全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...

Quantification of Total Phenols, Total Flavonoids, Total Anthocyanins and Evaluation of Antioxidant and Antiradical Activities of Detarium Senegalense Extracts from Chad

DOI: 10.4236/abc.2024.141001, PP. 1-15

Keywords: Total Phenols, Total Flavonoids, Total Anthocyanins, Antioxidant and Anti-Radical Activities, Detarium Senegalense, Chad

Full-Text   Cite this paper   Add to My Lib

Abstract:

The aim of the present work is to assess the value of Detarium Senegalense by determining the content of total phenols, total flavonoids and total anthocyanins, and by evaluating the free radical scavenging activity of Detarium Senegalense extracts. For this purpose, sequential extraction using solvents of increasing polarity was essential. The various extracts obtained underwent phytochemical and biochemical analyses. Phytochemical screening revealed the presence of flavonoids, alkaloids, tannins, polyphenols, anthocyanins and steroids/terpenes. Quantitative analysis of total polyphenols, total flavonoids and total anthocyanins yielded the following results: total flavonoids (0.803 ± 0029 mg EQ/100g P for acetone extract of roots and 0.871 ± 0.401 mg EQ/100g P for methanol extract of leaves); total polyphenols (23.298 ± 12.68 mg EAG/100g P for acetone extract of roots and 24.69 ± 0.49 401 mg EAG/100g P for methanol extract of leaves); total monomeric anthocyanins (44.697 ± 0.939 mg EC3G/100g P and 16.699 ± 0.193 mg EC3G/100g P respectively for acetone and methanol extracts of stem bark). DPPH free radical scavenging activity was 1.674 ± 0.023 mg/mL for the acetone extract and 0.934 ± 0.24 mg/mL for the methanol extract of roots.

