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Research Article

Chemical components and antimicrobial properties of essential oil distilled from Siliquamomum oreodoxa N.S. Lý & Škornick (Zingiberaceae) rhizomes

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Pages 547-555 | Received 21 Sep 2022, Accepted 29 May 2023, Published online: 28 Jun 2023

References

  • Ly, N.S., Hul, S., Leong-Škorničková, J. (2010). Siliquamomum oreodoxa (Zingiberaceae): a New Species from Southern Vietnam. The Gardens' bulletin, Singapore. 61: 359-368.
  • Leong-Škorničková, J., Trần, H. Đ., Nguyễn, Q.B., Šída, O. (2014). Siliquamomum alcicorne (Zingiberaceae: Alpinioideae), a new species from central Vietnam. Gardens’ Bulletin Singapore. 66 (1): 39-46.
  • Luu, H.T., Tran, H.D., Tran, N.T., Nguyen, V.H., Pham, N.B. (2017). Siliquamomum phamhoangii, a new species of Zingiberaceae from the Central Highlands, Vietnam. Phytotaxa. 314(1): 135-139. doi: 10.11646/phytotaxa.314.1.14
  • Huong, L.T., Chau, D.T.M., Hung, N.V., Dai, D.N., Ogunwande, I.A. (2018). Volatile constituents of Siliquamomum tonkinense from Vietnam. Chem. Nat. Compd. 54(5): 990-991. doi: 10.1007/s10600-018-2531-8
  • The Committee of Vietnamese Pharmacopoeia. (2017). Vietnamese Pharmacopoeia 5th edition, Medical Publishing House, Vietnam
  • Paw, M., Begum, T., Gogoi, R., Pandey, S. K., Lal, M. (2020). Chemical Composition of Citrus limon L. Burmf Peel Essential Oil from North East India. J. Essent. Oil-Bear. Plants. 23(2): 337-344. doi: 10.1080/0972060X.2020.1757514
  • Sarma, N., Begum, T., Pandey, S.K., Gogoi, R., Munda, S., Lal, M. (2020). Chemical Composition of Syzygium cumini (L.) Skeels Leaf Essential Oil with Respect to its Uses from North East Region of India. J. Essent. Oil-Bear. Plants. 23(3): 601-607. doi: 10.1080/0972060X.2020.1796822
  • Hieu, T.T., Duc, D.X., Hieu, N.N., Danh, N.D., Tuan, N.H., Van Trung, H., Thang, T.D., Giang, L.D. (2023). Chemical Composition of the Volatile Oil from the Leaves of Kaempferia champasakensis Picheans. & Koonterm. (Zingiberaceae). J. Essent. Oil-Bear. Plants. 26(1): 108-114. doi: 10.1080/0972060X.2022.2161325
  • Adams, R.P. (2007). Identification of essential oil components by gas chromatography/quadrupolemass spectrometry, Allured Publ., Carol Stream, IL, USA
  • Kovats, E. (1965). Gas chromatographic characterization of organic substances in the retention index system. Adv. Chromatogr. 1: 229-247.
  • Tran-Trung, H., Giang, L.D., Trang, D.T. H., An, N.T.G., Hieu, N.N., Vu, D.C., Nguyen, T.H.D., Nguyen-Thi-Thu, H., Van Trung, H. (2023). Chemical Examination and Antimicrobial Activity of Essential Oils from the Leaves and Rhizomes of Meistera caudata Šída f. & Škorničk. (Zingiberaceae). J. Biol. Act. Prod. Nat. 13(1): 68-75.
  • Nguyen, D.D., Nguyen-Ngoc, H., Tran-Trung, H., Nguyen, D.-K., Thi Nguyen, L.-T. (2023). Limonene and eucalyptol rich essential oils with their antimicrobial activity from the leaves and rhizomes of Conamomum vietnamense N.S. Lý & T.S. Hoang (Zingiberaceae). Pharmacia. 70 (1): 91-96. doi: 10.3897/pharmacia.70.e96946
  • Huong, L.T., Sam, L.N., Dai, D.N., Ogunwande, I.A. (2021). Investigation into the Chemical Compositions and Antimicrobial Activity of Essential Oil from the Rhizomes of Boesenbergia quangngaiensis N.S. Lý from Vietnam. J. Essent. Oil-Bear. Plants. 24(5): 1125-1133. doi: 10.1080/0972060X.2021.2005690
  • Huong, L.T., Chau, D.T.M., An, N.T. G., Dai, D.N., Ogunwande, I.A. (2022). Essential oils of Lauraceae: Antimicrobial activity and constituents of Phoebe macrocarpa C.Y. Wu leaf essential oil from Vietnam. J. Essent. Oil-Bear. Plants. 25(2): 297-304. doi: 10.1080/0972060X.2022.2072694
  • Nhan, N.T., Lan, C.T., Linh, L.D., Huong, L.T., Dai, D.N., Ogunwande, I.A. (2021). Chemical compositions of essential oils and antimicrobial activity of Alpinia kwangsiensis from Vietnam. J. Essent. Oil-Bear. Plants. 24(4): 714-723. doi: 10.1080/0972060X.2021.1960204
