Evaluation of Proximate, Mineral and Phytochemical Compositions of Carapa procera (Family Meliaceae)

Authors

  • Mombouli Jean Bienvenu Department of Agronomy, National Institute of Agronomy and Forestry, Marien Ngouabi University, P.O. Box 69, Brazzaville, Congo, Republic of Congo
  • Andzouana Marcel Department of Chemistry, Faculty of Sciences and Technics, Marien Ngouabi University, P.O. Box 69, Brazzaville, Congo, Republic of Congo
  • Attibayeba Department of Biology, Faculty of Sciences and Technics, Marien Ngouabi University, P.O. Box 69, Brazzaville, Congo, Republic of Congo

DOI:

https://doi.org/10.3923/pjn.2014.359.365

Keywords:

Analysis, carapa procera, mineral, phytochemical, proximate

Abstract

This study was conducted to evaluate the medicinal value of C. procera seeds. The seeds of C. procera were collected from the Tsampoko village, district of Gamboma, in northern area of Congo on 14th March 2013. Nuts were dried in an oven at 70°C for 24 h and milled into powder. The powder was used for proximate, mineral and phytochemical analysis. The proximate analysis of the seed revealed high moisture (47.92%), fat (23.14%), carbohydrate (17.13%) and energy value (1285.60 Kg/100 g) while the crude protein (8.13%) and the ash (3.68%) were found to be low. The mineral analysis showed that Phosphorus (15.72%) was the most abundant element, followed by iron (2.82%) and potassium (1.23%). Calcium and magnesium were found in low concentrations (0.22 and 0.23%, respectively) while sodium and manganese were detected in trace quantities (0.01-0.02%). The phytochemical screening of crude solvent extracts revealed the presence in methanol of alkaloids, flavonoids, glycosides, saponins, steroids, tannins, triterpenoids, anthocyanins and phenols. In carbon tetrachloride steroids and tannins were not detected. Anthraquinones were absent in all the screened extracts of both solvents. Quantitative analysis of the seeds showed high alkaloid, flavonoid and phenolic concentrations (5.67±0.18, 5.98±1.38 and 7.46±0.15%, respectively) while saponins and anthocyanins were detected in low quantities (0.92±0.10 and 2.01±0.12%).

References

Adinortey, M.B., J.K. Sarfo, E.T. Quayson, A. Weremfo, C.A. Adinortey, W. Ekloh and J. Ocran, 2012. Phytochemical screening, proximate and mineral composition of Launaea taraxacifolia leaves. Res. J. Med. Plant, 6: 171-179.

Aguzue, O.C., F.T. Akanji, M.A. Tafida, M.J. Kamal and S.H. Abdulahi, 2012. Comparative chemical constituents of some desert fruits in Northern Nigeria. Arch. Applied Sci. Res., 4: 1061-1064.

Akca, Y., M. Sutyemezt, M. Ozgen, M. Tuzenziz and D. Mendil, 2005. Determination of chemical properties of walnut (Juglans regia L.) cultivars grown in Turkey. Asian J. Chem., 17: 548-552.

Akinyeye, R.O., A. Oluwadunsi and A. Omoyeni, 2010. Proximate, mineral, anti-nutrients, phyto-chemical screening and amino acid compositions ofthe leaves of Pterocarpus mildbraedi harms. Electron. J. Environ. Agric. Food Chem., 94: 1322-1333.

Al-Bayati, F.A. and K.D. Sulaiman, 2008. In vitro antimicrobial activity of Salvadora persica L. extracts against some isolated oral pathogens in Iraq. Turk. J. Biol., 32: 57-62.

Ambrozin, A.R., A.C. Leite, F.C. Bueno, P.C. Vieira and J.B. Fernandes et al., 2006. Limonoids from andiroba oil and Cedrela fissilis and their insecticidal activity. J. Brazilian Chem. Soc., 17: 542-547.

Alli Smith, Y.R., 2009. Determination of the chemical composition of Senna-siamea (cassia leaves). Pak. J. Nutr., 8: 119-121.

Andzouana, M. and J.B. Mombouli, 2012. Proximate, mineral and phytochemical analysis of the leaves of H. myriantha and Urera trinervis. Pak. J. Biol. Sci., 15: 536-541.

Andzouana, M. and J.B. Mombouli, 2012. Assessment of the chemical and phytochemical constituents of the leaves of a wild vegetable-Ochthocharis dicellandroides (Gilg). Pak. J. Nutr., 11: 94-99.

Asante, F.A., 1993. The chemistry of three indigenous seeds and their extraction, nutritional and industrial potentials of their oils. M.Phil Thesis, Department of Biochemistry, KNUST, Kumasi.

