Physicochemical Properties, Chemical Compositions and Antioxidant Activities of Rhizome Oils from Two Varieties of Kaempferia galanga

https://doi.org/10.22146/ijc.66348

I Wayan Muderawan(1*), I Wayan Mudianta(2), Ni Wayan Martiningsih(3)

(1) Department of Chemistry, Faculty of Mathematics and Natural Sciences, Ganesha University of Education, Singaraja 81117, Bali, Indonesia
(2) Department of Chemistry, Faculty of Mathematics and Natural Sciences, Ganesha University of Education, Singaraja 81117, Bali, Indonesia
(3) Department of Chemistry, Faculty of Mathematics and Natural Sciences, Ganesha University of Education, Singaraja 81117, Bali, Indonesia
(*) Corresponding Author

Abstract


Kaempferia galanga is a tropical plant with an impressive range of food and medicinal uses. This study, therefore, investigated the variation in yields, physicochemical properties, chemical compositions, and antioxidant activities of rhizome oils from two K. galanga varieties, K. galanga bigger rhizomes (V1) and K. galanga smaller rhizomes (V2), isolated by steam distillation (S) and maceration (M) techniques. The air-dried rhizomes' oil contents were found to be 2.81±0.09% (SV1O), 7.93±0.20% (MV1O), 3.60±0.10% (SV2O), and 8.76±0.22% (MV2O), respectively. From the GC-MS analysis, the SV1O, MV1O, SV2O, and MV2O samples contain 49, 48, 61, and 56 compounds, respectively. Furthermore, ethyl trans-p-methoxycinnamate was the most prevalent chemical constituent in four oils with a percentage contribution of 43.37% (SV1O), 60.62% (MV1O), 24.92% (SV2O), and 57.17% (MV2O). Several long-chain alcohols (6Z,9Z-pentadeca-6,9-dien-1-ol, 9E,12E-octadeca-9,12-dien-1-ol, heptadecan-1-ol), aldehyde (Z-octadec-9-enal), carboxylic acids (4-(4-methoxyphenyl)oxane-4-carboxylic acid, hexadecanoic acid), diterpene sandaracopimaradiene, steroid ergosterol, and alkaloid 2-imino-3-(3-nitrophenyl)-1,3-thiazolidin-4-one, were also identified in K. galanga rhizome oils isolated by maceration method. In addition, all oils showed high antioxidant activities with the IC50 values of 86.10±1.51, 85.24±1.48, 89.19±1.72, and 86.49±2.03 μg/mL for SV1O, MV1O, SV2O, and MV2O, respectively.

Keywords


Kaempferia galanga; rhizome oil; physicochemical properties; chemical compositions; antioxidant activities

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References

[1] Kumar, A., 2020, Phytochemistry, pharmacological activities and uses of traditional medicinal plant Kaempferia galanga L. – an Overview, J. Ethnopharmacol., 253, 112667.

[2] Preetha, T.S., Hemanthakumar, A.S., and Krishnan, P.N., 2016, A comprehensive review of Kaempferia Galanga L. (Zingiberaceae): A high sought medicinal plant in Tropical Asia, J. Med. Plants Stud., 4 (3), 270–276.

[3] Maurya, S.K., and Seth, A., 2014, Potential medicinal plants and traditional Ayurvedic approach towards Urticaria, an allergic skin disorder, Int. J. Pharm. Pharm. Sci., 6 (5), 172–177.

[4] Chan, E.W.C., Lim, Y.Y., Wong, L.F., Lianto, F.S., Wong, S.K., Lim, K.K., Joe, C.E., and Lim, T.Y., 2008, Antioxidant and tyrosinase inhibition properties of leaves and rhizomes of ginger species, Food Chem., 109 (3), 477–483.

[5] Elfahmi, Woerdenbag, H.J., and Kayser, O., 2014, Jamu: Indonesian traditional herbal medicine towards rational phytopharmacological use, J. Herb. Med., 4 (2), 51–73.

