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Sofi F, Cesari F, Abbate R, Gensini GF, Casini A. Adherence to Mediterranean diet and health status: meta-analysis. BMJ Research 2008; 337-1344.SofiFCesariFAbbateRGensiniGFCasiniAAdherence to Mediterranean diet and health status: meta-analysisBMJ Research2008337134410.1136/bmj.a1344Search in Google Scholar

González-Trujano ME, Peña EI, Martínez AL, Moreno J, Guevara-Fefer P, Déciga-Campos M, López-Muñoz FJ. Evaluation of the antinociceptive effect of Rosmarinus officinalis L. using three different experimental models in rodents. J Ethnopharmacol 2007; 111 (3):476-82.González-TrujanoMEPeñaEIMartínezALMorenoJGuevara-FeferPDéciga-CamposMLópez-MuñozFJEvaluation of the antinociceptive effect of Rosmarinus officinalis Lusing three different experimental models in rodents. J Ethnopharmacol200711134768210.1016/j.jep.2006.12.011Search in Google Scholar

Zheng WZ, Wang SY. Antioxidant Activity and Phenolic Compounds in Selected Herbs. J. Agric. Food Chem 2001;(49):5165−5170.ZhengWZWangSYAntioxidant Activity and Phenolic CompoundsSelected Herbs. J. Agric. Food Chem2001495165−517010.1021/jf010697nSearch in Google Scholar

Lu YR, Foo LY. Antioxidant and radical scavenging activities of polyphenols from apple pomace, Food Chem 2000;(68): 81-85.LuYRFooLYAntioxidant and radical scavenging activities of polyphenols from apple pomaceFood Chem200068818510.1016/S0308-8146(99)00167-3Search in Google Scholar

Monks NR, Bordignon SAL, Ferraz A, Machado KR, Faria DH, Lopes RM, Mondin CA, de Souza ICC, Lima MFS, da Rocha AB, Schwartsmann G. Anti-tumor screening of Brazilian plants. Pharm Biol 2002; 40 (8):603 – 616.MonksNRBordignonSALFerrazAMachadoKRFariaDHLopesRMMondinCAdeSouza ICCLimaMFSdaRocha ABSchwartsmannGAnti-tumor screening of Brazilian plantsPharm Biol200240860361610.1076/phbi.40.8.603.14658Search in Google Scholar

Najjaa H, Ben Arfa A, Máthé A, Neffati M. Aromatic and Medicinal plants of Tunisian Arid and desertic zone used in Traditional Medicine for Drug Discovery and biotechnological applications. In Medicinal and Aromatic Plants of the World – Africa. Spinger Editor 2017; (3):157-230.NajjaaHBenArfa AMáthéANeffatiMAromatic and Medicinal plants of Tunisian Arid and desertic zone used in Traditional Medicine for Drug Discovery and biotechnological applications. In Medicinal and Aromatic Plants of the World – AfricaSpinger Editor2017315723010.1007/978-94-024-1120-1_8Search in Google Scholar

Ksouri R, Falleh H, Megdiche W, Trabelsi N, Mhamdi B, Chaieb K, Bakrouf A, Magné C, Abdelly C. Antioxidant and antimicrobial activities of the edible medicinal halophyte Tamarix gallica L. and related polyphenolic constituents, Food Chem Toxicol 2009; 47 (8):2083-2091.KsouriRFallehHMegdicheWTrabelsiNMhamdiBChaiebKBakroufAMagnéCAbdellyCAntioxidant and antimicrobial activities of the edible medicinal halophyte Tamarix gallica Land related polyphenolic constituents, Food Chem Toxicol20094782083209110.1016/j.fct.2009.05.040Search in Google Scholar

Ziyyat A, Legssyer A, Mekhfi H, Dassouli A, Serhrouchni M, Benjelloun W. Phytotherapy of hypertension and diabetes in oriental Morocco. J Ethnopharmacol 1997;58 (1):45-54.ZiyyatALegssyerAMekhfiHDassouliASerhrouchniMBenjellounWPhytotherapy of hypertension and diabetes in oriental MoroccoJ Ethnopharmacol1997581455410.1016/S0378-8741(97)00077-9Search in Google Scholar

