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Articles

Chemical Composition and Antimicrobial Activity of Essential Oil from the Stem of Magnolia coco (Lour.) DC. from Vietnam

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Pages 669-677 | Received 02 Sep 2020, Accepted 19 Sep 2020, Published online: 06 Oct 2020

References

  • Chung, N.T., Huong, L.T., Dai, D.N., Ogunwande, I.A. (2020). Chemical compositions of essential oils and antimicrobial activity of Hyptis suaveolens (L.) Poit. (Lamiaceae) from Vietnam. Eur. J. Med. Plants. 31: 114-123. doi: 10.9734/ejmp/2020/v31i830264
  • Elshafie, E., Camele, I. (2017). An overview of the biological effects of some Mediterranean essential oils on human health. BioMed. Res. Int. 2017: Article ID 9268468. doi: doi.org/10.1155/2017/9268468
  • Dai, D.N., Huong, L.T., Hung, N.H., Chinh, H.V., Ogunwande, I.A. (2020). Antimicrobial activity and chemical constituents of essential oil from the leaves of Alpinia globosa and Alpinia tonkinensis. J. Essent. Oil Bearing Plants. 23(2): 323-330. doi: 10.1080/0972060X.2020.1752816
  • Chau, D.T.M., Chung, N.T., Huong, L.T., Hung, N.H., Ogunwande, I.A., Dai, N.D., Setzer, W.N. (2020). Chemical compositions, mosquito larvicidal and antimicrobial activities of leaf essential oils of eleven species of Lauraceae from Vietnam. Plants. 9: 606; 20 pages. doi: 10.3390/plants9050606
  • Huong, L.T., Thuong, N.T.H., Chac, L.D., Dai, D.N., Ogunwande, I.A. (2020). Antimicrobial activity and chemical constituents of essential oils from the leaf and wood of Taxus chinensis (Rehder & E. H. Wilson) Rehder (Taxaceae) from Vietnam. J. Biol. Active Products Nature. 10: 8-17. doi: 10.1080/22311866.2020.1749128
  • Huong, L.T., Huong, T.T., Bich, N.T., Viet, N.T., Giwa-Ajeniya, O.A., Ogunwande, I.A. (2020). Antimicrobial efficacy and chemical constituents of pseudo-stem essential oils from Zingiber castaneum. Trends in Phytochem. Res. 4: 93-100.
  • Lawal, O.A., Ogunwande, I.A., Owolabi, M.S., Amisu, K.O., Opoku, R.A. (2016). The rhizome oils of Cyperus distans and cyperus rotundus: antimicrobial and insecticidal activities. In: Daniels, J.A. (Ed.) Advances in Environmental Research, Vol. 53. Nova Science Publisher Inc. New York, pp. 225-248.
  • Man, A., Santacroce, L., Jacob, R., Mare, A., Man, L. (2019). Antimicrobial activity of six essential oils against a group of human pathogens: a comparative study. Pathog. 8: 15-32. doi: 10.3390/pathogens8010015
  • Callway, D. (2010). The World of Magnolias. Timber Press, USA, pp. 1-245.
  • Irawan, C.H., Lilis, S., Poppy, S.L., Sri, R.S. (2017a). Evaluation of DPPH free radical scavenging activity of Magnolia coco flowers. Int. J. Chem. Stud. 5: 770-772.
  • Kato, N., Satoko, K., Natsuki, G., Morio, Y., Yoshiaki, A, Hideyuki, I. (2017). Polyphenols from flowers of Magnolia coco and their anti-glycation effects. Biosci. Biotechnol. Biochem. 81: 1285-1288. doi: 10.1080/09168451.2017.1292837
  • Yu, H.-J., Chen, C.-C., Shieh, B.-J. (2013). The constituents from the leaves of Magnolia coco. J. Chin. Chem. Soc. 45: 773-778. doi: 10.1002/jccs.199800116
  • Yu, H.-J., Chen, C.-C., Shieh, B.-J. (1998). Two new constituents from the leaves of Magnolia coco. J. Nat. Prod. 61: 1017-1019. doi: 10.1021/np970571d
