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Research Article

Effect of regional disparities and solvent variations on the phenolic composition, antioxidant activity, and antibacterial efficacy of Cupressus sempervirens extracts

, , , , , , , ORCID Icon & ORCID Icon show all
Received 06 Nov 2023, Accepted 04 Mar 2024, Published online: 11 Mar 2024

References

  • Abd Alhady M, El-FadlR A, Hegazi G, Yehia SY. 2020. In vitro production of some secondary metabolites from Cupressus sempervirens. JAdv Biomed Pharm Sci. 3:127–134. doi: 10.21608/JABPS.2020.24700.1074.
  • Abd El-Moaty HI, Sorour WA, Youssef AK, Goud HM. 2020. Structural elucidation of phenolic compounds isolated from opuntia littoralis and their antidiabetic, antimicrobial and cytotoxic activity. S Afr J Bot. 131:320–327. doi: 10.1016/j.sajb.2020.03.005.
  • AidiWannes W, Marzouk B. 2016. Characterization of myrtle seed (Myrtus communis var.Baetica) as a source of lipids, phenolics, and antioxidant activities. J Food Drug Anal. 24(2):316–323. doi: 10.1016/j.jfda.2015.11.001.
  • Alara OR, Abdurahman NH, Abdul Mudalip SK, Olalere OA. 2018. Characterization and effect of extraction solvents on the yield and total phenolic content from Vernonia amygdalina leaves. J Food MeasCharact. 12(1):311–316. doi: 10.1007/s11694-017-9642-y.
  • Al-Othman AM, Hussain I, Khan H, UrM R, Abdeltawab AA, Ullah R, Rohullah NS, Talha MJ. 2012. Phytochemical analysis and biological activities of selected medicinal plants. MedPlants Res. 6(23):4005–4110. doi: 10.5897/JMPR12.182.
  • Al-Snafi AE. 2016. Medical importance of Cupressus sempervirens-A review. IOSRJournal Of Pharmacy. 6(6):76–108. doi: 10.9790/3013-0680176108.
  • Asgary S, Naderi GA, Ardekani MRS, Sahebkar A, Airin A, Aslani S, Kasher T, Emami SA. 2013. Chemical analysis and biological activities of Cupressus sempervirens var. horizontalis essential oils. Pharma Biol. 51(2):137–144. doi: 10.3109/13880209.2012.715168.
  • Ben-Farhat M, Chaouch-Hamada R, Sotomayor J, LandoulsiA JM. 2014. Antioxidant potential of salvia officinalis L. residues as affected by the harvesting time. Ind Crops Prod. 54:78–85. doi: 10.1016/j.indcrop.2014.01.001.
  • Bettaieb Rebey I, Sriti J, Besbess B, Mkaddmini Hammi K, Hamrouni Sellami I, Marzouk B, Ksouri R. 2016. Effet de la provenance et du solvant d’extraction sur la teneur en composés phénoliques et les potentialités antioxydantes des graines de fenouil (Foeniculum vulgarae Mill.). J New Sci. 27(4):1478–1487.
  • Ceylan Y, Usta K, Usta A, Maltas E, Yildiz S. 2015. Evaluation of antioxidant activity, phytochemicals and ESR analysis of Lavandula stoechas. Acta Physica Polonica A. 128(2B):B–488. doi: 10.12693/APhysPolA.128.B-483.
  • Chaouche TM, Haddouchi F, Boudjemai O, Ghellali I. 2020. Antioxidant and hemolytic activity of Ziziphus jujuba Mill and Rhamnus alaternus L (Rhamnaceae) extracts from Algeria. Bulletin de la Société Royale des Sciences d Liège. 89:1–14. doi: 10.25518/0037-9565.9386.
  • Dai J, Mumper RJ. 2010. Plant phenolics: extraction, analysis and their antioxidant and anticancer properties.Moleculespp. 7313–7352. doi: 10.3390/molecules15107313.
  • Djeridane A, Yousfi M, Nadjemi B, Boutassouna D, Stocker P, Vidal N. 2006. Antioxidant activity of some Algerian medicinal plants extracts containing phenolic compounds. Food Chemistry. 97(4):654–660. doi: 10.1016/j.foodchem.2005.04.028.
