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Pharmacology & Pharmaceutics

Phytochemical profile and anti-inflammatory effect of Artemisia annua L. essential oil

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Article: 2288529 | Received 16 Sep 2022, Accepted 26 Oct 2023, Published online: 01 Dec 2023

References

  • Abad MJ, Bedoya LM, Apaza L, Bermejo P. 2012. The artemisia L. genus: a review of bioactive essential oils. Molecules. 17:2542–2566. doi:10.3390/molecules17032542.
  • Acimovic M, Jeremic JS, Todosijevic M, Kiprovski B, Vidovic S, Vladic J, Pezo L. 2022. Comparative study of the essential oil and hydrosol composition of Sweet Wormwood (Artemisia annua L.) from Serbia. Chem Biodivers. 19:e202100954. doi:10.1002/cbdv.202100954.
  • Bilia AR, Santomauro F, Sacco C, Bergonzi MC, Donato R. 2014. Essential oil of Artemisia annua L.: an extraordinary component with numerous antimicrobial properties. Evid Based Complement Alternal Med. Article ID159819, 7. doi:10.1155/2014/159819.
  • Bitencourt MAO, Dantas GR, Lira DP, Barbosa-Filho JM, Miranda GEC, Santos BVO, Souto JT. 2011. Caulerpa Mexicana aqueous and methanolic extracts of Caulerpa mexicana suppress Cell Migration and Ear Edema Induced by Inflammatory Agents. Mar Drugs. 9(8):1332–1345. 103390/md9081332.
  • Borges RS, Ortiz BLS, Pereira ACM, Keita H, Carvalho JCT. 2019. Rosmarinus officinalis essential oil: a review of its phytochemistry, anti-inflammatory activity, and mechanisms of action involved. J Ethnopharmacol. doi:10.1016/1j.jep.2018.09.038.
  • Chen L, Deng H, Cui H, Fang J, Zuo Z, Deng J. 2018. Inflammatory responses and inflammation associated diseases in organs. Oncotarget. 9:7204–7218. doi:10.18632/oncotarget.23208.
  • Chen LC, Lin YY, Jean YH, Lu Y, Chen WF, Yang SN, Wang HM, Jang IY, Chen IM, Su JH, et al. 2014. Anti-inflammatory and analgesic effects of the Marine-Derived Compound Comaparvin Isolated from the Crinoid Comanthus bennetti. Molecules. 19(9):14667–14686. doi:10.3390/molecules190914667.
  • Chinese Pharmacopoeia Commission. 2020. Chinese pharmacopoeia (2020). Beijing: The medicine science and technology press of China.
  • Chu KK, Chen DD, Li XM, Miao MS. 2022. Research and application of Chinese medicinal essential oil: based on data mining and Chinese pharmacopoeia(2020). Pharmacol Clinics Chin Materia Medica. doi:10.13412/j.cnki.zyyl.
  • Donato R, Santomauro F, Bilia AR, Flamini G, Sacco C. 2015. Antibacterial activity of Tuscan Artemisia annua essential oil and its major components against some foodborne pathogens. Food Sci Technol. 64:1251–1254. doi:10.1016/j.lwt.2015.07.014.
  • Egbuta MA, McIntosh S, Waters DLE, Vancov T, Liu L. 2022. In vitro anti-inflammatory activity of essential oil and β-Bisabolol derived from Cotton Gin Trash. Molecules. 27:526. doi:10.3390/molecules27020526.
  • Feng J, Li H, Li J, Meng P, Wang L, Liu C, Zhao S, Sun W, Zhang Y. 2020. hnRNPK knockdown alleviates NLRP3 inflammasome priming by repressing FLIP expression in Raw264.7 macrophages. Redox Rep. 25(1):104–111. doi:10.1080/13510002.2020.1857157.
  • Fu C, Zhang K, Wang M, Qiu F. 2022. Casticin and chrysosplenol D from Artemisia annua L. induce apoptosis by inhibiting topoisomerase IIα in human non-small-cell lung cancer cells. Phytomedicine. 100:154095–154108. doi:10.1016/j.phymed.2022.154095.
  • Gias ZT, Afsana F, Debnath P, Alam MS, Ena TN, Hossain MH, Jain P, Reza HM. 2020. A mechanistic approach to HPLC analysis, antinociceptive, anti-inflammatory and postoperative analgesic activities of panch phoron in mice. BMC Complement Med Ther. 20:102–110. doi:10.1186/s12906-020-02891-x.
  • Habibi Z, Ghaniam S, Ghasemi S, Yousefi M. 2013. Chemical composition and antibacterial activity of the volatile oil from seeds of Artemisia annua L. from Iran. Nat Prod Res. 27:198–200. doi:10.1080/14786419.2012.662652.
  • Kim WS, Choi WJ, Lee S, Kim WJ, Lee DC, Sohn UD, Shin HS, Kim W. 2015. Anti-inflammatory, antioxidant and antimicrobial effects of Artemisinin extracts from Artemisia annua L. Korean J Physiol Pharmacol. 19:21–27. doi:10.4196/kjpp.2015.19.1.21.
  • Lazarvic J, Jevremovic S, Kostic I, Kostic M, Vuleta A, Manitasevic JS, Seslija JD. 2020. Toxic, oviposition deterrent and oxidative stress effects of essential oil against Acanthoscelides obtectus. Insects. 11:563–581. doi:10.3390/insects11090563.
