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Biochemical Characterization of Mango Kernel (Mangifera indica) Grown in Côte d’Ivoire and Formulation of Butter for Cosmetic Use

  • Kossonou Yao Kamelé
  • Adingra Kouassi Martial-Didier
  • Yao Akpolè Landry
  • Tano Kablan

Biotechnology Journal International, Page 33-44
DOI: 10.9734/bji/2022/v26i5660
Published: 3 December 2022

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Abstract


Aims: The peel and the kernel of mangoes of KENT and KEIT varieties, although presenting enormous nutritive and technological potentialities, are considered as waste and, as a result, rejected in nature causing environmental pollution. This study therefore set itself the general objective of contributing to the development of mango by-products (Mangifera indica) by incorporating them into formulations of products for cosmetic use.


Study Design: Almond butter was obtained from the fresh and dried almonds of two varieties of mangoes (KENT and KEIT).


Place and Duration of Study: Fruits of mango (KENT and KEIT) varieties at commercial maturity used in this study came from Banco fruit market (Abidjan, Côte d'Ivoire). The tests were carried out at the laboratory of food biochemistry of Nangui Abrogoua University, between May and July 2020.


Methodology: The mango kernels (Mangifera indica) were extracted and the biochemical characterization of both fresh kernels and almond powders was carried out on parameters such as lipids, ash, fibers, etc. Then, mango kernel powder of KENT with good potential was used for the formulation of butter. Following the control formulation, different formulations were made by reducing volume of extraction solvent (sunflower oil) and varying the amount of beeswax used at 10% and 35% of the mass of macerate used. Finally, physicochemical properties of butter were determined.


Results: The study showed that mango kernels produced in Côte d’Ivoire, specifically mango kernel powders, were rich in lipids (8-9%), proteins (2-7%), fiber (9-11%), carbohydrates (35-76%), ash (2.99-5.66%), vitamin C (35-104 mg/100g) and many other biomolecules, which made possible the production of butter. The physicochemical properties of butter gave results of acid numbers of 8.24 to 9.03 mg KOH/g oil and saponification of 189.45 to 212.09 mg KOH/g oil. These indices combined with pH (4.6 to 5.2), density (0.3 to 0.91) and color are indicators of the good quality of butter. Finally, the KE 1/3 formulation, with 35% beeswax added, gave the most satisfaction.


Conclusion: These physical and chemical properties obtained would suggest a finished product of quality and good conservation and good scent pleasant and would have various applications in the cosmetic field in particular in the nutrition of the skin and the hair.


Keywords:
  • Almond
  • indices
  • formulation
  • mango butter
  • cosmetic products
  • mango (Mangifera indica)
  • Full Article - PDF
  • Review History

How to Cite

Kamelé, K. Y., Martial-Didier, A. K., Landry, Y. A., & Kablan, T. (2022). Biochemical Characterization of Mango Kernel (Mangifera indica) Grown in Côte d’Ivoire and Formulation of Butter for Cosmetic Use. Biotechnology Journal International, 26(5), 33-44. https://doi.org/10.9734/bji/2022/v26i5660
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References

FAO/INFOODS. Bases de données sur la densité. 2012;1-21. Accessed 8 November 2022. Available :https://www.fao.org/3/ap815e/ap815e.pdf. French

Frehaut G. Etude de la composition biochimique de la mangue (Mangifera indica L. cv Early gold) en fonction de son stade de maturité. Mémoire d’ingénieur à L’Université de Technologie de Compiègne. 2001;1-65. French

FAO/WHO. Fruits et légumes pour la santé. Rapport de l’atelier conjoint FAO/OMS, 1er au 3 septembre 2004 Kobe (Japon). 2004;1-54.

Accessed 8 November 2022.

Available:https://www.fao.org/3/y5861f/y5861f.pdf. French

Leroy JF. Fruits tropicaux et subtropicaux d'importance secondaire. Journal d'Agriculture Traditionnelle et de Botanique Appliquée. 1944;171-220. French

CIRAD. Productions fruitières et horticoles des régions tropicales et méditerranéennes. Fruits. 1995;49(5-6): 433-503. French

Kouassi AO. Revue nationale pour l’identification des initiatives de valorisation non alimentaire de la mangue en Côte-d’Ivoire. Coleacp Paepard-01/BNA-12. 2012;12:1-43. French

Loeillet D. Spéciale mangue. Dossier du mois de Fruitrop, N° 44 Mars. 1998;1-20.