AOAC, 1990. Official Methods of Analysis. 15th Edn., Association of Official Analytical Chemists, Washington, DC., USA., pp: 200-210.

Appiah, F., I. Oduro, W.O. Ellis, 2011. Proximate and mineral composition of Artocarpus altilis pulp flour as affected by fermentation. Pak. J. Nutr., 10: 653-657.

Ayeni, K.E. and S.A.Yahaya, 2010. Phytochemical screening of three medicinal plants neem leaf (Azadirachta indica), hibiscus leaf (Hibiscus rosasinensis) and spear grass leaf (Imperata cylindrical). Cont. J. Pharm. Sci., 4: 47-50.

Aye, P.A., 2012. Effect of processing on the nutritive characteristics, anti-nutritional factors and functional properties of Cnidoscolus aconitifolius leaves (Lyana ipaja). Am. J. Food Nutr., 2: 89-95.

Balogun, I.O. and O.P. Olatidoye, 2012. Chemical composition and nutritional evaluation of velvet bean seeds (Mucuna utilis) for domestic consumption and industrial utilization in Nigeria. Pak. J. Nutr., 11: 116-122.

Basile, A., L. Ferrara, M.D. Pezzo, G. Mele, S. Sorbo, P. Bassi and D. Montesano, 2005. Antibacterial and antioxidant activities of ethanol extract from Paullinia cupana Mart. J. Ethnopharmacol., 102: 32-36.

Bohm, B.A. and M.R. Koupai-Abyazani, 1994. Flavonoids and condensed tannins from leaves of Hawaiian Vaccinium reticulatum and V. calycinum (Ericaceae). Pac. Sci., 48: 458-463.

Brody, T., 1994. Nutritional Biochemistry. Academic Press, San Diego, CA., ISBN: 9780121342517, Pages: 658.

Burkill, H.M., 1985. The Useful Plants of West Tropical Africa. 2nd Edn., Royal Botanic Gardens, Kew, London, ISBN: 9780947643560, Pages: 648.

Cohen-Boulakia, F., P.E. Valensi, H. Boulahdour, R. Lestrade, J.F. Dufour-Lamartinie, C. Hort-Legrand and A. Behar, 2000. In vivo sequential study of skeletal muscle capillary permeability in diabetic rats: Effect of anthocyanosides. Metabolism, 49: 880-885.

Dewole, E.A., D.F.A. Dewumi, J.Y.T. Alabi and A. Adegoke, 2013. Proximate and phytochemical of Cola nitida and Cola acuminata. Pak. J. Biol. Sci., 1616: 1593-1596.

Edeoga, H.O. and D.O. Eriata, 2001. Alkaloid, tannin and saponin contents of some Nigerian medicinal plants. J. Med. Aromat. Plant Sci., 23: 344-349.

Egharevba, H.O. and O.F. Kunle, 2010. Preliminary phytochemical and proximate analysis of the leaves of Piliostigma thonningii (Schumach.) Milne-Redhead. Ethnobot. Leafl., 14: 570-577.

Egwim, E.C., R.C. Elem and R.U. Egwuche, 2011. Proximate composition, phytochemical screening and antioxidant activity of ten selected wild edible Nigerian mushrooms. Ann. Rev. Ecol., 1: 89-94.

Ekpo, I.A., R.B. Agbor, A.N. Osuagwu, B.E. Ekanem, E.C. Okpako and I.S. Urua, 2012. Phytochemical and comparative studies of the stem bark and root of Xylopia aethiopica (Dunal.) A. Rich. World J. Biol. Res., 5: 41-44.

Emebu, P.K. and J.U. Anyika, 2011. Proximate and mineral composition of kale (Brassica oleracea) grown in Delta State, Nigeria. Pak. J. Nutr., 10: 190-194.

Enechi, O.C. and I. Odonwodo, 2003. An assessment of the phytochemical and nutrient composition of the pulverized root of Cissus quadrangularis. Bio-Research, 1: 63-68.

Fasuyi, A.O., 2006. Nutritional potentials of some tropical vegetable leaf meals: Chemical characterization and functional properties. Afr. J. Biotechnol., 5: 49-53.

Ferraris, F.K., R. Rodrigues, V.P. da Silva, R. Figueiredo, C. Penido and M.D.G.M. Henriques, 2011. Modulation of T lymphocyte and eosinophil functions in vitro by natural tetranortriterpenoids isolated from Carapa guianensis Aublet. Int. Immunopharmacol., 11: 1-11.

