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Research Article

Antimicrobial Activity of Essential Oil of Boswellia carterii Birdw. Oleo Gum Resin and Its Chemical Composition

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Pages 386-395 | Received 13 Feb 2023, Accepted 04 May 2023, Published online: 25 May 2023

References

  • Shankar, S., Prasad, S., Owaiz, M., Yadav, S., Manhas, S., Yaqoob, M., (2021). Essential oils, components and their applications: a review. Plant Arch. 21(1): 2027-2033.
  • Bakkali, F., Averbeck, S., Averbeck, D., Idaomar, M. (2008). Biological effects of essential oils-A review. Food Chem. Toxicol. 46(2): 446-475.
  • Miran, M., Amirshahrokhi, K., Ajanii, Y., Zadali, R., Rutter, M.W., Enayati, A., Movahedzadeh, F. (2022). Taxonomical Investigation, Chemical Composition, Traditional Use in Medicine, and Pharmacological Activities of Boswellia sacra Flueck. Evid.-based Complement. Altern. Med. 2022: 1-14.
  • Huang K., Chen Y., Liang K., Xu, X., Jiang, J., Liu, M., Zhou, F. (2022). Review of the Chemical Composition, Pharmacological Effects, Pharmacokinetics, and Quality Control of Boswellia carterii. Evid.-based Complement. Altern. Med. 2022: 1-38.
  • Bonjar, S. (2004). Evaluation of antibacterial properties of some medicinal plants used in Iran. J. Ethnopharmacol. 94(2-3): 301-305.
  • Huang, Y., Wang, L., (2016). Experimental studies on nanomaterials for soil improvement: a review. Environ. Earth Sci. 75: 1-10.
  • Almeida-Da-silva, C.L.C., Sivakumar, N., Asadi, H., Chang-Chien., A., Qoronfleh, M.W., Ojcius, D.M., Essa, M.M. (2022). Effects of Frankincense Compounds on Infection, Inflammation, and Oral Health. Molecules. 27(13): 1-19.
  • van Vuuren, S.F., Kamatou, G.P.P, Viljoen, A.M. (2010). Volatile composition and antimicrobial activity of twenty commercial frankincense essential oil samples. S. Afr. J. Bot. 76(4): 686-691.
  • Pilkington, K., Pilkington, G.J. (2022). Boswellia: Systematically scoping the in vitro, in vivo and clinical research. Eur. J. Integr. Med. 56: 102197.
  • Eslamieh, J. (2011). Cultivation of Bos-wellia: Sacred Trees of Frankincense; a Book on the History, Cultivation, Original Descriptions, Staging, Hybridization, Holistic Use, and Future of Boswellias in Our World. A Book’s Mind; pp. 196.
  • Harmš, L.O., Moussaieff, A., Řezanka, T., Abu-Lafi, S., Dembitsky, V.M. (2007). Phytochemical analysis and comparison for differentiation of Boswellia carterii and B. serrata. Nat. Prod. Commun. 2(2): 139-142.
  • Ayub, M.A., Hanif, M.A., Sarfraz, R.A., Shahid, M. (2018). Biological activity of boswellia serrata roxb. Oleo gum resin essential oil: Effects of extraction by supercritical carbon dioxide and traditional methods. Int. J. Food Prop. 21(1): 808-820.
  • Awoke, D. S. E., Joshi, R. K. (2021). Analysis of major components of essential oils of Boswellia species by GC/MS. Am. J. Essent. Oil and Natural Products. 9(1): 48-54.
  • Thulin, M., Warfa, A.M. (1987). The Frank-incense Trees (Boswellia spp., Burseraceae) of Northern Somalia and Southern Arabia. Kew Bull. 42(3): 487-500.
  • Ojha, P.K., Poudel, D.K., Rokaya, A., Satyal, R., Setzer, W.N., Satyal, P. (2022). Comparison of Volatile Constituents Present in Commercial and Lab-Distilled Frankincense (Boswellia carteri) essential oils for authentication. Plants. 11(16): 1-34.
  • Mikhaeil, B.R., Maatooq, G.T., Badria, F.A., Amer, M.M.A. (2003). Chemistry and immunomodulatory activity of frankincense oil. Z. Naturforsch. C. J. Biosci. 58: 3-4.