  • Chen, C.C., Chen, H.Y., Shiao, M.S., Lin, Y.L., Kuo, Y.H., Ou, J.C. (1999). Inhibition of low density lipoprotein oxidation by tetra hydrofurofuran lignans from Forsythia suspensa and Magnolia coco. Planta Med. 65: 709-711. doi: 10.1055/s-1999-14093
  • Irawan, C.H., Lilis, S., Poppy, S.L., Sri, R.S. (2017b). Phytochemistry and chemical compo- sition by GC/MS of n-hexane and methanol extract of Magnolia coco flowers. J. Pharmacog. Phytochem. 6: 1240-1242.
  • Zhu, X.-Y., M.-Min, Zhang, H.-J., Lu, R.-M. (2011). Analysis of chemical constituents of essential oils from Magnolia coco by GC/MS. Chin. J. Exp. Trad. Med. Form. 29: 134-136.
  • Chung, N.T., Huong, L.T., Ogunwande, I.A. (2020). Constituents, antimicrobial and larvicidal activities of essential oil from the leaf of Magnolia coco (Lour.) DC. Rec. Nat. Prod. 14: 372- 377. doi: 10.25135/rnp.174.20.02.1541
  • Huong, L.T., Viet, N.T., Sam, L.N., Giang, C.N., Hung, N.H., Dai, D.N., Ogunwande, I.A. (2020). Chemical composition and larvicidal activity of essential oil from the rhizomes of Amomum rubidum growing in Vietnam. J. Essent. Oil Bearing Plants. Vol. 23(2): 405-413. doi: 10.1080/0972060X.2020.1756425
  • Vietnamese Pharmacopoeia. (2009). Medical Publishing House, 2nd Edition, Hanoi, Vietnam.
  • National Institute of Science and Technology. (2018). Chemistry Web Book. Data from NIST Standard Reference Database 69.
  • Sahm, D.H., Washington, J.A. (1991). Antibacterial susceptibility tests: Dilution methods. In Manual of Clinical Microbiology; Balows, A., Hausler, W.J., Herrmann, K.L., Isenberg, H.D., Shamody, H.J., Eds.; American Society for Microbiology: Washington, DC, USA.
  • Ha, C.T.T., Thai, T.H., Hien, N.T., Anh, H.T.V., Diep, L.N., Thuy, D.T.T., Nhat, D.D., Setzer, W.N. (2019). Chemical composition and antimicrobial activity of the leaf and twig essential oils of Magnolia hypolampra growing in Na Hang Nature Reserve, Tuyen Quang Province, Vietnam. Nat. Prod. Comm. 14: 1-7.
  • Farag, M.A, El Din, M.S., Fahmy, S. (2015). Headspace analysis of volatile compounds coupled to chemometrics in the leaves from Magnoliaceae family. Rec. Nat. Prod. 9: 153-158.
  • Chouhan, S., Sharma, S., Guleria, S. (2017). Antimicrobial activity of essential oils-present status and future perspectives. Medicines (Basel). 5: 58-82. doi: 10.3390/medicines4030058
  • Dahham, S.S., Tabana, Y.M., Iqbal, M.A., Ahamed, M.B.K., Ezzat, M.O., Majid, A.S.A., Maid, A.M.S.A. (2015). The anticancer, antioxidant and antimicrobial properties of the sesqui terpene β-caryophyllene from the essential oil of Aquilaria crassna. Molecules. 20: 11808-11829. doi: 10.3390/molecules200711808
  • Jirovetz, L., Bail, S., Buchbauer, G., Denkova, Z., Slavchev, A., Stoyanova, A., Schmidt, E., Geissler, M. (2006). Antimicrobial testings, gas chromatographic analysis and olfactory evaluation of an essential oil of hop cones (Humulus lupulus L.) from Bavaria and some of its main compounds. Sci. Pharm. 74:189-201. doi: 10.3797/scipharm.2006.74.189
  • DeCarlo, A., Zeng, T., Dosoky, N.S., Satyal, P., Setzer, W.N. (2020). The essential oil composition and antimicrobial activity of Liquidambar formosana oleoresin. Plants. 9: 822. doi: 10.3390/plants9070822

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