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Research Article

LC-MS identification and preparative HPLC isolation of Frankenia pulverulenta phenolics with antioxidant and neuroprotective capacities in PC12 cell line

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Pages 880-887 | Received 15 Mar 2016, Accepted 29 Dec 2016, Published online: 02 Feb 2017

References

  • Abramov AY, Canevari L, Duchen MR. 2004. Beta-amyloid peptides induce mitochondrial dysfunction and oxidative stress in astrocytes and death of neurons through activation of NADPH oxidase. J Neurosci. 24:565–575.
  • Abu-Reidah I, Ali-Shtayeh MS, Jamous RM, Arraez-Roman D, Segura-Carretero A. 2015. HPLC-DAD-ESI-MS/MS screening of bioactive components from Rhus coriaria L. (Sumac) fruits. Food Chem. 166:179–191.
  • Basli A, Delaunay JC, Pedrot E, Bernillon S, Madani K, Monti JP, Mérillon JM, Chibane M, Richard T. 2004. New cyclolignans from Origanum glandulosum active against β-amyloid aggregation. Rec Nat Prod. 8:208–216.
  • Bastianetto S, Yao ZX, Papadopoulos V, Quirion R. 2006. Neuroprotective effects of green and black teas and their catechin gallate esters against beta-amyloid-induced toxicity. Eur J Neurosci. 23:55–64.
  • Blois MS. 1958. Antioxidant determinations by the use of a stable free radical. Nature. 181:1199–1200.
  • Bolea I, Gella A, Monjas L, Perez C, Maria R-F, Marco-Contelles J, Samadi A, Unzeta M. 2013. Multipotent, permeable drug ASS234 inhibits Aβ aggregation, possesses antioxidant properties and protects from Aβ-induced apoptosis In Vitro. Curr Alzheimer Res. 10:797–808.
  • Boada MD, Martin TJ, Peters CM, Hayashida K, Harris MH, Houle TT, Boyden ES, Eisenaca JC, Ririe DG. 2014. Fast-conducting mechanoreceptors contribute to withdrawal behavior in normal and nerve injured rats. Pain. 155:2646–2655.
  • Clarke JR, Lyra E Silva NM, Figueiredo CP, Frozza RL, Ledo JH, Beckman D, Katashima CK, Razolli D, Carvalho BM, Frazão R, et al. 2015. Alzheimer-associated Aβ oligomers impact the central nervous system to induce peripheral metabolic deregulation. EMBO Mol Med. 7:190–210.
  • Dàvalos A, Gomèz-Cordovès C, Bartolomé B. 2004. Extending applicability of the oxygen radical absorbance capacity (ORAC-Fluorescein) assay. J Agric Food Chem. 52:48–54.
  • Desire O, Rivière C, Razafindrazaka R, Goossens L, Moreau S, Guillon J, Uverg-Ratsimamanga S, Andriamadio P, Moore N, Randriantsoa A, et al. 2010. Antispasmodic and antioxidant activities of fractions and bioactive constituent davidigenin isolated from Mascarenhasia arborescens. J Ethnopharmacol. 130:320–328.
  • Dhingra N, Sharma R, Kar A. 2014. Towards further understanding on the antioxidative activities of Prunus persica fruit: a comparative study with four different fractions. Spectrochim Acta A Mol Biomol Spectrosc. 132:582–587.
  • Dinis TCP, Madeira VM, Almeida LM. 1994. Action of phenolic derivates (acetaminophen, salicylate, and 5-aminosalicylate) as inhibitors of membrane lipid peroxidation and as peroxyl radical scavengers. Arch Biochem Biophys. 315:161–169.
  • El Bitar F, Meunier J, Villard V, Alméras M, Krishnan K, Covey DF, Maurice T, Akwa Y. 2014. Neuroprotection by the synthetic neurosteroid enantiomers ent-PREGS and ent-DHEAS against Aβ25–35 peptide-induced toxicity in vitro and in vivo in mice. Psychopharmacology (Berl). 231:3293–3312.