Souid S, Elsayed HE, Ebrahim HY, Mohyeldin MM, Siddique AB, Karouia H, El Sayed KA, Essafi-Benkhadira K. 131 -Oxophorbine protopheophorbide A from Ziziphus lotus as a novel mesenchymalepithelial transition factor receptor inhibitory lead for the control of breast tumor growth in vitro and in vivo. Mol Carcinog 2018; 57 (11):1507-1524.SouidSElsayedHEEbrahimHYMohyeldinMMSiddiqueABKarouiaHElSayed KAEssafi-BenkhadiraK131 -Oxophorbine protopheophorbide A from Ziziphus lotus as a novel mesenchymalepithelial transition factor receptor inhibitory lead for the control of breast tumor growth in vitro and in vivoMol Carcinog201857111507152410.1002/mc.2287429978911Search in Google Scholar

A. Flore analytique et synoptique de la Tunisie. Cryptogames vasculaires, Gymnospermes et Monocotylédones. S.E.F.A.N. (Eds) Tunis 1954, , pp.287.Flore A.analytique et synoptique de la Tunisie. Cryptogames vasculaires, Gymnospermes et MonocotylédonesS.E.F.A.N. (Eds) Tunis1954287Search in Google Scholar

Khadri A, Serralheiro MLM, Nogueira JMF, Neffati M, Smiti S, Araújo MEM, Antioxidant and antiacetylcholinesterase activities of essential oils from Cymbopogon schoenanthus L. Spreng. Determination of chemical composition by GC–Mass Spectrometry and 13C-NMR. Food Chem. 2008;109 (3): 630-637.KhadriASerralheiroMLMNogueiraJMFNeffatiMSmitiSAraújoMEMAntioxidantand antiacetylcholinesterase activities of essential oils from Cymbopogon schoenanthus LSprengDetermination of chemical composition by GC–Mass Spectrometry and 13C-NMR. Food Chem2008109363063710.1016/j.foodchem.2007.12.070Search in Google Scholar

Akgül A. Spice science and technology. Publication N°15. Turkish Association of Food Technologists Ankara, 1993, p 451.AkgülA.Spice science and technology. Publication N°15. Turkish Association of Food Technologists Ankara1993451Search in Google Scholar

Senatore F, De Feo V. Essential oil of a possible new chemotype of crithmum maritimum L. growing in campania (Southern Italy). Flavour Fragr J 1994; 9 (6):305-397.SenatoreFDeFeo VEssential oil of a possible new chemotype of crithmum maritimum Lgrowing in campania (Southern Italy). Flavour Fragr J19949630539710.1002/ffj.2730090605Search in Google Scholar

Jarraya R, Bouaziz A, Hamdi B, Ben Salah A, Damak M. N-methylisosalsoline from Hammada scoparia, Acta Crystallographica E 2008; (64): 1714.JarrayaRBouazizAHamdiBBenSalah ADamakMN-methylisosalsoline from Hammada scopariaActa Crystallographica E200864171410.1107/S160053680802477XSearch in Google Scholar

Salah H, Jarraya R, Martin MT, Veitch NC, Grayer RJ, Simmonds MS, Damak M. Flavonol triglycosides from the leaves of Hammada scoparia (Pomel) Iljin. Chem Pharm Bull 2002; (50): 1268-1270.SalahHJarrayaRMartinMTVeitchNCGrayerRJSimmondsMSDamakMFlavonol triglycosides from the leaves of Hammada scoparia (Pomel) IljinChem Pharm Bull2002501268127010.1248/cpb.50.1268Search in Google Scholar

Burits M, Bucar F. Antioxidant activity of Nigella sativa essential oil. Phytother Res 2000; (14):323–328.BuritsMBucarFAntioxidant activity of Nigella sativa essential oilPhytother Res20001432332810.1002/1099-1573(200008)14:5<323::AID-PTR621>3.0.CO;2-QSearch in Google Scholar

M, Mosharrafa SA, Saleh NAM, Abdel-Wahab SM. Two new flavonoids from Retama raetam. Fitoterapia 2000; (71):649-654.MosharrafaSASalehNAMAbdel-WahabSMTwo new flavonoids from Retama raetamFitoterapia20007164965410.1016/S0367-326X(00)00224-0Search in Google Scholar