Fleury, M., 2008. [Forest products and medicinal plants in French Guyana]. Biofutur, 290: 37-39, (In French).

Harborne, J.B., 1973. Phytochemical Methods: A Guide to Modern Techniques of Plant Analysis. Chapman & Hall, London, United Kingdom, ISBN: 9780412105401, Pages: 278.

Harborne, J.B., 1994. Phytochemical Methods: A Guide to Modern Techniques of Plant Analysis. 2nd Edn., Chapman and Hall, London, UK., Pages: 425.

Harborne, J.B., 1998. Phytochemical Methods: A Guide to Modern Techniques of Plant Analysis. 3rd Edn., Springer Science & Business Media, Berlin, Heidelberg, Germany, ISBN-13: 9780412572708, Pages: 302.

Iheanacho, K.M.E. and A.C. Udebuani, 2009. Nutritional composition of some leafy vegetables consumed in Imo State, Nigeria. J. Appl. Sci. Environ. Manage., 13: 35-38.

Ilelaboye, N.O.A. and O.O. Pikuda, 2009. Determination of minerals and anti-nutritional factors of some lesser-known crop seeds. Pak. J. Nutr., 8: 1652-1656.

Iniaghe, O.M., S.O. Malomo and J.O. Adebayo, 2009. Proximate composition and phytochemical constituents of leaves of some Acalypha species. Pak. J. Nutr., 8: 256-258.

Hussain, I., Riaz Ullah, Rooh Ullah, M. Khurram and Naseem Ullah et al., 2011. Phytochemical analysis of selected medicinal plants. Afr. J. Biotechnol., 10: 7487-7492.

Kathirvel, P., 2012. A study on the proximate and mineral composition of Crotalaria semperflorens vent. Int. J. Applied Biol. Pharmaceut. Technol., 3: 64-66.

Karade, S.R., M.R. Deshmukh, S.M. Shah and N.R. Deshpande, 2004. Mineral elements of seeds, aerial parts of plants and aerial parts of plants and kernel in Sterculia guttata (Kokrus). Asian J. Chem., 16: 1475-1478.

Kilgour, O.F.G., 1987. Mastering Nutrition. Macmillan Education Ltd., London, Pages: 321.

Kokate, C.K., 2001. Pharmacognosy. 16th Edn., Nirali Prakashan, Mumbai, India.

Krishnaiah, D., T. Devi, A. Bono and R. Sarbatly, 2009. Studies on phytochemical constituents of six Malaysian medicinal plants. J. Med. Plants Res., 3: 67-72.

Lavedrinea, F., A. Ravela, A. Villet, V. Ducros and J. Alary, 2000. Mineral composition of two walnut cultivars originating in France and California. Food Chem., 68: 347-351.

Luft, F.C., 1990. Sodium, Chloride and Potassium. In: Present Knowledge in Nutrition, Brown, M.L. (Ed.). 6th Edn., Chapter 26, International Life Sciences Institute, Washington, DC., USA., pp: 233-240.

Martin-Prevel, P., J. Gagnard and P. Gautier, 1984. [The Plant Analysis in the Power Control of Temperate and Tropical Plants]. Technique et Documentation, Paris, Pages: 832, (In French).

Mayer, M.L. and L. Vyklicky, 1989. The action of zinc on synaptic transmission and neuronal excitability in cultures of mouse hippocampus. J. Physiol., 415: 351-365.

Minzangi, K., A.N. Kaaya, F. Kansiime, J.R.S. Tabuti and B. Samvura, 2011. Oil content and physicochemical characteristics of some wild oilseed plants from Kivu region Eastern Democratic Republic of Congo. Afr. J. Biotechnol., 10: 189-195.

Obadoni, B.O. and P.O. Ochuko, 2002. Phytochemical studies and comparative efficacy of the crude extracts of some haemostatic plants in Edo and Delta States of Nigeria. Global J. Pure Appl. Sci., 8: 203-208.

Olaleye, M.T., 2007. Cytotoxicity and antibacterial activity of methanolic extract of Hibiscus sabdariffa. J. Med. Plant Res., 1: 9-13.

Onyeka, E.U. and I.O. Nwambekwe, 2007. Phytochemical profile of some green leafy vegetables in South East, Nigeria. Niger. Food J., 25: 67-76.

Sampaio, P.D.T.B., 1993. Andiroba. In: Selected Species and Strategies to Enhance Income Generation from Amazonian Forests, Clay, J.W. and C.R. Clement (Eds.). Food and Agriculture Organization of the United Nations, Rome, Italy.

