Comparative Study of the Antioxidant Activity of Holarrhena Floribunda and Picralima Nitida

Comparative Study of the Antioxidant Activity of Holarrhena Floribunda and Picralima Nitida

Picralima nitida (Stapf) T.Durand & H.Durand and Holarrhena floribunda (G.Don) T.Durand & Schinz are West and Central African plant species belonging to the Apocynaceae family. These two plants are used in traditional Ivorian medicine to treat hypertension, urinary tract infections, diarrhea, gonorrhea, malaria and diabetes. Phytochemical screening and evaluation of antioxidant activity of P. nitida fruit and H. floribunda leaf extracts of each of these two species have already been performed. In the present study, a comparative evaluation of the antioxidant activity of fruit (P. nitida) and leaf (H. floribunda) decoctions was carried out. The decoctions of P. nitida fruits and H. floribunda leaves were rich in secondary metabolites, especially polyphenols which have good antioxidant activity. Quantification of total phenols and flavonoids gave respective values of QP = 15235.632 ± 622 μg GAE / g dry matter and FP = 2.387 ± 0.387% for P. nitida and QH = 68597.701 ± 3171 μg GAE / g dry matter and FH = 17.581 ± 0.379% for H. floribunda. P. nitida showed antioxidant activity against DPPH radical (IC50 = 104.30 ± 3.17 μg / mL) and ferric ion Fe3 + (261.4 ± 36. 87 μmoL Eq Trolox / g extract). H. floribunda showed antioxidant activity against DPPH radical (IC50 = 41.73 ± 0.29 μg / mL) and ferric ion Fe3 + (365 ± 20.36 μmol Eq Trolox / g ExS).

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  • Athamena S. 2009. Etude quantitative et évaluation de l’activité biologique des flavonoïdes des graines de Cuminum cyminum et des feuilles de Rosmarinus officinalis Mémoire magister, Université El-Hadj Lakhdar-Batna.
  • Atmani A, Chaher N, Atmani D, Berboucha M, Debbache N, Boudaoud H. 2009. Flavonoids in human health: from structure to biological activity. Current Nutrition and Food Science, 5(4): 225-237.
  • Bakchiche B, Gherib A. 2014. Activités antioxydantes des polyphenols extraits de plantes médicinales de la pharmacopée traditionnelle d’Algérie. International Journal of Innovation and Applied Studies, 9(1): 167-172.
  • Bentabet N, Boucherit-Otmani Z, Boucherit K. 2014. Composition chimique et activité antioxydante d’extraits organiques des racines de Fredolia aretioides de la région de Béchar en Algérie. Phytothérapie, 12: 364-371.
  • Bidié AP, N’guessan BB, Yapo AF, N’guessan JD, Djaman AJ. 2011. Activités antioxydantes de dix plantes medicinales de la pharmacopée ivoirienne. Sciences and Nature, 8(1): 1 - 11.
  • Chang CJ, Tzeng TF, Liou SS, Chang YS, Liu IM. 2012. Acute and 28-Day Subchronic Oral Toxicity of an Ethanol Extract of Zingiber zerumbet (L.) Smith in Rodents. Evidence-Based Complementary and Alternative Medicine, (10): 2 -11.
  • Chen CW, Ho CT. 1995. Antioxidant properties of polyphenols extracted from green tea and black tea. J Lipids, 2: 35-46.
  • Chung YC, Chang CT, Chao WW, Lin CF, Chou ST. 2002. Antioxidative activity and safety of the 50% ethanolic extract from red bean fermented by Bacillus subtilis IMR-NK1. Journal of Agricultural and Food Chemistry, 50: 2454-2458.
  • De Pooter HL, Schamp N. 1986. Comparaison of the volatils composition of some Calamintha satureja species. In: Progress in essential oil research. Ed. E-J. Brunk, Walter De Gruyter, Berlin, 139-150.
  • Dehpour AA, Ebrahimzadeh MA, Nabavi SF, Nabavi SM. 2009. Antioxidant activity of methanol extract of Ferula assafoetida and its essential oil composition. Grasas y Aceites, 60: 405-412.