[6] Srivastava, N., Ranjana, Singh, S., Gupta, A.C., Shanker, K., Bawankule, D.U., and Luqman, S., 2019, Aromatic ginger (Kaempferia galanga L.) extracts with ameliorative and protective potential as a functional food, beyond its flavor and nutritional benefits, Toxicol. Rep., 6, 521–528.

[7] Ali, H., Yesmin, R., Satter, M.A., Habib, R., and Yeasmin, T., 2018, Antioxidant and antineoplastic activities of methanolic extract of Kaempferia galanga Linn. rhizome against Ehrlich ascites carcinoma cells, J. King Saud Univ., Sci., 30 (3), 386–392.

[8] Amuamuta, A., Plengsuriyakarn, T., and Na-Bangchang, K., 2017, Anticholangiocarcinoma activity and toxicity of the Kaempferia galanga Linn. rhizome ethanolic extract, BMC Complementary Altern. Med., 17 (1), 213.

[9] Plengsuriyakarn, T., Viyanant, V., Eursitthichai, V., Picha, P., Kupradinun, P., Itharat, A., and Na-Bangchang, K., 2012, Anticancer activities against cholangiocarcinoma, toxicity and pharmacological activities of Thai medicinal plants in animal models, BMC Complementary Altern. Med., 12, 23.

[10] Othman, R., Ibrahim, H., Mohd, M.A., Mustafa, M.R., and Awang, K., 2006, Bioassay-guided isolation of a vasorelaxant active compound from Kaempferia galanga L., Phytomedicine, 13 (1-2), 61–66.

[11] Jagadish, P.C., Latha, K.P., Mudgal, J., and Nampurath, G.K., 2016, Extraction, characterization and evaluation of Kaempferia galanga L. (Zingiberaceae) rhizome extracts against acute and chronic inflammation in rats, J. Ethnopharmacol., 194, 434–439.

[12] Rostiana, O., Abdulah, A., Martono, B., Haryudin, W., and Aisyah, S., 1993, Pengaruh rimpang utama dan rimpang cabang terhadap pertumbuhan dan produksi tiga tipe kencur di kp. Citayam, Bul. Littro, 8 (2), 89–93.

[13] Rostiana, O.S.M., Rosita, H., Wawan, Supriadi, and Aisyah, S., 2003, Status pemuliaan tanaman kencur, Perkembangan Teknologi Tanaman Rempah dan Obat, 15 (2), 25–38.

[14] Barkatullah, Ibrar, M., Rauf, A., and Ur-Rahman, I., 2012, Physicochemical characterization of essential and fixed oils of Skimmia laureola and Zanthoxylum armatum, Middle-East J. Med. Plants Res., 1 (3), 51–58.

[15] Kumar, A., 2014, Physico-chemical and natural products investigations of essential oil from the rhizomes of Kaempferia galanga L., Chem. Sin., 5 (2), 91–94.

[16] Fan, S., Chang, J., Zong, Y., Hu, G., and Jia, J., 2018, GC-MS analysis of the composition of the essential oil from Dendranthema indicum Var. Aromaticum using three extraction methods and two columns, Molecules, 23 (3), 576.

[17] Shekhar, T.C., and Anju, G., 2014, Antioxidant activity by DPPH radical scavenging method of Ageratum conyzoides Linn. leaves, Am. J. Ethnomed., 1 (4), 244–249.

[18] Ali, H., Yesmin, R., Satter, M.A., Habib, R., and Yeasmin, T., 2018, Antioxidant and antineoplastic activities of methanolic extract of Kaempferia galanga Linn. rhizome against Ehrlich ascites carcinoma cells, J. King Saud Univ., Sci., 30 (3), 386–392.

[19] Huda, M.I., Daryon, E.D., and Muyassaroh, 2013, Minyak kencur dari rimpang kencur dengan variabel jumlah pelarut dan waktu maserasi, Jurnal Teknik Kimia, 8 (1), 1–6.

[20] Wong, K.C., Ong, K.S., and Lim, C.L., 1992, Composition of the essential oil of rhizomes of Kaempferia galanga L., Flavour Fragrance J., 7 (5), 263–266.