Borgi W, Recio MC, Rios JL, Chouchane N. Anti-inflammatory and analgesic activities of flavonoid and saponin fractions from Zizyphus lotus (L.) Lam. S Afr J Bot, 2008;(74): 320-324.BorgiWRecioMCRiosJLChouchaneNAnti-inflammatory and analgesic activities of flavonoid and saponin fractions from Zizyphus lotus (L.) LamS Afr J Bot20087432032410.1016/j.sajb.2008.01.009Search in Google Scholar

Adzu B, Amos S, Amizan MB, Gamaniel K. Evaluation of the antidiarrheal effects of Zizyphus spina-christi stem bark in rats. Acta Tropica 2003;(7):245-250.AdzuBAmosSAmizanMBGamanielKEvaluation of the antidiarrheal effects of Zizyphus spina-christi stem bark in ratsActa Tropica2003724525010.1016/S0001-706X(03)00114-1Search in Google Scholar

Dewanto WX, Adom KK, Liu RH. Thermal processing enchances the nutritional value of tomatoes by increasing total antioxidant activity. Food Chem 2002;(50):3010-3014.DewantoWXAdomKKLiuRHThermal processing enchances the nutritional value of tomatoes by increasing total antioxidant activityFood Chem2002503010301410.1021/jf0115589Search in Google Scholar

Sun B, Richardo-Da-Silvia JM, Spranger I. Critical factors of vanillin assay for catechin and proanthocyanidins, Food chem 1998;(46):4467-4274.SunBRichardo-Da-SilviaJMSprangerICritical factors of vanillin assay for catechin and proanthocyanidinsFood chem1998464467427410.1021/jf980366jSearch in Google Scholar

Falleh H, Ksouri R, Medini F, Guyot S, Abdelly C, Magné C. Antioxidant activity and phenolic composition of the medicinal and edible halophyte Mesembryanthemum edule L., Ind Crop Prod 2010;(34):1066–1071.FallehHKsouriRMediniFGuyotSAbdellyCMagnéC.Antioxidant activity and phenolic composition of the medicinal and edible halophyte Mesembryanthemum edule LInd Crop Prod2010341066107110.1016/j.indcrop.2011.03.018Search in Google Scholar

Hanato T, Kagawa H, Yasuhara T, Okuda T. Two new flavonoids and other constituents in licorice root: their relative astringency and radical scavenging effect. Chem. Pharm. Bull. 1988;36 23.HanatoTKagawaHYasuharaTOkudaTTwo new flavonoids and other constituents in licorice root: their relative astringency and radical scavenging effectChem. Pharm. Bull1988362310.1248/cpb.36.20903240445Search in Google Scholar

Oyaizu M. Studies on product of browning reaction prepared from glucose amine. J-Stage 1986;(44):307.OyaizuMStudies on product of browning reaction prepared from glucose amineJ-Stage19864430710.5264/eiyogakuzashi.44.307Search in Google Scholar

Tsolmon S, Han J, Isoda H. Inhibition of cell growth by Stellera chamaejasme extract is associated with induction of autophagy and differentiation in chronic leukemia K562 cells, J. Biosci Bioeng 2010; 110 (2): 262–268.TsolmonSHanJIsodaHInhibition of cell growth by Stellera chamaejasme extract is associated with induction of autophagy and differentiation in chronic leukemia K562 cells, JBiosci Bioeng2010110226226810.1016/j.jbiosc.2010.02.00620547324Search in Google Scholar

Alothman M, Bhat R, Karim AA. Antioxidant capacity and phenolic content of selected tropical fruits from Malaysia, extracted with different solvents. Food Chem 2009;(115):785–788.AlothmanMBhatRKarimAAAntioxidant capacity and phenolic content of selected tropical fruits from Malaysiaextracted with different solvents. Food Chem200911578578810.1016/j.foodchem.2008.12.005Search in Google Scholar

