115
Views
1
CrossRef citations to date
0
Altmetric
Articles

Antibacterial Activity and Chemical Composition of Essential Oils from Leaves of Some Aromatic Plants of Philippines

, &
Pages 932-946 | Received 03 Jul 2019, Accepted 14 Oct 2019, Published online: 31 Oct 2019

References

  • Roser, M. and Ritchie, H. (2016). Burden of Disease. Our World in Data. Published online at OurWorldInData.org. Retrieved from: ‘https://ourworldindata.org/burden-ofdisease
  • Sánchez-Borges, M., Thong, B., Blanca, M., Ensina, L.F.C., González-Díaz, S., Greenberger, P.A., Jares, E., Jee, Y.-K., Kase-Tanno, L., Khan, D., Park, J.W., Pichler, W., Romano, A., Jaén, M.J. (2013). Hypersensitivity reactions to non-beta-lactam antimicrobial agents, a statement of the WAO special committee on drug allergy. World Allergy Organ. J. 6(18): 1–23.
  • Aye, M.M., Aung, H.T., Sein, M.M., Armijos, C. (2019). A Review on the Phytochemistry, Medicinal Properties and Pharmacological Activities of 15 Selected Myanmar Medicinal Plants. Molecules. 24(1): 1–34.
  • Chang, N., Luo, Z., Li, D., Song, H. (2017). Indigenous Uses and Pharmacological Activity of Traditional Medicinal Plants in Mount Taibai, China. Evid. Based Complement. Alternat. Med. 1–11.
  • Ofori-Kwakye, K., Kwapong, A.A., Adu, F. (2009). Antimicrobial Activity of Extracts and Topical Products of the Stem Bark of Spathodea campanulata for Wound Healing. Afr. J. Tradit. Complement. Altern. Med. 6(2): 168–174.
  • Abreu, A.C., McBain, A.J., Simões, M. (2012). Plants as sources of new antimicrobials and resistance-modifying agents. Nat. Prod. Rep. 29(9): 1007–1021.
  • Hyldgaard, M., Mygind, T., Meyer, R.L. (2012). Essential oils in food preservation: mode of action, synergies, and interactions with food matrix components. Front. Microbiol. 3(12): 1–12.
  • Nazzaro, F., Fratianni, F., De Martino, L., Coppola, R., De Feo, V. (2013). Effect of essential oils on pathogenic bacteria. Pharmaceuticals (Basel). 6(12): 1451–1474.
  • Fürstenberg-Hägg, J., Zagrobelny, M., Bak, S. (2013). Plant Defense against Insect Herbivores. Int. J. Mol. Sci. 14(5): 10242–10297.
  • Albouchi, F., Sifaoui, I., Reyes-Batlle, M., López-Arencibia, A., Piñero, J.E., Lorenzo-Morales, J., Abderrabba, M. (2017). Chemical composition and anti-Acanthamoeba activity of Melaleuca styphelioides essential oil. Exp. Parasitol. 183: 104–108.
  • Vieira-Brock, P.L., Vaughan, B.M., Vollmer, D.L. (2017). Comparison of antimicrobial activities of natural essential oils and synthetic fragrances against selected environmental pathogens. Biochim. Open. 5: 8–13.
  • Wijesundara, N.M., and Rupasinghe, H.P.V. (2018). Essential oils from Origanum vulgare and Salvia officinalis exhibit antibacterial and anti-biofilm activities against Streptococcus pyogenes. Microb. Pathog. 117: 118–127.
  • Katiraee, F., Ahmadi Afshar, S., Rahimi Pirmahalleh, S., Shokri, H. (2017). In vitro antifungal activity of essential oils extracted from plants against fluconazole-susceptible and -resistant Candida albicans. Curr. Med. Mycol. 3(2): 1–6.
  • Sharafati-Chaleshtori, F., Saholi, M. and Sharafati-Chaleshtori, R. (2018). Chemical Composition, Antioxidant and Antibacterial Activity of Buniumpersicum, Eucalyptus globulus, and Rose Water on Multidrug-Resistant Listeria Species. J. Evid. Based Integr. Med. 23: 1–7.
  • Reichling, J., Schnitzler, P., Suschke, U., Saller, R. (2009). Essential oils of aromatic plants with antibacterial, antifungal, antiviral, and cytotoxic properties-an overview. Forsch. Komplementmed. 16(2): 79–90.
  • Madulid, D.A. (2000). Pictorial cyclopedia of Philippine ornamental plant 2nd Edition. Bookmark, Inc. Philippines.
  • Philippine National Drug Formulary (PNDF) Essential Medicine List 7th Edition (2008). Volume 1. The National Formulary Committee, National Drug Policy Pharmaceutical Management Unit 50, Department of Health, Manila, Philippines.
  • El-hawary, S.S., El-sofany, R.H., Abdel-Monem, A.R., Ashour, R.M.S., Sleem, A.A. (2013). Seasonal variation in the composition of Plectranthusamboinicus (Lour) Spreng. essential oil and its biological activities. Am. J. Essent. Oil. Nat. 1(2): 11–18.
  • Philippine Pharmacopeia 1st Edition (2004). Bureau of Food and Drugs Civic Drive, Filinvest Corporate City Alabang, Muntinlupa City, Philippines.
