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Development of banana-based weaning food mixes for infants and its nutritional quality evaluation

  • Pothiraj Chitra EMAIL logo
Veröffentlicht/Copyright: 30. März 2015

Abstract

Banana-based weaning food mixes were developed from the Nendran variety to study the nutritional quality of the mixes and feasibility of marketing on a commercial scale. Chemical composition viz., moisture, acid, pH, reducing and total sugars, protein and β-carotene of the developed banana-based weaning mixes were analysed. The trypsin inhibitor activity reduced during cooking, and the flatus compound could not be measured due to its very meagre gas production. The α-amylase activity and in vitro protein and carbohydrate digestibilities were also analysed. A feeding trial of the developed mixes was conducted in infants as a supplement to study the nutritional quality of the developed banana-based weaning food mixes. Results showed an increase in all the anthropometric measurements during the feeding period, and the developed mixes can be prepared on a commercial scale to prevent malnutrition and undernutrition during the rapid growing period of infants.


Corresponding author: Dr. Pothiraj Chitra, Agricultural College and Research Institute, Department of Food Science and Nutrition, Tamil Nadu Agricultural University, Madurai – 625 104, Tamil Nadu, India, E-mail:

References

1. FAO. Market profile on tropical fruits in India. Food and Agricultural organization. Ecuador: CCP 2005; BA/TF 05/1.Suche in Google Scholar

2. FAOSTAT. FAO Agricultural database. Rome: Food and Agricultural Organisation of the United Nations, 2005.Suche in Google Scholar

3. Ghosh SP. Research and development in horticulture: Indian Fruit Industry. Indian Hortic 1997;October–December:4–9.Suche in Google Scholar

4. Rao RN. Banana-the god’s gift to mankind. Nutrition 1999;33(2):19–25.Suche in Google Scholar

5. WHO (World Health Organisation). Strengthening action to improve feeding of infants and young children 6–23 months of age in nutrition and child health programmes. Geneva: WHO, 2008;(October 6–9).Suche in Google Scholar

6. Maier AS, Chabanet C, Schaal B, Leathwood PD, Issanchou SN. Breast feeding and experience with variety early in weaning increase infants’ acceptance of new foods for up to two months. Clin Nutr (Edinburgh, Scotland) 2008;27(6):849–57.10.1016/j.clnu.2008.08.002Suche in Google Scholar

7. Mennella JA, Nicklaus S, Jagolino AL, Yourshaw LM. Variety is the spice of life. Strategies for promoting fruit and vegetable acceptance during infancy. Physiol Behav 2008;94(1):29–38.10.1016/j.physbeh.2007.11.014Suche in Google Scholar

8. Nicklaus S. Children’s acceptance of new foods at weaning. An easy guide to introducing solid foods. Appetite 2011;57(3):812–5.10.1016/j.appet.2011.05.321Suche in Google Scholar

9. United Nations Children’s Fund. The State of the World’s Children 2009. New York: United Nations Children’s Fund, 2008.Suche in Google Scholar

10. Black RE, Allen LH, Bhutta ZA, Caulfield LE, de Onis M, et al. Maternal and child undernutrition: global and regional issues and health consequences. Lancet 2008;371:243–60.10.1016/S0140-6736(07)61690-0Suche in Google Scholar

11. Scrimshaw NS, SanGiovanni JP. Synergism of nutrition, infection and immunity: an overview. Am J Clin Nutr 1997;66(2):464S–77S.10.1093/ajcn/66.2.464SSuche in Google Scholar

12. Ranganna S. Manual analysis of fruits and vegetable products, 2nd ed. New Delhi: Tata Mc Graw Hill publishing Co. Ltd., 1995.Suche in Google Scholar

13. Hart LF, Fischer HJ. Modern food analysis, 1st ed. Berlin Heidelberg, New York: Springer Verlag, 1971:64–6.Suche in Google Scholar