  • DeCarlo, A., Johnson, S., Poudel, A., Satyal, P., Bangerter, L., Setzer, W.N. (2018). Chemical variation in essential oils from the oleo-gum resin of Boswellia carteri: A Preliminary Investigation. Chem. Biodivers. 15(6): e1800047.
  • Woolley, C.L., Suhail, M.M., Smith, B.L., Boren, K.E., Taylor, L.C., Schreuder, M.F., Chai, J.K., Casabianca, H., Haq, S., Lin, H.K., Al-Shahri, A.A., Al-Hatmi, S., D.G. Young (2012). Chemical differentiation of Boswellia sacra and Boswellia carterii essential oils by gas chromatography and chiral gas chromatography–mass spectro-metry. J. Chromatogr. A. 1261: 158-163.
  • Efferth, T., Oesch, F. (2022). Anti-inflammatory and anti-cancer activities of frankincense: targets, treatments and toxicities. Semin. Cancer Biol. 80: 39-57.
  • Almjalawi, S.A.B., Alhamed, T.A., Alhesnawi, A.S.M. (2022). Antibacterial activity of Boswellia carterii aqueous extract and its effect on phagocytosis in vitro. Arch. Razi Inst. 77(2): 545-552
  • Ni, X., Suhail, M.M., Yang, Q., Cao, A., Fung, K.M., Postier, R.G., Woolley, C., oung, G., Zhang, J., Lin H.K. (2012). Frankincense essential oil prepared from hydrodistillation of Boswellia sacra gum resins induces human pancreatic cancer cell death in cultures and in a xenograft murine model. BMC Complement. Altern. Med. 2012: 1-12.
  • Amri, A.S.L., Jesil, A., Salim, A., Sarava-nam, A.M., (2019). Extraction of Essential Oil from Frankincense Using Steam Distillation. Int. J. Trend Res. Dev 6(1): 2394-9333.
  • Lal, M., Begum, T., Gogoi, R., Sarma, N., Munda, S., Pandey, S.K., et al. (2022). Anethole rich Clausena heptaphylla (Roxb.) Wight & Arn., essential oil pharmacology and genotoxic efficiencies. Sci. Rep. 12(1): 1-13.
  • Gogoi, R., Loying, R., Sarma, N., Munda, S., Pandey, S. K., Lal, M. (2018). A comparative study on antioxidant, anti-inflammatory, genotoxicity, anti-microbial activities and chemical composition of fruit and leaf essential oils of Litsea cubeba Pers from North-east India. Ind. Crops Prod. 125: 131-139.
  • Gogoi, R., Sarma, N., Begum, T., Pandey, S.K., Lal, M. (2020). North-East Indian Chromolaena odorata (l. King robinson) aerial part essential oil chemical composition, pharmacological activities - neurodegenerative inhibitory and toxicity study. J. Essent. Oil-Bear. Plants. 23(6): 1173-1191.
  • Prakash, B., Mishra, P.K., Kedia, A., Dubey, N.K. (2014). Antifungal, anti-aflatoxin and antioxidant potential of chemically characterized Boswellia carterii Birdw essential oil and its invivo practical applicability in preservation of Piper nigrum L. fruits. LWT. 56(2): 48-54.
  • Stupar, M., Kostic, M., Savkovic, Z., Unkovic, N., Ljaljevic-Grbic, M., Vuko-jevic, J. (2016). Succeptibility of some fungi to Boswellia carteri Birdw. essential oil. Zb. Matice. Srp. Prir. Nauk. 130: 19-27.
  • Mothana, R.A.A., Abdo, S.A.A., Hasson, S., Althawab, F.M.N., Alaghbari, S.A.Z., Lindequist, U. (2010). Antimicrobial, antioxidant and cytotoxic activities and phytochemical screening of some yemeni medicinal plants. Evid.-based Complement. Altern. Med. 7(3): 323-330.
  • Adams, R.P. (2017). Identification of essen-tial oil components by gas chromatography/mass spectrometry. 5 online ed. Texensis Publishing. Pp. 809.
  • McLafferty, F. (1993). The important peak index of the registry of mass spectral data. J Am. Soc. Mass Spectrom. 4(1): 82.
  • Gulluce, M., Sahin, F., Sokmen, M., Ozer, H., Daferera, D., Sokmen, A., Polissiou, M., Adiguzel, A., Ozkan, H. (2007). Anti-microbial and antioxidant properties of the essential oils and methanol extract from Mentha longifolia L. ssp. longifolia. Food Chem. 103(4): 1449-1456