  • Cuadra, M.J. and Padilla, P.I. (2013). Community Associated Methicillin S. aureus in waste pickers: Prevalence and SCCmec characterization of CA-MRSA in young waste pickers of the Iloilo City dumpsite, Philippines. Lambert Academic Publishing. AV Akademikerverlag GmbH & Co. KG, Germany.
  • Clinical and Laboratory Standards Institute (2012). Performance standards for antimicrobial susceptibility testing; twenty-second informational supplement. CLSI document M100-S22 Vol.32 No. 3. Wayne, Pennsylvania.
  • Kamazeri, T.A., Samah, O.A., Susant, D., Qaralleh H. (2012). Antimicrobial activity and essential oils of Curcuma aeruginosa, Curcuma mangga, and Zingibercassumunar from Malaysia. Asian Pac. J. Trop. Med. 5(3): 202–209.
  • Elmaidomy, A., Hassan, H., Amin, E., Mohamed, W., Hetta, M. (2017). Premna odorata Volatile Oil as a New Mycobacterium tuberculosis Growth Inhibitor for the Control of Tuberculosis Disease. Eur. J. Med Plants. 21(4):1–11.
  • Bahl, J.R., Bansal, R.P., Garg, S.N., Gupta, M.M., Singh, V., Goel, R., Kumar, S. (2014). Variation in Yield of Curcumin and Yield and Quality of Leaf and Rhizome Essential Oils among Indian Land Races of Turmeric Curcuma longa L. Proc. Indian. Natl. Sci. Acad. 80(1):143–156.
  • Padalia, R.C., Verma, R.S., Chauhan, A., Chanotiya, C.S., Thul, S. (2016). Phytochemical Diversity in Essential Oil of Vitex negundo L. Populations from India. Rec. Nat. Prod. 10(4):452–464.
  • Tucker, A.O., Maciarello, M.J., Espaillat, J.R., French, E.C. (1993). The Essential Oil of Lippia micromera Schauer in DC. (Verbenaceae). J. Essent. Oil Res. 5(6):683–685.
  • Sims, C.A. (2014). Essential Oils in Holy Basil (Ocimum tenuiflorum L.) as Influenced by Planting Dates and Harvest Times in North Alabama. J. Med. Active Plants. 2(3):33–41.
  • Singh, S., Haider, S.Z., Chauhan, N.K., Lohani, H., Sah, S., Yadav, R.K. (2014). Effect of Time of Harvesting on Yield and Quality of Melissa officinalis L. in Doon Valley, India. Indian J. Pharm. Sci. 76(5): 449–452.
  • Preethy, T.T., Elsy, C.R., Beena, C. (2017). Profiling of essential oil in Tirurvettilai (Piper betle L.), a group of unique betel vine land races from Malappuram district, Kerala. J.Pharmacogn. Phytochem. 6(3): 774–778.
  • Hanaa, A.R.M., Sallam, Y.I., El-Leithy, A.S., Aly, S.E. (2012). Lemongrass (Cymbopogon citratus) essential oil as affected by drying methods. Ann. Agri. Sci. 57(2): 113–116.
  • Guevarra, B.Q. (2005). A guidebook to plant screening: phytochemical and biological, UST Publishing House, Manila, Philippines.
  • Li, L., Li, Z.W., Yin, Z.Q., Wei, Q., Jia, R.Y., Zhou, L.J., Xu, J., Song, X., Zhou, Y., Du, Y.H., Peng, L.C., Kang, S., Yu, W. (2014). Antibacterial activity of leaf essential oil and its constituents from Cinnamomum longepaniculatum. Int. J. Clin. Exp. Med. 7(7): 1721–1727.
  • Oyedemi, S., Okoh, A.I., Mabinya, L.V., Pirochenva, G., Afolayan, A.J., Oyedemi, S.O., Mabinya, L.V. (2009). The proposed mechanism of bactericidal action of eugenol, a-terpineol and g-terpinene against Listeria monocytogenes, Streptococcus pyogenes, Proteus vulgaris and Escherichia coli. Afr. J.Biotechnol. 8(7): 1280–1286.
  • Bassolé, I.H.N., Lamien-Meda, A., Bayala, B., Obame, L.C., Ilboudo, A.J., Franz, C., Novak, J., Nebié, R.C., Dicko, M.H. (2011). Chemical composition and antimicrobial activity of Cymbopogon citratus and Cymbopogon giganteus essential oils alone and in combination. Phytomedicine. 18(12): 1070–1074.
  • Khan, I., Bahuguna, A., Kumar, P., Bajpai, V.K., Kang, S.C. (2017). Antimicrobial Potential of Carvacrol against UropathogenicEscherichia coli via Membrane Disruption, Depolarization, and Reactive Oxygen Species Generation. Front. Microbiol. 8(2421): 1–9.
  • Somolinos, M., García, D., Condón, S., Mackey, B., Pagán, R. (2010). Inactivation of Escherichia coli by citral. J. Appl. Microbiol. 108(6): 1928–1939.
  • Chandramu, C., Manohar, R.D., Krupadanam, D.G.L., Dashavantha, R.V. (2003). Isolation, characterization and biological activity of betulinic acid and ursolic acid from Vitex negundo L. Phytother. Res. 17(2): 129–134.
  • Liakos, I., Rizzello, L., Scurr, D.J., Pompa, P.P., Bayer, I.S., Athanassiou, A. (2014). All-natural composite wound dressing films of essential oils encapsulated in sodium alginate with antimicrobial properties. Int. J. Pharm. 463: 137–145.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.