UN/CNUCED. Conference des Nations Unies sur le commerce et le developpement Mangue, INFOCOMM CNUCED, New York et Genève, Suisse. 2016;1-23. French

Banerjee J, Singh R, Vijayaraghavan R, Mac Farlane D, Patti AF, Arora A. A hydrocolloid based biorefinery approach to the valorisation of mango peel waste. Food Hydrocolloids. 2018;77:142-151.

FIRCA. Répertoire de technologies et de procédés de transformation de la mangue et l’ananas. 2010;58-61.

Accessed 6 October 2022.

Available https://www.doc-developpement-durable.org/. French

Kouadia AM-J, Abo K, Kouadio KT. Evolution des infections naturelles sur les mangues, les avocats et les bananes en Côte d’Ivoire et principaux champignons responsables. Journal of Applied Biosciences. 2019;134:13710–13721.

French

Torres-Leon C, Rojas R, Serna-Cock L, Belmares-Cerda R, Aguilar CN. Extraction of antioxidants from mango seed kernel: optimization assisted by microwave, Food and Bioproducts Processing. 2017;105: 188-196.

Bharti I, Singh S, Saxena DC. Influence of alkali treatment on physicochemical, pasting, morphological and structural properties of mango kernel starches derived from Indian cultivars. International Journal Biology Macromolecules. 2019; 125:203-212.

Mutua JK, Imathiu S & Owino W. Evaluation of the proximate composition, antioxidant potential, and antimicrobial activity of mango seed kernel extracts. Food Science & Nutritional. 2017;5(2):349-357.

Kittiphoom S. & Sutasinee S. Mango seed kernel oil and its physicochemical properties. International Food Research Journal. 2013;20:1145- 1149.

Solís-Fuentes JA and Durán-de-Bazúa MDC. Mango (Mangifera indica L.) seed and its fats. In Preedy VR, Watson RR, Patel VB, Editors. Nuts & Seeds in Health and Disease Prevention (1st ed.). 2011; 741-748.

AOAC. Official Methods 942.15, 17th ed. Acidity (titratable) of fruit product read with AOAC Official Preparation of Test Sample. 2000;1-149.

FAO. Carbohydrates in human nutrition. Report of a joint FAO/WHO expert consultation. FAO Food and Nutrition Rome; 1998.

Pongracz G, Weiser H, Matzinger D. Tocopherols- Antioxydant. Fat Science Technology. 1971;97:90-104.

Magdić D, Lukinac J, Jokić S, Čačić-Kenjerić F, Bilić M, Velić D. Impact analysis of different chemical pre-treatments on colour of apple discs during drying process. Croatian Journal of Food Science and Technology. 2009;1(1): 31-35.

Dadzie BK & Orchard JE. Evaluation post-récolte des hybrides de bananiers et bananiers plantain : critères et méthodes. Guides techniques INIBAP2. IPGRI / INIBAP / CTA (Rome, Montpellier & Wageningen). 1997;1-63. French

UICPA (Union Internationale de Chimie Pure et Appliquée). Méthodes d’analyse des matières grasses. 6ème édition Paris (France). 1979;1-190. French

Afane ZE, Lando G, Essam LBB, Ossima GA & Atchou G. Les vapeurs d’huile de palme bouillante, un acide broncho-irritant. Médicine Afrique Noire. 1997;44(11):604-607. French

AFNOR. Recueil des normes françaises : corps gras, graines oléagineuses et produits dérivés (3 éd.). AFNOR: Paris. 1984;1-459. French

Brou MR, Faulet BA, Gbocho M, Koné FM & Kouamé P. Assessment of physicochemical and functional properties from heart of oil palm tree (Elaesis guineensis jacq.) consumed in Côte-d’Ivoire. International Journal of Current Research. 2018;6:934-946.

Elegbede JA, Achoba II & Richard H. Nutrient composition of mango (Mangnifera indica) seed kernel from Nigeria, Journal Food Biochemistry. 1995; 19(5):391-398.

Bony E. Composition chimique et propriétés anti-inflammatoires de l'huile de pulpe d'awara (Astrocaryum vulgare M.). Thèse de Doctorat à l’Université de Montpellier 2 en Nutrition Santé. 2010;1-236. French

Amegovu AK, Ogwok P, Ochola S, Yiga P, Musalima JH, Mutenyo E. Formulation of sorghum-peanut bleng using linear programming for treatment of moderate acute malnutrition in Uganda. Journal of Food Chemistry and Nutrition. 2013; 1(2):67-77.

