. A. (2018). Study of cytotoxic and thrombolytic activity of Goniothalamus sesquipedalis in different extracts. International Journal of Research in Pharmacy and Pharmaceutical Sciences, 3(6), 19-22.
  • Alkofahi, A., Rupprecht, J., Smith, D. L., Chang, C.J., Mclaughlin, J. L. (1998). Goniothalamin and annonacin: Bioactive acetogenins from Goniothamalus giganteus (Annonaceae). Experientia, 44, 83-85.
  • Anary, P. M., Brandao E., Déborah, Y., Santos, A. C. (2016). Chapter 9 - Nutritional value of the pulp of different sugar apple cultivars (Annona squamosa L.). Nutritional Composition of Fruit Cultivars.
  • Aslam, M. S., Ahmad, M. S., Mamat, A. S., Ahmad, M. Z., Salam, F.. (2016). Goniothalamus: phytochemical and ethnobotanical review. Recent Advances in Biology and Medicine, 2, 34-47.
  • Burger, P., Plainfossé, H., Brochet, X., Chemat, F., Fernandez, X. (2019). Extraction of natural fragrance ıngredients: history overview and future trends. Chemistry and Biodiversity, 16(10), e1900424.
  • Burkill, I. H. (1966). A Dictionary of Economic Pproducts of the Malay Peninsula. Ministry of Agriculture and Co-operative: Kuala Lumpur, Malaysia.
  • Duc, L. V., Thanh, T. B., Thanh, H. N., Tien, V. N. (2016). Chemical constituents and cytotoxic effect from the barks of Goniothalamus chinensis Merr. & Chun. growing in Vietnam. Journal of Applied Pharmaceutical Science, 6(4), 1-5.
  • Funnimid, N., Pompimon, W., Nuntasaen, N. (2019). In vitro evaluation of crude extracts and isolated compounds from Goniothalamus rongklanus and Goniothalamus latestigma for bioactive properties. Journal of Natural Remedies, 19(3), 146-152.
  • Ghani, S. H. A., Nor Azah, M. A., Mastura, M., Mailina, J., Saiful, J. A., Muhajir, H., Puad, A. M. (2010). Chemical constituents and antimicrobial activity of Goniothalamus macrophyllus (Annonaceae) from Pasoh Forest Reserve, Malaysia. African Journal of Biotechnology, 9(34), 5511-5515.
  • Iqbal, E., Salim, K. A., Lim, L. B. L. (2015). Phytochemical screening, total phenolics and antioxidant activities of bark and leaf extracts of Goniothalamus velutinus (Airy Shaw) from Brunei Darussalam. Journal of King Saud University – Science, 27(3), 224-232.
  • Inayat-Hussain, S. H., Osman, A. B., Din, L. B., Ali, A. M., Snowden, R. T. (1999). Caspases-3 and-7 are activated in Goniothalamin-induced apoptosis in human Jurkat T-cells. Federation of European Biochemical Societies Letters, 456(3), 379-383.
  • Jantan, I., Ahmad, A. S., Ahmad, F. (2005). A comparative study of the essential oils of four Goniothalamus species. Acta Horticulturae, 677, 27-36.
  • Jiang, M. M., Feng, Y. F., Gao, H., Zhang, X., Tang, J. S., Yao, X. S. (2011). Three new bis styryllactones from Goniothalamus cheliensis. Fitoterapia, 82(4), 524-527.
  • Jusoh, S., Ahmad, F., Din, L. B., Zakaria, Z. (2015). Essential oils from different parts of Goniothalamus ridleyi plant. Sains Malaysiana, 44(11), 1579-1585.
  • Kim, R. P. T., Bihud, V., Mohamad, K., Leong, K. H., Mohamad, J., Ahmad, F., Hazni, H., Kasim, N., Halim, S. N. A., Awang, K. (2013). Cytotoxic and antioxidant compounds from the stem bark of Goniothalamus tapisoides mat salleh. Molecules, 18(1), 128-139.
  • Mahiwan, C., Buayairaksa, M., Nuntasaen, N., Meepowpan, P., Pompimo, W. (2013). Potential cancer chemopreventive activity of styryllactones from Goniothalamus marcanii. American Journal of Applied Sciences, 10, 112-116.
  • Moharam, B. A., Jantan, I., Ahmad, F. B., Jalil, J. (2010). Antiplatelet aggregation and platelet activating factor (PAF) receptor antagonistic activities of the essential oils of five Goniothalamus species. Molecules, 15(8), 5124-5138.
  • Moharam, B. A., Jantan, I., Jalil, J., Ahmad, F. B. (2012). Inhibitory effect of compounds from Goniothalamus tapis Miq. and Goniothalamus uvaroides king on platelet activating factor receptor binding. Phytotherapy Research, 26(5), 687-691.