  • Esposito L, Raber J, Kekonius L. 2006. Reduction in mitochondrial superoxide dismutase modulates Alzheimer’s disease-like pathology and accelerates the onset of behavioral changes in human amyloid precursor protein transgenic mice. J Neurosci. 19:5167–5179.
  • Finkel T, Holbrook NJ. 2000. Oxidants, oxidative stress and the biology of ageing. Nature. 408:239–247.
  • Gasperotti M, Masuero D, Vrhovsek U, Guella G, Mattivi F. 2010. Profiling and accurate quantification of Rubus ellagitannins and ellagic acid conjugates using direct UPLC-Q-TOF hdms and HPLC-DAD analysis. J Agric Food Chem. 58:4602–4616.
  • Harborne JB. 1975. Flavonoids bi sulfates and their co occurrenceswith ellagic-acid in the Bixaceae Frankeniaceae and related families. Phytochemistry. 14:1331–1338.
  • Harkat H, Haba H, Marcourt L, Long C, Benkhaled M. 2007. An unusual lignan sulfate and aromatic compounds from Frankenia thymifolia Desf. Biochem Syst Ecol. 35:176–179.
  • Henry-Vitrac C, Berbille H, Mérillon JM, Vitrac X. 2010. Soy isoflavones as potential inhibitors of Alzheimer-amyloid fibril aggregation in vitro. Food Res Int. 43:2176–2178.
  • Hussein SAM. 2004. Phenolic sodium sulphates of Frankenia laevis L. Pharmazie. 59:304.
  • Kabran GR, Mamyrbekova-Bekro JA, Pirat JL, Bekro YA, Sommerer N, Verbaere A, Meudec E. 2014. Identification de composés phénoliques extraits de deux plantes de la pharmacopée ivoirienne. J Soc Ouest-Afr Chim. 38:57–63.
  • Ksouri R, Falleh H, Megdiche W, Trabelsi N, Mhamdi B, Chaieb K, Bakrouf A, Magné C, Abdelly C. 2009. Antioxidant and antimicrobial activities of the edible medicinal halophyte Tamarix gallica L. and related polyphenolic constituents. Food Chem Toxicol. 47:2083–2091.
  • Lin MT, Beal MF. 2006. Review article mitochondrial dysfunction and oxidative stress in neurodegenerative diseases. Nature. 443:787–795.
  • Lin Z, Zheng LC, Zhang H-J, Wai Tsang S, Bian Z-X. 2015. Anti-fibrotic effects of phenolic compounds on pancreatic stellate cells. BMC Complement Altern Med. 15:259.
  • Megdiche-Ksouri W, Chaouachi F, M’Rabet R, Medini F, Zaouali Y, Trabelsi N, Ksouri R, Noumi E, Abdelly C. 2011. Antioxidant and antimicrobial properties of Frankenia thymifolia Desf. fractions and their related biomolecules identification by gas chromatography/mass spectrometry (GC/MS) and high performance liquid chromatography (HPLC). J Med Plants Res. 5:5754–5765.
  • Ono K, Yoshiike Y, Takashima A, Hasegawa K, Naiki H, Yamada M. 2003. Potent anti-amyloidogenic and fibril-destabilizing effects of polyphenols in vitro: implications for the prevention and therapeutics of Alzheimer's disease. J Neurochem. 87:172–181.
  • Ou B, Hampsch-Woodill M, Prior RL. 2001. Development and validation of an improved oxygen radical absorbance capacity assay using fluorescein as the fluorescent probe. J Agric Food Chem. 49:4619–4626.
  • Ozenda P. 1991. Flora and vegetation of the Sahara. Paris: CNRS.