Sathya, V., R. Bharathidasan, S.T. Selvi, N.S. Rebeccal, R. Ilakkiya and M. Prabakaran, 2013. Quantitative, qualitative phytochemical analysis and in vitro antibacterial activity of Bauhinia tomentosa L. J. Nat. Prod. Plant Resour., 3: 31-36.

SCSG, 2007. Calcium to phosphorus ratios in food. GliderVet No. 60, SunCoast Sugar Gliders, Viva La Glider. http://www.sugar-gliders.com/glidervet-60.htm

Siddhuraju, P., K. Becker and H.P.S. Makkar, 2002. Chemical composition, protein fractionation, essential amino acid potential and antimetabolic constituents of an unconventional legume, Gila bean (Entada phaseoloides Merrill) seed kernel. J. Sci. Food Agric., 82: 192-202.

Sofowora, A., 1993. Medicinal Plants and Traditional Medicine in Africa. 2nd Edn., Spectrum Books, Ibadan, Nigeria, ISBN-13: 9789782462190, Pages: 289.

Stauth, D., 2007. Studies force new view on biology of flavonoids. Oregon State University, USA.

Suda, I., T. Oki, M. Masuda, M. Kobayashi, Y. Nishiba and S. Furuta, 2003. Physiological functionality of purple-fleshed sweet potatoes containing anthocyanins and their utilization in foods. Jap. Agric. Res. Q., 37: 167-173.

Shah, S.M.M., F.A. Khan, S.M.H. Shah, K.A. Chishti, S.M.S.S. Pirzada, M.A. Khan and A. Farid, 2011. Evaluation of phytochemicals and antimicrobial activity of white and blue capitulum and whole plant of Silybum marianum. World Applied Sci. J., 12: 1139-1144.

Emmanuel, T.V., J.T. Njoka, L.W. Catherine and H.V.M. Lyaruu, 2011. Nutritive and anti-nutritive qualities of mostly preferred edible woody plants in selected drylands of Iringa district, Tanzania. Pak. J. Nutr., 10: 786-791.

Trease, G.E. and W.C. Evans, 1989. A Textbook of Pharmacognosy. 12th Edn., Bailliere Tindall, London, UK., pp: 388, 480, 502, 535, 546.

Truong, V.D., N. Deighton, R.T. Thompson, R.F. McFeeters, L.O. Dean, K.V. Pecota and G.C. Yencho, 2009. Characterization of anthocyanins and anthocyanidins in purple-fleshed sweetpotatoes by HPLC-DAD/ESI-MS/MS. J. Agric. Food Chem., 58: 404-410.

Ujowundu, C.O., O.E. Okafor, N.C. Agha, L.A. Nwaogu, K.O. Igwe and C.U. Igwe, 2010. Phytochemical and chemical composition of Combretum zenkeri leaves. J. Med. Plants Res., 40: 965-968.

Vaughan, J.G. and P.A. Judd, 2003. The Oxford Book of Health Foods: A Comprehensive Guide to Natural Remedies. 1st Edn., Oxford University Press, New York, USA., pp: 17.

Wardlaw, G.M., 1999. Perspective in Nutrition. 4th Edn., Mcgraw-Hill, New York, USA., pp: 527-529.

Wu, D.M., J. Lu, Y.L. Zheng, Z. Zhou, Q. Shan and D.F. Ma, 2008. Purple sweet potato color repairs d-galactose-induced spatial learning and memory impairment by regulating the expression of synaptic proteins. Neurobiol. Learn. Mem., 90: 19-27.

Yameogo, C.W., M.D. Bengaly, A. Savadogo, P.A. Nikiema and S.A. Traore, 2011. Determination of chemical composition and nutritional values of Moringa oleifera leaves. Pak. J. Nutr., 10: 264-268.

Yisa, J., J.N. Egila and A.O. Darlinton, 2010. Chemical composition of Annona senegalensis from Nupe land, Nigeria. Afr. J. Biotechnol., 9: 4106-4109.

Ullah, Z., M.K. Baloch, J.A. Khader, I.B. Baloch, R. Ullah, N.M. AbdEIslam and S. Noor, 2013. Proximate and nutrient analysis of selected medicinal plants of Tank and South Waziristan area of Pakistan. Afr. J. Pharm. Pharmacol., 7: 179-184.

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Published

15.05.2014

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Research Article

How to Cite

Bienvenu, M. J., Marcel, A., & Attibayeba. (2014). Evaluation of Proximate, Mineral and Phytochemical Compositions of Carapa procera (Family Meliaceae). Pakistan Journal of Nutrition, 13(6), 359–365. https://doi.org/10.3923/pjn.2014.359.365

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