14. Sadasivam S, Manickam A. Biochemical methods II edition. New Delhi: New Age International (p) Ltd., 1996.Suche in Google Scholar

15. Walter RA, Mark AS. A pepsin pancreatin digestive index of protein quality evaluation. J Nutr 1964;83:257–61.10.1093/jn/83.3.257Suche in Google Scholar

16. Kakade ML, Rachis JJ, Mc Ghee JE, Puski G. Determination of trypsin inhibitor activity of soy products-a-collaborative analysis of improved procedure. Cereal Chem 1974;51:376–82.Suche in Google Scholar

17. El Faki MA, Bavanishankar TN, Venkataraman LV, Tharanathan RN, Desikachar HSR. Presence of an inhibitory factor to gas production by Clostridium perfrigens in husks of chickpea (ciar arietimum), cowpea (vigna sinenses) and horse gram (Dolicus bijjorus). J Food Sci Technol 1984;21(5):259–61.Suche in Google Scholar

18. Bentley ME, Dickin KL, Mebrahtu S, Kayode B, Oni GA, et al. Development of a nutritionally adequate and culturally appropriate weaning food in Kwara State Nigeria: an interdisciplinary approach. Soc Sci Med 1991;3(10):1103–11.10.1016/0277-9536(91)90226-3Suche in Google Scholar

19. Kanashiro HC, Fukumoto M, Bentley ME, Jacoby E, Verzosa C, et al. Use of recipe trials and anthropological techniques for the development of a home-prepared weaning food in the central highlands of Peru. J Nutr Educ 1991;23(1):30–5.10.1016/S0022-3182(12)80453-5Suche in Google Scholar

20. Gomez KH, Gomoz AA. Statistical procedure for Agricultural Research, 2nd ed. New York: John Wiley and Sons, 1984:381.Suche in Google Scholar

21. Adeymi A, Akanbi CT, Fasoro OG. Effect of soy fractions on some fractional and rheological properties of maize-banana mixtures. J Food Process Preserv 1991;15(1):31–43.10.1111/j.1745-4549.1991.tb00152.xSuche in Google Scholar

22. Ogazi PO. Plantain: production, processing, utilization. Okigwe, Imo state: Paman and Associates Limited, 1996.Suche in Google Scholar

23. Mir MA, Hussain S. Development and nutritional evaluation of fruit puree based baby foods. Beverage and Food World 1997;24(5):17.Suche in Google Scholar

24. Batro VIP, Vasishta R, Dhindsa KS. Effect of heat and germination on trypsin inhibitor activity in lentil and pigeon pea. J Food Sci Technol 1986;23(5):125–7.Suche in Google Scholar

25. Marero LM, Payumo EM, Aguinaldo AR, Matsumoto I, Homma S. Antinutritional factors in weaning foods prepared from germinated cereals and legumes. Lebenson Wiss Technol 1991;24:177–81.Suche in Google Scholar

26. Lasekan OO. Effect of germination on alpha-amylase activities and rheological properties of sorghum and acha grains. J Food Sci Technol 1996;33(4):329–31.Suche in Google Scholar

27. Monica J. India’s struggle against malnutrition-is the ICDS Program the Answer. World Dev 2015;67:72–89.10.1016/j.worlddev.2014.10.006Suche in Google Scholar

28. Case A, Paxson C. Stature and status: height, ability and labor market outcomes. J Polit Econ 2008;116(3):499–532.10.1086/589524Suche in Google Scholar PubMed PubMed Central

29. Martorell R, Kettel Khan L, Schroeder D. Reversibility of stunting: epidemiological findings in children from developing countries. Eur J Clin Nutr 1994;48:S45–57.Suche in Google Scholar

Received: 2015-1-23
Accepted: 2015-2-19
Published Online: 2015-3-30
Published in Print: 2015-5-1

©2015 by De Gruyter

Heruntergeladen am 17.11.2025 von https://www.degruyterbrill.com/document/doi/10.1515/reveh-2015-0002/pdf
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