  • Ferreira ICFR, Baptista P, Vilas-Boas M, Barros L. 2007. Free-radical scavenging capacity and reducing power of wild edible mushrooms from northeast Portugal: individual cap and stipe activity. Food Chem. 100(4):1511–1516. doi: 10.1016/j.foodchem.2005.11.043.
  • Ibrahim EA, Desoukey SY, Hadad GM, Salam RAA, Ibrahim AK. 2017. Analysis of cupressuflavone and amentoflavone from Cupressus sempervirens L. and its tissue cultured callus using HPLC-DAD method. Pharm Pharmacol Int J. 5(5):174–180. doi: 10.15406/ppij.2017.05.00134.
  • Kefi S, Essid R, Mkadmini K, Kefi A, MahjoubHaddada F, Tabbene O, Limam F. 2018. Phytochemical investigation and biological activities of Echium arenarium. (Guss) Extracts Microbpathog. 118:202–210. doi: 10.1016/j.micpath.2018.02.050.
  • Lasano NF, Ramli NS, Hj Hamid A, Karim R, Dek MSP, Shukri R. 2019. Effects of different extraction solvents on polyphenols and antioxidant capacity of peel, pulp and seed kernel of kuini (Mangifera odorata). Orient Pharm Exp Med. 19(3):277–286. doi: 10.1007/s13596-019-00383-z.
  • Mechraoui O, Ladjel S, Nedjimi MS, Belfar ML, Moussaoui Y. 2018. Determination of polyphenols content, antioxidant and antibacterial activity of Nigella sativa L. seed st. Cerc St CICBIA. 19(4):411–421.
  • Rashwan AK, Naymu L, Shishir MRI, Ba T, Lu Y, Chen W. 2020. Jujube fruit: a potential nutritious fruit for the development of functional food products. J Functional Foods. 75:104205. doi: 10.1016/j.jff.2020.104205.
  • Rguez S, Essid R, Adele P, Msaada K, Hammami M, Mkadmini K, Fares N, Tabbene O, Elkahoui S, Portellic D, et al. 2019. Towards the use of Cupressus sempervirens L. organic extracts as a source of antioxidant, antibacterial and antileishmanial biomolecules. IndCrops Prod. 131:194–202. doi: 10.1016/j.indcrop.2019.01.056.
  • Romani A, Galardi C, Pinelli P, Mulinacci N. 2002. HPLC quantification of flavonoids and biflavonoids inCupressaceae leaves. Chromatographia. 56(7–8):469–474. doi: 10.1007/BF02492011.
  • Salimi M, Sarkhail P, Sarkheil P, MostafapourKandelous H, Baeeri M. 2016. Evaluation of anti-melanogenic activity of ziziphus jujuba fruits obtained by two different extraction methods. Res J Pharmacogn. 3(2):1–7.
  • Selim A, Adam ME, Hassan SM, Albalawi AR. 2014. Chemical composition, antimicrobial and antibiofilm activity of the essential oil and methanol extract of the Mediterranean cypress (Cupressus sempervirens L.). BMC Complement Altern Med. 14(1):179. doi: 10.1186/1472-6882-14-179.
  • Sriti J, AidiWannes W, Bachrouch O, Aouini J, Boushih E, Limam F, Medouini Ben Jemaa J. 2022. Phenolic constituents, antioxidant and repellent activities of coriander (Coriandrum sativum L.) fruits using different solvent extracts. J Env Health. 34(1):225–237. doi: 10.1080/09603123.2022.2143483.
  • Wang G, Yao S, Zhang XX, Song H. 2015. Rapid screening and structural characterization of antioxidants from the extract of SelaginelladoederleiniiHieron with DPPH-UPLC-Q-TOF/MS method. Int J Anal Chem. 2:1–9. doi: 10.1155/2015/849769.
  • Yao H, Chen B, Zhang Y, Ou H, Li Y, Li S, Shi P, Lin X. 2017. Analysis of the total biflavonoids extract from selaginelladoederleinii by HPLC-QTOF-MS and its in vitro and in vivo anticancer effects. Molecules. 22(2):325–341. doi: 10.3390/molecules22020325.

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