References

[1]  De Jussieu, A.L. (1789) Gênera Plantarum-Secundum Ordines Naturales Disposita. Hérissant & Barrois, Paris, 365 p.
[2]  Gueye, F. (2019) Médecine traditionnelle du Sénégal: exemples de quelques plantes médicinales de la pharmacopée sénégalaise traditionnelle. Sciences pharmaceutiques, 176.
https://dumas.ccsd.cnrs.fr/dumas-02351024/document .
[3]  Adamu, G., Ndagara, A.S., Mamuda, M. and Omatola, I.U. (2019) Modelling for the Reduction and Spread Transmission of the Dynamics and Control of Zika virus Disease: Using Ordinary Differential Equations. Journal of Applied Sciences and Environmental Management, 23, 2091-2099.
https://doi.org/10.4314/jasem.v23i12.3
[4]  Agbo, I.R., Missihoun, A.A., Vihotogbe, R., Assogbadjo, E.A. Ahanhanzo, C. and Agbangla, C. (2017) Impacts des usages traditionnels sur la vulnérabilité de Detarium microcarpum Guill. & Perr. (Caesalpiniaceae) dans le district phytogéographique Zou au Bénin (en Afrique de l’Ouest). International Journal of Biological and Chemical Sciences, 11, 730-742.
https://doi.org/10.4314/ijbcs.v11i2.16
[5]  Faye, E.O., Gueye, R., et al. (2022) Caractérisation phytochimique et étude de l’activité antimicrobienne d’extraits de feuilles de trois plantes de la flore sénégalaise: Detarium senegalense, Detarium microcarpum et Piliostigma reticulatum. International Journal of Biological and Chemical Sciences, 16, 286-299.
https://doi.org/10.4314/ijbcs.v16i1.24
[6]  Onyechi, U.A., NkirukaIbeanu, V. and Ugwumba, N.G. (2015) Blood Glucose Response of Normoglycemic Adults Fed Breakfast Porridges Made from Zea Mays Supplemented with Afzelia Africana, Detarium microcarpum or Sphenostylis Stenocarpa. African Journal of Biotechnology, 14, 3295-3302.
https://doi.org/10.5897/AJB2015.14638
[7]  Sanni, F.S., Onyeyili, P.A., Hamza, H.G., Sanni, S. and Enefe, N.G. (2018) Effects of Detarium senegalense JF Gmelin Aqueous Stem Bark Extract on Castor Oil Induced Diarrhoea in Albino Rats. Sokoto Journal of Veterinary Sciences, 16, 41-48.
http://dx.doi.org/10.4314/sokjvs.v16i3.6
[8]  Igu, N.I. (2017) Species Diversity and Structure of an Intact Freshwater Swamp Forest in the Niger Delta. Open Journal of Forestry, 7, 242-254.
https://doi.org/10.4236/ojf.2017.72015
[9]  Akabassi, B.S., Djossou, J.A., et al. (2021) Criblage phytochimique et évaluation des activités antiradicalaire et antimicrobienne des organes du Detarium microcarpum Guill. & Perr de la zone soudanienne du Benin. Journal de la Société Ouest-Africaine de Chimie, 50, 68-75.
[10]  Dia, M.K. (2018) Sreening phytochimique et activité antioxidante de l’extrait hydro-éthanolique des feuilles de Detarium senegalense J.F. Gmel. Thèse de Doctorat, Université Cheick Anta Diop de Dakar, Sénégal, 106 p.
[11]  Uchegbu, R.I. and Okwu, D.E. (2012) An Evaluation of the Phytochemical and Nutrient Composition of the Seeds and Stem Bark of Detarium senegalense Gmelin. Journal of Natural Sciences Research, 2, 652-662.
[12]  N’Guessan, K., Kadja, B., Zirihi, G.N., Traoré, D. and Aké-Assi, L. (2009) Screening phytochimique de quelques plantes médicinales ivoiriennes utilisées en pays Krobou (Agboville, Côte-d’Ivoire). Sciences & Nature, 6, 1-15.
https://doi.org/10.4314/scinat.v6i1.48575
[13]  Madjitoloum Betoloum, S., et al. (2018) Optimization of Microwave-Assisted Extraction of Total Phenol Content and Total Flavonoids Content from Anacardium occidental L. (Anacardeaceae) Using Response Surface Methodology. International Journal of Biochemistry and Biotechnology, 7, 800-809.
[14]  Mbaiogaou, A., Madjitoloum Betoloum, S., et al. (2022) Determination of Phenolic Compound Contents in Fruits of Momordica charantia L. (Cucurbitaceae) from Chad. International Journal of Biological and Chemical Sciences, 16, 1475-1483.
https://doi.org/10.4314/ijbcs.v16i4.10
[15]  Sellappan, S. and Akoh, C.C. (2002) Flavonoids and Antioxi Dant Capacity of Georgia Grown Vidalia Onions. Journal of Agricultural and Food Chemistry, 50, 5338-5342.
https://doi.org/10.1021/jf020333a
[16]  Maria, A.-S., Bourdier, L., Duclos, J., Ringuenet, D. and Berthoz, S. (2016) Psychometric Properties of the French Version of a Scale Measuring Perceived Emotional Intelligence: The Trait Meta-Mood Scale (TMMS). The Canadian Journal of Psychiatry/La Revue Canadienne de Psychiatrie, 61, 1-11.
https://doi.org/10.1177/0706743716639936
[17]  Gulc, I., Huyut, Z., Elmastas, M. and Aboul-Enein, H.Y. (2010) Radical Scavenging and Antioxidant Activity of Tannic Acid. Arabian Journal of Chemistry, 3, 43-53.
https://doi.org/10.1016/j.arabjc.2009.12.008
[18]  Zhao, C.-N., Tang, G.-Y., et al. (2019) Phenolic Profiles and Antioxidant Activities of 30 Tea Infusions from Green, Black, Oolong, White, Yellow and Dark Teas. Antioxidants (Basel), 8, 215.
https://doi.org/10.3390/antiox8070215
[19]  Blanche Etoundi, O.C., Valère Kayo, T.C., Judith Mbang, M.A., Rosalie Ngono, N.A. (2019) Antiradical Activity and Ferric Reducing Antioxidant Power of Pleurotus pulmonarius, Pleurotus floridanus and Pleurotus sajor-caju Formulations Extracts in Vitro. Food and Nutrition Sciences, 10, 1202-1211.
https://doi.org/10.4236/fns.2019.1010087
[20]  Bakchiche, B. Habati, M., Benmebarek, A. and Gherib, A. (2017) Total Phenolic, Flavonoid Contents and Antioxidant Activities of Honey and Propolis Collected from the Region of Laghouat (South of Algeria). World News of Natural Sciences, 11, 91-97.
https://doi.org/10.23880/IPCM-16000110
[21]  Hougard, J.M., et al. (2003) Comparative Performances, under Laboratory Conditions, of Seven Pyrethroidinsecticides Used for Impregnation of Mosquito Nets. Bulletin ofthe World Health Organization, 81, 324-333.
[22]  Sulaiman, S.F., Md Yusoff, N.A., Edeon, I.M., Seom, E.M., Sajak, A.A.B., Supriatno, and Ooi K.L. (2011) Correlation between of Total Phenalic and Mineral Contents with Antioxidant Activity of Eight Malaysian Bananas (musa SP.). Journal of Food Composition and Analysis, 24, 1-70.
https://doi.org/10.1016/j.jfca.2010.04.005

Full-Text

comments powered by Disqus

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133

WeChat 1538708413