Babbar N, Oberoi HS, Sandhu SK, Bhargav VK. Influence of different solvents in extraction of phenolic compounds from vegetable residues and their evaluation as natural sources of antioxidants. J Food Sci Technol 2014 ;(51):2568-2575.BabbarNOberoiHSSandhuSKBhargavVKInfluence of different solvents in extraction of phenolic compounds from vegetable residues and their evaluation as natural sources of antioxidantsJ Food Sci Technol2014512568257510.1007/s13197-012-0754-4419026525328197Search in Google Scholar

Ksouri R, Megdiche W, Falleh H, Trabelsi N, Boulaaba M, Smaoui A, Abdelly C. Influence of biological, environmental and technical factors on phenolic content and antioxidant activities of Tunisian halophytes. CR Biol 2008; (331):865-873.KsouriRMegdicheWFallehHTrabelsiNBoulaabaMSmaouiAAbdellyCInfluence of biological, environmental and technical factors on phenolic content and antioxidant activities of Tunisian halophytesCR Biol200833186587310.1016/j.crvi.2008.07.02418940702Search in Google Scholar

Garcia-Salas P, Morales-Soto A, Segura-Carretero A, Fernández-Gutiérrez A. Phenolic-Compound-Extraction Systems for Fruit and Vegetable Samples. Mol 2010; 15 (12):8813-8826.Garcia-SalasPMorales-SotoASegura-CarreteroAFernández-GutiérrezAPhenolic-Compound-Extraction Systems for Fruit and Vegetable SamplesMol201015128813882610.3390/molecules15128813625935321131901Search in Google Scholar

Balasundram N, Sundram K, Samman S. Phenolic compounds in plants and agri-industrial by-products: Antioxidant activity, occurrence, and potential uses. Food Chem 2006; (99):191–203.BalasundramNSundramKSammanSPhenolic compounds in plants and agri-industrial by-products: Antioxidant activity, occurrence, and potential usesFood Chem20069919120310.1016/j.foodchem.2005.07.042Search in Google Scholar

Djeridane M., Yousfi B., Nadjemi D., Boutassouna P., Stocker N. Antioxidant activity of some Algerian medicinal plants extracts containing phenolic compounds. Food Chem 2006; (97): 654–660.DjeridaneM.YousfiB.NadjemiD.BoutassounaP.StockerNAntioxidant activity of some Algerian medicinal plants extracts containing phenolic compoundsFood Chem20069765466010.1016/j.foodchem.2005.04.028Search in Google Scholar

Panche AN, Diwan AD, Chandra SR. Flavonoids: an overview, J Nutr Sci 2016; 5 (47):1-15.PancheANDiwanADChandraSRFlavonoids: an overviewJ Nutr Sci201654711510.1017/jns.2016.41546581328620474Search in Google Scholar

Waterman PG, Mole S. Analysis of Phenolic Plant Metabolites. Blackwell Scientific Publications, Oxford. 1994WatermanPGMoleSAnalysis of Phenolic Plant MetabolitesBlackwell Scientific PublicationsOxford1994Search in Google Scholar

Jay M, Lumaret R, Variation in the subtropical group of Dactylis glomerata L., -2. Evidence from phenolic compounds patterns, Biochem Syst Ecol 1995;(23):523-531.JayMLumaretRVariation in the subtropical group of Dactylis glomerata L., -2. Evidence from phenolic compounds patternsBiochem Syst Ecol19952352353110.1016/0305-1978(95)00052-VSearch in Google Scholar

Gill SS, Tuteja N, Polyamines and abiotic stress tolerance in plants. Plant Signal Behav 2010; 5 Suppl 1: 26-33.GillSSTutejaNPolyamines and abiotic stress tolerance in plantsPlant Signal Behav20105 Suppl1263310.4161/psb.5.1.10291283595320592804Search in Google Scholar

Wu CP, Calcagno AM, Hladky SB, Ambudkar SV, Barrand MA. Modulatory effects of plant polyphenols on human multidrug resistance proteins 1, 4, and 5 (ABCC1, 4, and 5). FEBS Journal 2005; (272):4725-4740.WuCPCalcagnoAMHladkySBAmbudkarSVBarrandMA.Modulatory effects of plant polyphenols on human multidrug resistance proteins 1, 4, and 5 (ABCC1, 4, and 5)FEBS Journal20052724725474010.1111/j.1742-4658.2005.04888.x135083816156793Search in Google Scholar