Villeneuve L. Influence nutritionnelle de la vitamine A et de la nature des lipides sur la morphogenèse de la larve de bar (Dicentrarchus labrax): implication de la voie des rétinoïdes. Thèse de Doctorat à l’Universté de Rennes 1 en Biologie. 2005;1-266. French

Muchiri DR, Mahungu SM, Gituanja SN. Studies on Mango (Mangifera indica L.) Kernel fat of some kenyan varieties in Meru. Journal of American Oil Chemists’s Society. 2012;89(9):1567-1575.

Dias MFRG. Hair cosmetic : an overview. International Journal of Trichology. 2015;7:5-16.

Nolan K, Marmur E. Moisturizers: reality and the skin benefits. Dermatologic Therapy. 2012;25:229–233.

Christine L. Peau sensible, irritation cutanée et allergie. DESS en Cosmétologie, Université du Québec à Chicoutimi. 2016;1-30. French

Zoro AF, Zoué LT, Adom NJ, Niamké SL. Effect of sun drying on nutritive and antioxidant properties of leafy vegetables consumed in western Côte d’Ivoire. African Journal of Science and Research. 2015;4:24-31.

Omotubga SK, Kehinde AS, Olayinka OO. Proximate evaluation of nutritional value of mango (Mangifera indica). International Journal of Chemical Environmental Research. 2012;2:244-245.

Ojha P, Raut S, Subedi U, Upadhaya N. Study of nutritional, phytochemicals and functional properties of mango kernel powder. Journal of Food Science Technology Nepal. 2019;11:32–38.

Delille M. Compléments alimentaires en dermo-cosmetologie. Thèse en pharmacie, Université de Grenoble Alpes. 2017;1-218. French

Tounkara LS, Sow MS, Beye C, Ly AF, Sambe M, Ndiaye Y et al. Fortification des farines tropicales par l’introduction de protéines végétales et de champignons comestibles. Agronomie Africaine. 2017;29(2):37-45. French

Yong-Lim K. Vitamin C and functional iron deficiency anemia in hemodialysis. Kidney Research and Clinical Practice. 2012; 31(1):1–3.

Muhammad II. Effect of processing parameters on the drying of papaya fruit tea. Thesis Bioprocess Engineering, Universiti Teknologi Malaysia. 2005;1-101.

Nzeza KN. Dermatologie et cosmétologie masculines: conseils en officine et analyse d’enquêtes. Thèse en pharmacie à l’Université de Poitiers (France). 2021;1-155. French

Sánchez-Muniz FJ. Dietary fibre and cardiovascular health. Nutrición Hospitalaria. 2012;27(1):31-45.

Codex Alimentarius. Norme régionale pour le beurre de karité non raffiné CXS 325R-2017. 2020;1-5.

Accessed 8 November 2022.

Available https://www.fao.org/fao. French

Megnanou R-M, Diopoh KJ. Caractérisation sensorielle, physico-chimique et microbiologique du beurre de karité, Vitellaria paradoxa des marchés de Côte d’Ivoire. Agronomie Africaine. 2008; 20(2):221–231.

Ekpa O, Ekpe U. The effects of coconut oil concentration and air exposure to the total acidity of palm oil. Global Journal of Pure and Applied Sciences. 1995;11:51-58.

Nzikou JM, Kimbonguila A, Matos L, Loumouamou B, Pambou-Tobi NPG, Ndangui CB et al. Extraction and characteristics of seed kernel oil from mango (Mangifera indica). Research Journal of Environmental and Earth Sciences. 2010;2(1):31-35.

Womeni HM, Ndjouenkeu R, Kapseu C, Parmentier M & Fanni J. Application du procédé séchage-friture aux amandes de karité : influence sur les indices chimiques de qualité et les propriétés de fusion du beurre. Oilseeds & Fats Crops and Lipids. 2006;13(4):297-302.

Morin O, Pagès-Xatart-Parès X. Vegetable oils & fats: functional resources and nutritional interest. Oilseeds & Fats Crops and Lipids. 2012;19(2):63- 75.

Essien NM, Ofem OE, Bassey SC. Comparative physical characterization, physicochemical and fatty acid composition of some edible vegetable oils. Journal of Advances in Biology and Biotechonology. 2014;1:30-39.

Kumar PKP, Krishna AGG. Physicochemical characteristics of commercial coconut oils produced in India. Grasas Aceites. 2015;66(1): e062.

DOI:10.3989/gya.0228141
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