  • Duh PD, Tu YY, Yen GC. 1999. Antioxydant activity of water extract of harng Jyur (Chrysanthemum morifolium Ramat). Lebensm.wiss. Technol, 32: 269-277.
  • Erharuyi O, Engel-Lutz N, Ahomafor J, Imieje V, Falodun A, Nebe B, Langer P. 2014. Anticancer activity of five forest crops used in African folklore antiproliferative and pro-apoptotic effects, Natural Product Research: Formerly Natural Product Letters, 28(10): 740-745.
  • Hariri EB, Sallé G, Andary C. 1991. Involvement of flavonoids in the resistance of two poplar cultivars to mistletoe (Viscum album L.). Protoplasma, 162(1): 20-26.
  • Hatano T, Edamatsu R, Hiramatsu M, Mori A, Fujita Y, Yasuhara T, Yoshida T, Okuda T. 1989. Effect of interaction of tannins with co-existing substances VI. Effect of tannins and related polyphenols on superoxyde anion radical and on DPPH radical. Chem. Pharm. Bull., 37: 2016-2021.
  • Heilerová L, Bućkova M, Tarapćik P, Silhár S, Labuda J. 2003. Comparison of antioxydative activity data for aqueous extracts of Lemon balm (Melissa officinalis L.), Oregano (Origanum vulgare L.), Thyme (Thymus vulgaris L.), and Agrimony (Agrimonia eupatoria L.) obtained by conventional methods and the DNA-based biosensor. Czech Journal Food Science, 21(2): 78-84.
  • Iddhuraju P, Becker K. 2007. The antioxidant and free radical scavenging activities of processed cowpea (Vigna unguiculata (L.) Walp.) seed extracts. Food Chemistry, 101(1): 10-19.
  • Jeong SM, Kim SY, Kim DR, Jo SC, Nam KC, Ahn DU, Lee SC. 2004. Effects of heat treatment on the antioxidant activity of extracts from citrus peels. Journal of Agriculture and Food Chemistry, 52: 3389-3393.
  • Kafui K, Etonam TK, Oudjaniyobi S, Komlatsè T, Pakoupati B, Outéndé T, Nagba YG, Amegnona A, Messanvi G. 2018. A significant antihypertensive effect of Holarrhena floribunda supported by an exploratory phytochemical study. J. Herbmed Pharmacol, 7(3): 160-167.
  • Karagôzler A, Erdag CS, Çalmaz Emek Y. 2008. Antioxydant activity and proline content of leaf extracts from Dorystoechas hastate. Food Chemistry, 111(2) : 400-407.
  • Koechlin-RC. 2006. Oxygène, stress oxydant et supplémentations antioxydantes ou un aspect différent de la nutrition dans les maladies respiratoires. Nutrition Clinique et Métabolisme, 20(4):165-77.
  • Koffi AG, Ahoua ARC, Ekou L, Ekou T, Koné MW. 2018. Activité antioxydante de quelques plantes utilisées dans la région de Tiassalé (Côte d’Ivoire) dans le maintien de la santé de la peau. European Scientific Journal, 14(30) : 338-352.
  • Konan K. 2010. Etude chimique et évaluation de l’activité antioxydante de quatre plantes médicinales de Côte d’Ivoire. Thèse unique de Doctorat. Université d’Abobo-Adjamé, Abidjan, Côte d’Ivoire.
  • Kumaran A, Karunakaran RJ. 2007. In vitro antioxidant activities of methanol extracts of five Phyllanthus species from India. Lebensmittel-Wissenschaft und Technologie, 40: 344-352.
  • Macheix JJ, Fleuriet A, Jay-Allemand C. 2005. Les composés phénoliques des végétaux. Un exemple de métabolites secondaires d’importance économiques. Lausanne, press polytechniques et universitaires romandes‚192p.
  • Molyneux P. 2004. The use of the stable free radical diphenylpicrylhydrazyl (DPPH) for estimating antioxidant activity. Songklanakarin J. Sci. Technol, 26(2): 211-219.
  • Mohammed FS, Akgul H, Sevindik M, Khaled BMT. 2018. Phenolic content and biological activities of Rhus coriaria var. zebaria. Fresenius Environmental Bulletin, 27(8): 5694- 5702.
