Bioavailability of Beta Carotene in Traditional Fermented, Roasted Granules,<i> Gari</i> from Bio-Fortified Cassava Roots
- 1 Department of Nutrition and Dietetics, Federal University of Agriculture, Abeokuta, Nigeria.
- 2 Department of Nutrition and Dietetics, Federal University of Agriculture, Abeokuta, Nigeria.
- 3 Department of Nutrition and Dietetics, Federal University of Agriculture, Abeokuta, Nigeria.
Abstract
Vitamin A Deficiency (VAD) is a major public health issue and of global concern, as it affects millions of preschool children and pregnant women worldwide. Bio-fortification has emerged as a technology with potential to sustainably alleviate VAD especially in the sub-Saharan Africa, using staples like cassava. This work studied bioavailability of beta carotene (BC) in two processed gari samples from bio-fortified cassava varieties: 01/1412 and 01/1371, using 40 weanling albino rats, grouped into four, acclimatized for 1 week and fed experimentally for 4 weeks. Plasma beta carotene (PBC) was determined with HPLC while bioavailable BC calculated using conventional linear dose response plot. The mean rat weight gain was 5.3 g with significant difference (p< 0.001) among them while mean PBC was 60.5 and 61.2 μg/dL for 01/1412 and 01/1371 respectively. From this study, a large variation of PBC among animals was found with a weak linear relationship between feed and PBC, showing that BC bioavailability is not limited to intake. The BC bioavailability of the samples was between 11% and 18% with sample from variety 01/1371 recording higher percentage (18%). Gari from bio-fortified cassava roots processed traditionally, had appreciable bioavailable BC, which can contribute to the fight against VAD and improve nutritional status in developing countries although the magnitude of the problem requires a combination of strategies, of which bio-fortification is just one. However, further work is necessary on public awareness and adoption of the product.
- World Health Organization, “Quantifying Selected Major Risks to Health,” The World Health Report 2002: Reducing Risks, Promoting Healthy Life, Geneva, 2002, pp. 47-97.
- K. P. West, “Extent of Vitamin A Deficiency among Preschool Children and Women of Reproductive Age,” Journal of Nutrition, Vol. 132, Suppl. 9, 2002, pp. 2857S2866S.
- FAO/ILSI, “Preventing Micronutrient Malnutrition: A Guide to Food-Based Approaches,” Food and Agriculture Organization of the United Nations and International Life Science Institute, Washington DC, 1999, 9 p.
- World Health Organization/Food and Agriculture Organization, “Guidelines on Food Fortification with Micronutrients for the Control of Micronutrient Malnutrition,” World Health Organization, Geneva, 2005, pp. 20-23.
- F. L. Nweke, D. S. C. Spencer and J. K. Lynam, “The Cassava Transformation: Africa’s Best-Kept Secret,” International Institute of Tropical Agriculture, Ibadan, 2002.
- O. O. Onadipe, “Total Carotenoid Content, Retention, Bioavailability and Consumer Acceptability of Gari from Bio-Fortified Cassava Roots,” PhD Dissertation, Federal university of Agriculture, Abeokuta, 2011.
- O. O. Onabanjo, “Development and Nutritional Evaluation of Optimized Complementary Foods from Bio-Fortified Cassava Root and Leaves,” PhD Dissertation, University of Agriculture, Abeokuta, 2007.
- B. B. Maziya-Dixon, A. G. O. Dixon and A. R. Adebowale, “Targeting Different End Uses of Cassava Genotypic Variations for Cyanogenic Potentials and Pasting Properties,” International Journal of Food Science & Technology, Vol. 42, No. 8, 2007, pp. 969-976.
- M. L. Falia and C. Chichumroonchokchai, “In Vitro Models as Tools for Screening the Relative Bioavailabilities of Pro Vitamin A Carotenoids in Foods,” HarvestPlus Technical Monograph 3, 2005.
- M. Rodringuez-Amaya and Kimaya, “HarvestPlus Handbook for Carotenoid Analysis,” HarvestPlus Technical Monograph 2, International Food Policy Research Institute (IFPRI) Washington DC and International Center for Tropical Agriculture (CIAT), Cali, 2004.
- J. A. Howe and S. A. Tanumihardjo, “Carotenoid-Biofortified Maize Maintains Adequate Vitamin A Status in Mongolian Gerbils,” Journal of Nutrition, Vol. 136, No. 10, 2006, pp. 2562-2567.
- U. G. Chandrika, E. R. Jansz and N. D. Warnasuriya, “Analysis of Carotenoids in Ripe Jackfruit (Artocapus heterophyllus) Kernel and Study of Their Bioconversion in Rats,” Journal of the Science of Food and Agriculture, Vol. 85, No. 2, 2005, pp. 186-190. http://dx.doi.org/10.1002/jsfa.1918