  • Nielsen, I. (1993). Flowers of Annonaceae: morphology, classification and evolution. Nordic Journal of Botany, 13(5), 1. Quisumbing, E. (1951). Medicinal Plants of the Philippines. Bureau of Printing, Manila.
  • Salleh, W. M. N. H. W., Ahmad, F., Khong, H. Y. (2014a). 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, 13(5), 488-497.
  • Salleh, W. M. N. H. W., Ahmad, F., Khong, H. Y. (2014b). 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., Zulkifli, R. M. (2015a). Chemical compositions and biological activities of essential oils of Beilschmiedia glabra. Natural Product Communications, 10(7), 1297-1300.
  • Salleh, W. M. N. H. W., Ahmad, F., Khong, H. Y. (2015b). Antioxidant and anticholinesterase activities of essential oils of Cinnamomum griffithii and C. macrocarpum. Natural Product Communications, 10(8), 1465-1468.
  • Salleh, W. M. N. H. W., Kamil, F., Ahmad, F., Sirat, H. M. (2015c). 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., Khong, H. Y., Zulkifli, R. M. (2016a). Essential oil composition of Malaysian Lauraceae: A mini review. Journal of Pharmaceutical Sicences, 22(1), 60-67.
  • Salleh, W. M. N. H. W., Ahmad, F., Khong, H. Y., Zulkifli, R. M. (2016b). Comparative study of the essential oils of three Beilschmiedia species and their biological activities. International Journal of Food Science and Technology, 51, 240-249.
  • Salleh, W. M. N. H. W., Ahmad, F., Khong, H. Y., Zulkifli, R. M. (2016c). Chemical composition and biological activities of essential oil of Beilschmiedia pulverulenta. Pharmaceutical Biology, 54(2), 322-330.
  • Shaharudin, S. M., Ahmad, N., Yusof, F. (2013). Improved cluster partition in principal component analysis guided clustering. International Journal of Computer Applications, 75, 22-25.
  • Shaharudin, S. M., Ahmad, N., Zainuddin, N. H., Mohamed, N. S. (2018). Identification of rainfall patterns on hydrological simulation using Robust Principal Component Analysis. Indonesian Journal of Electrical Engineering and Computer Science, 11, 1162-1167.
  • Silva, F. G., Oliveira, C. B. A., Pinto, J. E. B. P., Nascimento, V. E., Santos, S. C., Seraphin, J. C., Ferri, P. H. (2007). Seasonal variability in the essential oils of wild and cultivated Baccharis trimera. Journal of the Brazilian Chemical Society, 18, 990-997.
  • Wiart, C. (2006). Medicinal Plants of Asia and the Pacific. Taylor & Francis, Boca Raton, London, New York.
  • Wiart, C. (2007) Goniothalamus species: a source of drugs for the treatment of cancers and bacterial infections?. Evidence-Based Complementary and Alternative Medicine, 4, 299-311.
  • Wickramagamage, P. (2010). Seasonality and spatial pattern of rainfall of Sri Lanka: Exploratory factor analysis. International Journal of Climatology, 30, 1235-1245.
  • Winska, K., Mączka, W., Lyczko, J., Grabarczyk, M., Czubaszek, A., Szumny, A. (2019). essential oils as antimicrobial agents-myth or real alternative?. Molecules, 24(11), 2130.
  • Wu, Y. C., Duh, C. Y., Chang, F. R., Chang, G. Y., Wang, S. K. (1991). The crystal structure and cytotoxicity of goniodiol-7-monoacetate from Goniothalamus amuyon. Journal of Natural Products, 54(4), 1077-1081.
There are 37 citations in total.

Details

Primary Language English
Journal Section Reviews
Authors

Natasa Mohd Shakri This is me 0000-0003-3467-6597

Wan Mohd Nuzul Hakimi Wan Salleh 0000-0003-1408-229X

Shazlyn Milleana Shaharudin This is me 0000-0001-8243-5646

Publication Date March 31, 2021
Published in Issue Year 2021 Volume: 8 Issue: 1

Cite

APA Shakri, N. M., Salleh, W. M. N. H. W., & Shaharudin, S. M. (2021). Review on Malaysian Goniothalamus essential oils and their comparative study using multivariate statistical analysis. Natural Volatiles and Essential Oils, 8(1), 1-12. https://doi.org/10.37929/nveo.786172