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Natural Product Research
Formerly Natural Product Letters
Volume 32, 2018 - Issue 16
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Research Articles

Flavonoid profile, antioxidant and antiglycation properties of Retama sphaerocarpa fruits extracts

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Pages 1911-1919 | Received 25 Apr 2017, Accepted 10 Jul 2017, Published online: 24 Jul 2017

References

  • Belmokhtar Z, Harche MK. 2014. In vitro antioxidant activity of Retama monosperma (L.) Boiss. Nat Prod Res. 28:2324–2329.10.1080/14786419.2014.934237
  • Benbacer L, Merghoub N, Btaouri HE, Gmouh S, Attaleb M, Morjani H, Amzazi S, Mzibri ME. 2012. Antiproliferative effect and induction of apoptosis by Inula viscosa L. and Retama monosperma L. extracts in human cervical cancer cells. In: Rajkumar R, editor. Topics on cervical cancer with an advocacy for prevention. Rijeka: Intechopen; p. 267–284.
  • Boulila F, Farida B, Depret G, Géraldine D, Boulila A, Abdelghani B, Belhadi D, Djellali B, Benallaoua S, Said B, et al. 2009. Retama species growing in different ecological-climatic areas of northeastern Algeria have a narrow range of rhizobia that form a novel phylogenetic clade within the Bradyrhizobium genus. Syst Appl Microbiol. 32:245–255.
  • Boussahel S, Speciale A, Dahamna S, Amar Y, Bonaccorsi I, Cacciola F, Cimino F, Donato P, Ferlazzo G, Harzallah D, et al. 2015. Flavonoid profile, antioxidant and cytotoxic activity of different extracts from Algerian Rhamnus alaternus L. bark. Pharmacogn Mag. 11:S102–S109.
  • Bremner P, Rivera D, Calzado MA, Obón C, Inocencio C, Beckwith C, Fiebich BL, Muñoz E, Heinrich M. 2009. Assessing medicinal plants from South-Eastern Spain for potential anti-inflammatory effects targeting nuclear factor-Kappa B and other pro-inflammatory mediators. J Ethnopharmacol. 124:295–305.10.1016/j.jep.2009.04.035
  • Caravaca F, Alguacil MM, Figueroa D, Barea JM, Roldan A. 2003. Re-establishment of Retama sphaerocarpa as a target species for reclamation of soil physical and biological properties in a semi-arid Mediterranean area. For Ecol Manage. 182:49–58.10.1016/S0378-1127(03)00067-7
  • Cimino F, Speciale A, Anwar S, Canali R, Ricciardi E, Virgili F, Trombetta D, Saija A. 2013. Anthocyanins protect human endothelial cells from mild hyperoxia damage through modulation of Nrf2 pathway. Genes Nutr. 8:391–399.10.1007/s12263-012-0324-4
  • Crascì L, Lauro MR, Puglisi G, Panico A. 2016. Natural antioxidant polyphenols on inflammation management: anti-glycation activity vs metalloproteinases inhibition. Crit Rev Food Sci Nutr. doi:10.1080/10408398.2016.1229657.
  • Dehimi K, Speciale A, Saija A, Dahamna S, Raciti R, Cimino F, Cristani M. 2016. Antioxidant and anti-inflammatory properties of Algerian Thymelaea microphylla Coss. and Dur. Extracts Pharmacogn Mag. 12:203–210.
  • Djeddi S, Karioti A, Yannakopoulou E, Papadopoulos K, Chatter R, Skaltsa H. 2013. Analgesic and antioxidant activities of Algerian Retama raetam (Forssk.) Webb & Berthel extracts. Rec Nat Prod. 7:169–176.
  • Eddouks M, Maghrani M, Louedec L, Haloui M, Michel JB. 2007. Antihypertensive activity of the aqueous extract of Retama raetam Forssk. leaves in spontaneously hypertensive rats. J Herb Pharmacother. 7:65–77.
  • Edziri H, Mastouri M, Cheraif I, Aouni M. 2010. Chemical composition and antibacterial, antifungal and antioxidant activities of the flower oil of Retama raetam (Forssk.) Webb from Tunisia. Nat Prod Res. May;24:789–796.10.1080/14786410802529190
  • El-Shazly A, Ateya AM, Witte L, Wink M. 1996. Quinolizidine Alkaloid Profiles of Retama raetam, R. sphaerocarpa and R. monosperma. Z Naturforsch C. 51:301–308.
  • Guerrouj K, Ruiz-Diez B, Chahboune R, Ramirez-Bahena MH, Abdelmoumen H, Quinones MA, El Idrissi MM, Velazquez E, Fernandez-Pascual M, Bedmar EJ, et al. 2013. Definition of a novel symbiovar (sv. retamae) within Bradyrhizobium retamae sp. nov., nodulating Retama sphaerocarpa and Retama monosperma. Syst Appl Microbiol. Jun;36:218–223.10.1016/j.syapm.2013.03.001
  • Haase P, Pugnaire FI, Fernández EM, Puigdefábregas J, Clark SC, Incoll LD. 1996. An investigation of rooting depth of the semiarid shrub Retama sphaerocarpa (L.) Boiss. by labelling of ground water with a chemical tracer. J Hydrol. 177:23–31.10.1016/0022-1694(95)02794-7