  • Liu CX. 2017. Discovery and development of artemisinin and related compounds. CH M. 9:101–114. doi:10.1016/S1674-6384(17)60084-4.
  • Liu XJ, Li Y, Su SL, Wei DD, Yan H, Guo S, Shang EX, Sun XD, Duan JA. 2022. Comparative analysis of chemical composition and antibacterial and anti-inflammatory activities of the essential oils from Chrysanthemum morifolium of different flowering stages and different parts. Evid Based Compl Alt. Article ID 5954963, 10. doi:10.1155/2022/5954963.
  • Muller WE, Sillani G, Schuwald A, Friedland K. 2021. Pharmacological basis of the anxiolytic and antidepressant properties of Silexan®, an essential oil from the flowers of lavender. Neurochem Int. 143:104899. doi:10.1016/j.neuint.2020.104899.
  • Oh YC, Jeong YH, Cho WK, Ha JH, Gu MJ, Ma JY. 2015. Anti-inflammatory and analgesic effects of Pyeongwisan on LPS-stimulated murine macrophages and mouse models of acetic acid-induced writhing response and Xylene-induced ear edema.2015. Int J Mol Sci. 16(1):1232–1251. doi:10.3390/ijms16011232.
  • Pan SY, Zhou SF, Gao SH, Yu ZL, Zhang SF, Tang MK, Sun JN, Ma DL, Han YF, Fong WF, Ko KM. 2013. New perspectives on how to discover drugs from herbal medicines: CAM’s outstanding contribution to modern therapeutics. Evid Based Compl Alt. Article ID 627375, 25. doi:10.1155/2013/627375.
  • Qu Z, Zhao J, Zhu L, Huang L, Ma Y, Ma C, Luo C, Zhu Z, Yuan Z, Wu J, et al. 2019. Anti-inflammatory effect and potential mechanism of betulinic acid on λ-carrageenan-induced paw edema in mice. Biomed Pharmacother. 118:109347–110945. doi:10.1016/j.biopha.2019.109347.
  • Rana VS, Blazquez MA, Maiti S. 2013. Essential oil composition of Artemisia annua L. at different growth stages. J Spices Arom Crops. 22:181–187. https://www.researchgate.net/publication/262167418.
  • Taleghani A, Emami SA, Tayarani-Najaran Z. 2020. Artemisia: a promising plant for the treatment of cancer. Bioorg Med Chem. 28:115180. doi:10.1016/j.bmc.2019.115180.
  • Tarumi W, Shinohara K. 2020. The effects of essential oil on salivary oxytocin concentration in postmenopausal women. J Altern Compliment Med. 26:226–230. doi:10.1089/acm.2019.0361.
  • Van HT, Thang TD, Luu TN, Doan VD. 2021. An overview of the chemical composition and biological activities of essential oils from genus (Zingiberaceae). RSC Adv. 11:37767–37783. doi:10.1039/D1RA07370B.
  • Yang ZN, Zhu SQ, Yu ZW. 2012. Comparison of terpene components from flowers of Artemisia annua. Bangladesh J Pharmacol. 7:114–119. doi:10.3329/bjp.v7i2.10815.
  • Yatoo GN, Wani H, Shah SA, Zargar MI, Rather MA, Banday JA. 2021. Gas chromatographic-mass spectrometric analysis, antibacterial, antioxidant and antiproliative activities of the needle essential oil of Abies pindrow growing wild in Kashmir, India. Microb Pathog. 158:105013. doi:10.1016/j.micpath.2021.105013.
  • Zhang SQ, Xu HB, Zhang SJ, Li XY. 2020. Identification of the active compounds and significant pathways of Artemisia annua in the treatment of non-small cell lung carcinoma based on network pharmacology. Med Sci Monit. 26:e923624. doi:10.12659/MSM.923624.
  • Zhang Y, Long Y, Yu S, Li D, Yang M, Guan Y, Zhang D, Wan J, Liu S, Shi A, Li N. 2021. Natural volatile oils derived from herbal medicines: a promising therapy way for treating depressive disorder. Pharm Res. 164:105376. doi:10.1016/j.phrs.2020.105376.
  • Zhang Z, Luo D, Xie J, Xian Y, Lai Z, Liu Y, Liu W, Chen J, Lai X, Lin Z, Su Z. 2018. Curcumin’s Metabolites, Tetrahydrocurcumin and Octahydrocurcumin, possess superior anti-inflammatory effects in vivo through suppression of TAK1-NF-κB pathway. Front Pharmacol. 9:1181–1192. doi:10.3389/fphar.2018.01181.
  • Zhao YP, Wang H, Yang G, Qiu ZD, Qu XB, Feng WH. 2016. Anti-tumor mechanism of Artemisia annua based on bioinformatics. China J Chin Mater Med. 41:2695–2700. doi:10.4268/cjcmm20161421.
  • Zhu CC, Yu Q, Pan HJ, Chen Y, Miao X, Zhu QG. 2022. Effect of artemisia oil in the nanoemulsion as an oil excipient and enhancer on percutaneous absorption of Celastrol. Chin J Mod Appl Pharm. 39:1054–1058. doi:10.13748/j.cnki.issn1007-7693.2022.08.008.
  • Zi Y, Yao M, Lu Z, Lu F, Bie X, Zhang C, Zhao H. 2021. Glycoglycerolipids from the leaves of Perilla frutescens (L.) Britton (Labiatae) and their anti-inflammatory activities in lipopolysaccharide-stimulated RAW264.7 cells. Phytochemistry. 184:112679–112679. doi:10.1016/j.phytochem.2021.112679.