  • Dung, N.A., Huong, L.T., Dai, D.N., Ogunwande, I.A. (2021). The leaf essential oil of Acorus macrospadiceus (Yam.) F. N. Wei & Y. K. Li from Vietnam: Chemical cmposition and antimicrobial activity. J. Essent. Oil-Bear. Plants. 24(4): 745-752. doi: 10.1080/0972060X.2021.1978871
  • Tuan, N.H., Quang, L.V., Tung, N.T., Ngoc, N.B., Khanh, P.N., Averyanov, L.V. (2021). Chemical composition and antibacterial properties of essential oil extracted from the leaves and the rhizomes of Stahlianthus thorelii Gagnep. (Zingiberaceae). J. Essent. Oil-Bear. Plants. 24(6): 1365-1372. doi: 10.1080/0972060X.2021.2020689
  • Rana, V.S., Ahluwalia, V., Shakil, N.A., Prasad, L. (2017). Essential oil composition, antifungal, and seedling growth inhibitory effects of zerumbone from Zingiber zerumbet Smith. J. Essent. Oil Res. 29(4): 320-329. doi: 10.1080/10412905.2016.1261051
  • Nadhuaddhin, R., Dasuli, M.S., Dewi, L. M., Sutrisna, E.M., Aji, B.S., Ardityawali, A.S., Ramona, F. (2017). Antibacterial effect of Boesenbergia pandurata essential oils from Indonesia toward Escherichia coli and Staphylococcus aureus. J. Biol. Innov. 6: 607-615.
  • Dai, D.N., Huong, L.T., Hung, N.H., Chinh, H.V., Ogunwande, I.A. (2020). Biological potentials of essential oil: antimicrobial activity, larvicidal efficacy and chemical compositions of essential oils from Alpinia malaccensis (Zingiberaceae) from Vietnam. In: What to know about essential oils, Nova Science Publisher, New York
  • Salehi, B., Upadhyay, S., Erdogan Orhan, I., Kumar Jugran, A., L D Jayaweera, S., A Dias, D., Sharopov, F., Taheri, Y., Martins, N., Baghalpour, N., Cho, W. C., Sharifi-Rad, J. (2019). Therapeutic potential of α- and β-pinene: A miracle gift of nature. Biomolecules. 9(11): 738. doi: 10.3390/biom9110738
  • Feng, X., Xiao, Z., Yang, Y., Chen, S., Liao, S., Luo, H., He, L., Wang, Z., Fan, G. (2021). β-Pinene Derived Products With Enhanced In Vitro Antimicrobial Activity. Nat. Prod. Commun. 16(2): 1934578X21992218.
  • Kovač, J., Šimunović, K., Wu, Z., Klančnik, A., Bucar, F., Zhang, Q., Možina, S.S. (2015). Antibiotic resistance modulation and modes of action of (-)-α-pinene in Campylobacter jejuni. PloS One. 10(4): e0122871. doi: 10.1371/journal.pone.0122871
  • Mączka, W., Duda-Madej, A., Górny, A., Grabarczyk, M., Wińska, K. (2021). Can Eucalyptol Replace Antibiotics? Molecules. 26(16): 4933. doi: 10.3390/molecules26164933
  • Merghni, A., Noumi, E., Hadded, O., Dridi, N., Panwar, H., Ceylan, O., Mastouri, M., Snoussi, M. (2018). Assessment of the antibiofilm and antiquorum sensing activities of Eucalyptus globulus essential oil and its main component 1,8-cineole against methicillin-resistant Staphylococcus aureus strains. Microb. Pathog. 118: 74-80. doi: 10.1016/j.micpath.2018.03.006
  • Hriouech, S., Akhmouch, A.A., Mzabi, A., Chefchaou, H., Tanghort, M., Oumokhtar, B., Chami, N., Remmal, A. (2020). The Antistaphylococcal Activity of Amoxicillin/Clavulanic Acid, Gentamicin, and 1,8-Cineole Alone or in Combination and Their Efficacy through a Rabbit Model of Methicillin-Resistant Staphylococcus aureus Osteomyelitis. Evid. Based Complement. Alternat. Med. 2020: 4271017.
  • Garzoli, S., Masci, V.L., Caradonna, V., Tiezzi, A., Giacomello, P., Ovidi, E. (2021). Liquid and Vapor Phase of Four Conifer-Derived Essential Oils: Comparison of Chemical Compositions and Antimicrobial and Antioxidant Properties. Pharmaceuticals. 14(2): 134. doi: 10.3390/ph14020134
  • Valková, V., Ďúranová, H., Galovičová, L., Vukovic, N.L., Vukic, M., Kačániová, M. (2021). In Vitro Antimicrobial Activity of Lavender, Mint, and Rosemary Essential Oils and the Effect of Their Vapours on Growth of Penicillium spp. in a Bread Model System. Molecules. 26(13): 3859. doi: 10.3390/molecules26133859

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