[21] Reveglia, P., Cimmino, A., Masi, M., Nocera, P., Berova, N., Ellestad, G., and Evidente, A., 2018, Pimarane diterpenes: Natural source, stereochemical configuration, and biological activity, Chirality, 30 (10), 1115–1134.

[22] Swapana, N., Tominaga, T., Elshamy, AI., Ibrahim, M.A., Hegazy, M.E.F., Singh, C.B., Suenaga, M., Imagawa, H., Noji, M., and Umeyama, A., 2018, Kaemgalangol A: Unusual seco-isopimarane diterpenoid from aromatic ginger Kaempferia galanga, Fitoterapia, 129, 47–53.

[23] Jordá, T., and Puig, S., 2020, Regulation of ergosterol biosynthesis in Saccharomyces cerevisiae, Genes, 11 (7), 795.

[24] Hirsch, A.L., 2011, “Industrial Aspects of Vitamin D" in Vitamin D, 3rd Ed., Eds. Feldman, D., Pike, J.W., and Adams, J.S., Academic Press, San Diego, 73–93.

[25] Adianingsih, O.R., Widaryanto, E., Saitama, A., and Zaini, A.H., 2021, Analysis of bioactive compounds present in Kaempferia galanga rhizome collected from different regions of East Java, Indonesia, IOP Conf. Ser.: Earth Environ. Sci., 913, 012074.

[26] Yang, Y., Tian, S., Wang, F., and Li, Z., 2018, Chemical composition and antibacterial activity of Kaempferia galanga essential oil, Int. J. Agric. Biol., 20 (2), 457–462.

[27] Li, Y.C., Ji, H., Li, X.H., Zhang, H.X., and Li, H.T., 2017, Isolation of nematicidal constituents from essential oil of Kaempferia galanga L rhizome and their activity against Heterodera avenae Wollenweber, Trop. J. Pharm. Res., 16 (1), 59–65.

[28] Raina, A.P., Abraham, Z., and Sivaraj, N., 2015. Diversity analysis of Kaempferia galanga L. germplasm from South India using DIVA-GIS approach, Ind. Crops Prod., 69, 433–439.

[29] Srivastava, N., Ranjana, Singh, S., Gupta, A.C., Shanker, K., Bawankule, D.U., and Luqman, S., 2019, Aromatic ginger (Kaempferia galanga L.) extracts with ameliorative and protective potential as a functional food, beyond its flavor and nutritional benefits, Toxicol. Rep., 6, 521-528.

[30] Baharudin, M.K.A., Hamid, S.A., and Susanti, D., 2015, Chemical composition and antibacterial activity of essential oils from three aromatic plants of the Zingiberaceae family in Malaysia, J. Phys. Sci., 26 (1), 71–81.

[31] Tewtrakul, S., Yuenyongsawad, S., Kummee, S., and Atsawajaruwan, L., 2005, Chemical components and biological activities of volatile oil of Kaempferia galanga Linn, Songklanakarin J. Sci. Technol., 27 (Suppl. 2), 503–507.

[32] Wang, S.Y., Zhao, H., Xu, H.T., Han, X.D., Wu, Y.S., Xu, F.F., Yang, X.B., Göransson, U., and Liu, B., 2021, Kaempferia galanga L.: Progresses in phytochemistry, pharmacology, yoxicology and ethnomedicinal uses, Front. Pharmacol., 12, 675350.

[33] Bhuiyan, M.N.I., Begum, J., and Anwar, M., 2013, Essential oils of leaves and rhizomes of Kaempferia galanga Linn, Chittagong Univ. J. Biol. Sci., 3 (1-2), 65–76.

[34] Sahoo, S., Parida, R., Singh, S., Padhy, R.N., and Nayak, S., 2014, Evaluation of yield, quality and antioxidant activity of essential oil of in vitro propagated Kaempferia galanga Linn, J. Acute Dis., 3 (2), 124–130.



DOI: https://doi.org/10.22146/ijc.66348

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