  • Re R, Pellegrini N, Proteggente A, Pannala A, Yang M, Rice-Evans C. 1999. Antioxidant activity applying an improved ABTS radical cation decolorization assay. Free Radic Biol Med. 26:1231–1237.
  • Richard T, Poupard P, Nassra M, Papastamoulis Y, Iglésias ML, Krisa S, Waffo-Teguo P, Mérillon JM, Monti JP. 2011. Protective effect of ɛ-viniferin on β-amyloid peptide aggregation investigated by electrospray ionization mass spectrometry. Bioorg Med Chem. 19:3152–3155.
  • Row KH, Jin Y. 2006. Recovery of catechin compounds from Korean tea by solvent extraction. Bioresour Technol. 97:790–793.
  • Saada M, Falleh H, Jalleli I, Snoussi M, Ksouri R. 2014. Phenolic profile, biological activities and fraction analysis of the medicinal halophyte Retama raetam. S Afri J Bot. 94:114–121.
  • Sannomiya M, Montoro P, Piacente S, Pizza C, Brito ARMS, Vilegas W. 2005. Application of liquid chromatography/electrospray ionization tandem mass spectrometry to the analysis of polyphenolic compounds from an infusion of Byrsonima crassa Niedenzu. Rapid Commun Mass Spectrom. 19:2244–2250.
  • Sassi AB, Harzallah-Skhiri F, Bourgougnon N, Aouni M. 2008. Antiviral activity of some Tunisian medicinal plants against Herpes simplex virus type 1. Nat Prod Res. 22:53–65.
  • Senevirathne M, Kim S, Siriwardhana N, Ha J, Lee K, Jeon Y. 2006. Antioxidant potential of Ecklonia cava on reactive oxygen species scavenging metal chelating, reducing power and lipid peroxidation inhibition. Food Sci Technol Int. 12:27–38.
  • Silva EM, Souza JNS, Rogez H, Rees JF, Larondelle Y. 2007. Antioxidant activities and polyphenolic contents of fifteen selected plant species from the Amazonian region. Food Chem. 1:1012–1018.
  • Singleton VL, Rossi JA. 1965. Colorimetry of total phenolics with phosphomolybdic-phosphotungstic acid reagents. Am J Enol Vitic. 16:144–158.
  • Surget G, Stiger-Pouvreau V, Le Lann K, Kervarec N, Couteau C, Coiffard L, Gaillard F, Cahier K, Guérard F, Poupart N. 2015. Structural elucidation, in vitro antioxidant and photoprotective capacities of a purified polyphenolic-enriched fraction from a saltmarsh plant. J Photochem Photobiol B Biol. 143:52–60.
  • Tadhani MB, Patel VH, Subhash R. 2007. In vitro antioxidant activities of Stevia rebaudiana leaves and callus. J Food Comp Anal. 20:323–329.
  • Tellone E, Galtieri A, Russo A, Giardina B, Ficarra S. 2015. Resveratrol: a focus on several neurodegenerative diseases. Oxid Med Cell Longev. 2015:1–14.
  • Xiao J, Li S, Sui Y, Li X, Wu Q, Zhang R, Zhang M, Xie B, Sun Z. 2015. In vitro antioxidant activities of proanthocyanidins extracted from the lotus seedpod and ameliorative effects on learning and memory impairment in scopolamine-induced amnesia mice. Food Sci Biotechnol. 24:1487–1494.
  • Yatin SM, Aksenova M, Aksenov M, Markesbery WR, Aulick T, Butterfield DA. 1999. Temporal relations among amyloid β-peptide-induced free-radical oxidative stress, neuronal toxicity, and neuronal defensive responses. J Mol Neurosci. 11:183–197.
  • Yoshikazu T, Yuji N. 2002. What is oxidative stress? JMAJ. 45:271–276.
  • Youssef RSA. 2013. Medicinal and non-medicinal uses of some plants found in the middle region of Saudi Arabia. J Med Plants Res. 7:2501–2517.