  • Mohammed FS, Pehlivan M, Sevindik M. 2019. Antioxidant, antibacterial and antifungal activities of different extracts of Silybum marianum collected from Duhok (Iraq). International Journal of Secondary Metabolite, 6(4): 317-322.
  • Mohammed FS, Şabik AE, Sevindik E, Pehlivan M, Sevindik M. 2020. Determination of Antioxidant and Oxidant Potentials of Thymbra spicata Collected from Duhok-Iraq. Turkish Journal of Agriculture-Food Science and Technology, 8(5): 1171-1173.
  • Mohammed FS, Kına E, Sevindik M, Dogan M, Pehlivan M. 2021. Datura stramonium (Solanaceae): Antioxidant and Antimicrobial Potentials. Turkish Journal of Agriculture- Food Science and Technology, 9(4): 818-821.
  • N’guessan JD, Zirihi GN, Kra AKM, Kouakou K, Djaman AJ, Guede-Guina F. 2007. Free radical scavenging activity, flavonoid and phenolic contents of selected Ivoirian plants. IJONAS, 4: 425-429.
  • 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. Journal of agricultural and food chemistry, 49(10): 4619- 4626.
  • Pan Y, Wang K, Huang S, Wang H, Mu X, He C, Ji X, Zhang J, Huang F. 2008. Antioxydant activity of microwave –assisted extract of longan (dimocarpus longan lour.) peel. Food chemistry, 106: 1264- 1270.
  • Parejo I, Viladomat F, Bastida J, Rosas-Romero A, Flerlage N, Burillo J, Codina C. 2002. Comparison between the radical scavenging activity and antioxidant activity of six distilled and nondistilled Mediterranean herbs and aromatic plants. Journal of Agricultural and Food Chemistry, 50(23): 6882- 6890.
  • Pehlivan M, Mohammed FS, Sevindik M, Akgul H. 2018. Antioxidant and oxidant potential of Rosa canina. Eurasian Journal of Forest Science, 6(4): 22-25.
  • Popovici C, Saykova I, Tylkowski B. 2010. Evaluation de l’activité antioxydant des composés phénoliques par la réactivité avec le radical libre DPPH. Revue de génie industriel, 4: 131-887.
  • Pulido R, Bravo L, Saura-Calixto F. 2000. Antioxidant activity of dietary polyphenols as determined by a modified ferric reducing/antioxidant power assay. Journal of agricultural and food chemistry, 48(8): 3396-3402.
  • Sevindik M, Akgul H, Pehlivan M, Selamoglu Z. 2017. Determination of therapeutic potential of Mentha longifolia ssp. longifolia. Fresen Environ Bull, 26(7): 4757-4763.
  • Sevindik M. 2021. Phenolic content, Antioxidant and Antimicrobial potential of Melanoleuca melaleuca edible mushroom. Journal of Animal and Plant Sciences, 31(3): 824- 830.
  • Singleton L, Ortofer R, Lamuela-Raventos RM. 1999. Analysis of total phenols and other oxidation substrates and antioxidants by means of Folin-Ciocalteu reagent. Packer L (ed) Methods in enzymology Orlando Academic Press, 299: 152-178.
  • Syamsudin, Shirly K, Broto S. 2007. Screening of some extracts from Garcinia parvifolia Miq (Guttiferae) for antiplasmodial, antioxydant, cytotoxic and antibacterial activities. Asian J. Plant Sci, 6: 972-976.
  • Wong SP, Leong LP, William JH. 2006. Antioxidant activities of aqueous extracts of selected plants. Food Chemistry, 99(4): 775 -783.
  • Yildirim A, Mavi A, Kara AA. 2001. Determination of antioxidant and antimicrobial activities of Rumex crispus L. extracts. Journal Agricultural and Food Chemstry, 49: 4080- 4089.
  • Zhi PR, Liang LZ, Yi ML. 2008. Evaluation of the Antioxydant Activity of Syzygium cumini Leaves. Molecules, 13: 2545- 2556
Türk Tarım - Gıda Bilim ve Teknoloji dergisi-Cover
  • ISSN: 2148-127X
  • Yayın Aralığı: Aylık
  • Başlangıç: 2013
  • Yayıncı: Turkish Science and Technology Publishing (TURSTEP)
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