Shahidi F, Naczk M. Phenolics in Food and Nutraceuticals, Boca Raton, FL, CRC Press 2003. p 576.ShahidiFNaczkMPhenolics in Food and NutraceuticalsBoca Raton, FLCRC Press200357610.1201/9780203508732Search in Google Scholar

Choi HJ, Song JH, Kwon DH. Quercetin 3-rhamnoside exerts antiinfluenza A virus activity in mice, Phytother Res 2012; (26):462-4.ChoiHJSongJHKwonDHQuercetin 3-rhamnoside exerts antiinfluenza A virus activity in micePhytother Res201226462410.1002/ptr.352921728202Search in Google Scholar

Rocha-Amador OG, Gallegos-Infante JA, Huang Q, González-LaredoRF. Effect of Glycosylation Degree of Quercetin on Its in Vitro Bioaccessibility in Food Grade Organogels. INT J Food Eng 2017; 13 (12):1556-1558.Rocha-AmadorOGGallegos-InfanteJAHuangQGonzález-LaredoRFEffect of Glycosylation Degree of Quercetin on Its in Vitro Bioaccessibility in Food Grade OrganogelsINT J Food Eng201713121556155810.1515/ijfe-2017-0166Search in Google Scholar

He M, Min JW, Kong WL, He XH, Li JX, Peng BW. A review on the pharmacological effects of vitexin and isovitexin. Fitoterapia 2016;(115):74-85.HeMMinJWKongWLHeXHLiJXPengBWA review on the pharmacological effects of vitexin and isovitexinFitoterapia2016115748510.1016/j.fitote.2016.09.01127693342Search in Google Scholar

Amin FU, Shah SA, Kim MO. Vanillic acid attenuates Aβ(1-42)-induced oxidative stress and cognitive impairment in mice. Sci Rep 2017; (7): 40753.AminFUShahSAKimMOVanillic acid attenuates Aβ(1-42)-induced oxidative stress and cognitive impairment in miceSci Rep201774075310.1038/srep40753524165428098243Search in Google Scholar

Guo S, YanJ, Yang T, Yang X, Bezard E, Zhao B, Protective effects of green tea polyphenols in the 6-OHDA rat model of Parkinson’s disease through inhibition of ROS-NO pathway. Sci Rep 2007;(62):1353-62.GuoSYanJYangTYangXBezardEZhaoBProtective effects of green tea polyphenols in the 6-OHDA rat model of Parkinson’s disease through inhibition of ROS-NO pathwaySci Rep20076213536210.1016/j.biopsych.2007.04.02017624318Search in Google Scholar

Lee H, Bae JH, Lee SR. Protective effect of green tea polyphenol EGCG against neuronal damage and brain edema after unilateral cerebral ischemia in gerbils. J Neurosci Res 2004 (77):892-900.LeeHBaeJHLeeSRProtective effect of green tea polyphenol EGCG against neuronal damage and brain edema after unilateral cerebral ischemia in gerbilsJ Neurosci Res20047789290010.1002/jnr.2019315334607Search in Google Scholar

Saha SK, Lee SB, Won J, Choi HY, Kim KG, Dayem AA, Cho SG. Correlation between Oxidative Stress, Nutrition, and Cancer Initiation. Int J Mol Sci 2017; 18(7).SahaSKLeeSBWonJChoiHYKimKGDayemAAChoSGCorrelation between Oxidative Stress, Nutrition, and Cancer InitiationInt J Mol Sci201718710.3390/ijms18071544553603228714931Search in Google Scholar

Zhang Y, Seeram NP, Lee R, Feng L, Heber D. Isolation and Identification of Strawberry Phenolics with Antioxidant and Human Cancer Cell Antiproliferative Properties. J Agric Food Chem 2008;(56):670–675.ZhangYSeeramNPLeeRFengLHeberDIsolation and Identification of Strawberry Phenolics with Antioxidant and Human Cancer Cell Antiproliferative PropertiesJ Agric Food Chem20085667067510.1021/jf071989c18211028Search in Google Scholar

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