  • Alshaikh, N., Perveen, K. (2017). Anti-candidal activity and chemical composition of essential oil of clove (Syzygium aromati-cum ). J. Essent. Oil-Bear. Plants. 20(4): 951-958.
  • Alshaikh, N., Perveen, K. (2021). Susceptibility of fluconazole-resistant Candida albi-cans to thyme essential oil. Microorganisms. 9(12): 9122454.
  • Schmiech, M., Lang, S.J., Werner, K., Rashan, L.J., Syrovets, T., Simmet, T. (2019). Comparative analysis of pentacyclic triterpenic acid compositions in oleogum resins of different Boswellia species and their in vitro cytotoxicity against treatment-resistant human breast cancer cells. Molecules. 24(11): 24112153
  • Mertens, M., Buettner, A., Kirchhoff, E. (2009). The volatile constituents of frankincense - A review. Flavour Fragr. J. 24(6): 279-300.
  • Niebler, J., Buettner, A. (2016). Frankin-cense Revisited, Part I: a comparative ana-lysis of volatiles in commercially relevant Boswellia Species. Chem. Biodivers. 13(5): 613-629.
  • Yu, J. Q., Geng, Y. L., Wang, D. J., Zhao, H. W., Guo, L., Wang, X. (2018). Terpenes from the gum resin of Boswellia carterii and their NO inhibitory activities. Phytochem. 28: 59-63.
  • Niebler, J., Zhuravlova, K., Minceva, M., Buettner, A. (2016). Fragrant sesquiterpene ketones as trace constituents in frankincense volatile oil of Boswellia sacra. J. Nat. Prod. 79(4): 1160-1164.
  • Camarda, L., Dayton, T., di Stefano, V., Pitonzo, R., Schillaci, D. (2007). Chemical composition and antimicrobial activity of some oleogum resin essential oils from Boswellia spp. (Burseraceae). Ann. Chim. 97(9): 837-844.
  • Chao, S., Young, G., Oberg, C., Nakaoka, K. (2008). Inhibition of methicillin-resistant Staphylococcus aureus (MRSA) by essential oils. Flavour Fragr. J. 23(6): 444-449.
  • Udomsilp, J., Piyo, A., Khang-Khun, P., Thobunluepop, P. (2009). Antifungal pro-perties of essential oils from Thai medical plants against rice pathogenic fungi. As. J. Food Ag-Ind. 2009: 24-30.
  • El-Nagerabi, S.A.F., Elshafie, A.E., AlKhanjari, S.S., Al-Bahry, S.N., Elamin, M.R. (2013). Biological activities of Boswellia sacra extracts on the growth and aflatoxins secretion of two aflatoxigenic species of Aspergillus species. Food Control. 34(2): 763-769.
  • Ulubelen, A., Topcu, G., Eri, C., Sönmez, U., Kartal, M., Kurucu, S., Bozok-Johansson, C. (1994). Terpenoids from Salvia sclarea. Phytochemistry. 36(4): 971-974.
  • Saad, S.M., Shaltout, F.A., Abou Elroos, N.A., El-nahas, S.B., (2019). Antimicrobial effect of some essential oils on some pathogenic bacteria in minced meat. J. Food Nutr. Res. 2(1): 13-21.
  • Ju, J., Xie, Y., Guo, Y., Cheng, Y., Qian, H., Yao, W., (2019). The inhibitory effect of plant essential oils on foodborne pathogenic bacteria in food. Crit. Rev. Food Sci. Nutr. 59(20): 3281-3292.
  • Nazzaro, F., Fratianni, F., De Martino, L., Coppola, R., De Feo, V. (2013). Effect of essential oils on pathogenic bacteria. Pharmaceuticals. 6(12): 1451-1474.
  • Hu, F., Tu, X.F., Thakur, K., Hu, F., Li, X.L., Zhang, Y.S., Zhang, J.G., Wei, Z.J. (2019). Comparison of antifungal activity of essential oils from different plants against three fungi. Food Chem. Toxicol. 134: 110821.
  • Souza, N.A.B., Lima, E.D.O., Guedes, D.N., Pereira, F.D.O., Souza, E.L.D., Sousa, F.B.D. (2010). Efficacy of Origanum essential oils for inhibition of potentially pathogenic fungi. Braz. J. Pharm. Sci. 46: 499-508.

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