  • Huvaere K, Skibsted LH. 2015. Flavonoids protecting food and beverages against light. J Sci Food Agric. 95:20–35.10.1002/jsfa.2015.95.issue-1
  • Kladna A, Berczynski P, Kruk I, Piechowska T, Aboul-Enein HY. 2016. Studies on the antioxidant properties of some phytoestrogens. Luminescence. 31:1201–1206.10.1002/bio.v31.6
  • Li AN, Li S, Zhang YJ, Xu XR, Chen YM, Li HB. 2014. Resources and biological activities of natural polyphenols. Nutrients. 6:6020–6047.10.3390/nu6126020
  • López Lázaro M, Martín-Cordero C, Iglesias-Guerra F, Ayuso González MJ. 1998. An isoflavone glucoside from Retama sphaerocarpa boissier. Phytochemistry. 48:401–402.10.1016/S0031-9422(97)00909-6
  • López-Lázaro M, Martín-Cordero C, Cortés F, Piñero J, Ayuso MJ. 2000. Cytotoxic activity of flavonoids and extracts from Retama sphaerocarpa Boissier. Z Naturforsch C. 55:40–43.
  • Louaar S, Akkal S, Bousetla A, Medjroubi K, Djarri L, Seguin E. 2005. Phytochemical study of Retama sphaerocarpa. Chem Nat Comp. 41:107–108.10.1007/s10600-005-0091-1
  • Louaar S, Akkal S, Laouer H, Guilet D. 2007. Flavonoids of Retama sphaerocarpa leaves and their antimicrobial activities. Chem Nat Comp. 43:616–617.10.1007/s10600-007-0207-x
  • Maghrani M, Michel JB, Eddouks M. 2005. Hypoglycaemic activity of Retama raetam in rats. Phytother Res. Feb;19:125–128.10.1002/(ISSN)1099-1573
  • Maghrani M, Zeggwagh NA, Haloui M, Eddouks M. 2005. Acute diuretic effect of aqueous extract of Retama raetam in normal rats. J Ethnopharmacol. May;99:31–35.10.1016/j.jep.2005.01.045
  • Martín-Cordero C, López-Lázaro M, Espartero JL, Ayuso MJ. 2000. Retamatrioside, a new flavonol triglycoside from Retama sphaerocarpa. J Nat Prod. 63:248–250.10.1021/np990105j
  • Martín-Cordero C, Lázaro ML, Gil-Serrano A, Carvajal MAR, González MJA. 1999. Novel flavonol glycoside from Retama sphaerocarpa Boissier. Phytochemistry. 51:1129–1131.10.1016/S0031-9422(98)00713-4
  • Merghoub N, Benbacer L, El Btaouri H, Ait Benhassou H, Terryn C, Attaleb M, Madoulet C, Benjouad A, El Mzibri M, Morjani H, et al. 2011. In vitro antiproliferative effect and induction of apoptosis by Retama monosperma L. extract in human cervical cancer cells. Cell Mol Biol (Noisy-le-grand). 57 Suppl:OL1581–OL1591.
  • Nagai R, Shirakawa J, Ohno R, Moroishi N, Nagai M. 2014. Inhibition of AGEs formation by natural products. Amino Acids. 46:261–266.10.1007/s00726-013-1487-z
  • Napoli EM, Siracusa L, Saija A, Speciale A, Trombetta D, Tuttolomondo T, La Bella S, Licata M, Virga G, Leone R, et al. 2015. Wild Sicilian rosemary: phytochemical and morphological screening and antioxidant activity evaluation of extracts and essential oils. Chem Biodivers. 12:1075–1094.10.1002/cbdv.v12.7
  • Ouerghemmi S, Sebei H, Siracusa L, Ruberto G, Saija A, Cimino F, Cristani M. 2016. Comparative study of phenolic composition and antioxidant activity of leaf extracts from three wild Rosa species grown in different Tunisia regions: Rosa canina L., Rosa moschata Herrm. and Rosa sempervirens L. Ind Crops Prod. 94:167–177.10.1016/j.indcrop.2016.08.019
  • Rahman Mazumder MA, Hongsprabhas P. 2016. Genistein as antioxidant and antibrowning agents in in vivo and in vitro: a review. Biomed Pharmacother. 82:379–392.10.1016/j.biopha.2016.05.023
  • Rice-Evans C. 2001. Flavonoid antioxidants. Curr Med Chem. 8:797–807.10.2174/0929867013373011
  • Silvan JM, Srey C, Ames JM, del Castillo MD. 2014. Glycation is regulated by isoflavones. Food Funct. 5:2036–2042.10.1039/C4FO00260A
  • Touati R, Santos SAO, Rocha SM, Belhamel K, Silvestre AJD. 2015. Retama sphaerocarpa: an unexploited and rich source of alkaloids, unsaturated fatty acids and other valuable phytochemicals. Ind Crops Prod. 69:238–243.10.1016/j.indcrop.2015.02.016
  • Touati R, Santos SAO, Rocha SM, Belhamel K, Silvestre AJD. 2017. Phenolic composition and biological prospecting of grains and stems of Retama sphaerocarpa. Ind Crops Prod. 95:244–255.10.1016/j.indcrop.2016.10.027
  • Villar-Salvador P, Valladares F, Domínguez-Lerena S, Ruiz-Díez B, Fernández-Pascual M, Delgado A, Peñuelas JL. 2008. Functional traits related to seedling performance in the Mediterranean leguminous shrub Retama sphaerocarpa: Insights from a provenance, fertilization, and rhizobial inoculation study. Environ Exp Bot. 64:145–154.10.1016/j.envexpbot.2008.04.005

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