Effect of Pre-Treatment on Selected Nutrient Profile and Functional Properties of Quinoa (Chenopodium quinoa) Flour and Development of Gluten Free Quinoa Cookies
DOI:
https://doi.org/10.21048/ijnd.2018.55.2.18156Keywords:
Quinoa (Chenopodium quinoa), pseudo cereal, celiac disease, germination, dry roasting, functional propertiesAbstract
Recent awareness and interest in health and wellness has shifted focus on healthy eating and lifestyle changes among people. Baked products are consumed by all age group people and the consumer demand is increasing towards gluten free products mainly due to the prevalence of celiac disease. Utilization of quinoa flour in the making of cookies has its beneficial and nutraceutical properties and its gluten free nature makes it an excellent snack for celiac disease patients. The objective of the current study is to understand the impact of pre-treatments- dry roasting and germination- on the nutritional and functional properties of quinoa flour and to formulate and assess the cookies prepared from the pre treated quinoa flour. Quinoa seeds were washed and subjected to pre-treatments- roasting and germination. Proximate and functional properties were analyzed for plain, roasted and germinated quinoa flour. Quinoa cookies were prepared using plain, roasted and germinated flour. Physical parameters of the cookies were assessed. Cookies were subjected to sensory analysis. There was a significant difference in the proximate composition and functional properties of the untreated, roasted and germinated quinoa flour. Sensory analysis of the cookies revealed that all the samples ranked similar for all the attributes. The study reveals that there is a possibility for the formulation of gluten free cookies using a pseudo cereal like quinoa which has good nutritional and sensory profile.Downloads
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References
Vaughn, J.G. and Geissler, C.A. The New Oxford Book of Food Plants. 2nd edition, Oxford University Press, Oxford, 2009.
James, L.E.A. Chapter 1: Quinoa (Chenopodium quinoa Wild): Composition, chemistry, nutritional and functional properties. Adv.Fd. Nutr. Res., 2009, 58, 1-31.
AOAC. Official methods of analysis, 17th edition. Association of Official Analytical Chemists, Washington DC, 2000.
FAO. Food energy – methods of analysis and conversion factors. Food and Nutrition paper ISSN 0254-4725, 2003.
James, C.S. General Food Studies. In: Analytical Chemistry of Foods, Chapter 6, Blachie Academic and Professional., 1995, 137-171.
AOAC. Official methods of analysis. 15th Edition, Association of Official Analytical Chemists, Washington DC, 2006.
Gains, C.S. Instrumental measurement of the hardness of cookies and crackers. Cereal. Fds.
World., 1991, 36, 989-996.
Peryam, D.R. and Pilgrim, F.J. Hedonic scale method of measuring food preference. Fd.
Tech., 1957, 11, 9-14.
Roberta Godoy, Márcio Caliari, Manoel Soares Júnior, Vera Sí´nia Nunes da Silva, Marta de Toledo Benassi, Marina Costa Garcia. Quinoa and rice co-products gluten free-cereals: Physical, chemical, microbiological and sensory qualities. Federal University of Goiás - UFG, Goií¢nia, GO, Brazil, 2015.
Ahamed, N.T., Rekha, S.S., Pushpa, R.K. and Mohinder, P. A lesser-known grain, Chenopodium quinoa: Review of the chemical composition of its edible parts. Food and Nutrition Bulletin., 1998, 19, 61-68.
Margarita Miranda, José Delatorre-Herrera, Antonio Vega-Gálvez1, Evelyn Jorquera, Issis Quispe-Fuentes, Enrique A. Martínez. "Antimicrobial potential and phytochemical content of six diverse sources of quinoa seeds (Chenopodium quinoa Wild).Department of Food Engineering, Universidad de La Serena, La Serena, Chile, 2014.
Chauhan, A., Saxena, D.C. and Singh, S. Total dietary fibre and antioxidant activity of gluten free cookies made from raw and germinated amaranth (Amaranthus spp.) flour. LWT- Fd. Sci. Technol., 2015, 63, 39-945.
El-adawy, T.A., Rahma, E.H., El-Bedawey, A.A. and El-Beltagy, A.E. Nutritional potential and functional properties of germinated mung bean, pea and lentil seeds. Pl. Fds.Hum. Nutr., 2003, 58, 1-13.
Koziol, M.J. Chemical composition and nutritional evaluation of Quinoa (Chenopodium quinoa Willd.). J. Fd. Com. Anal., 1992, 5, 35-68.
Nagaprabha, P. and Jamuna Prakash, Development and quality assessment of green gram based instant dosai mix. J. Fd. Sci. Technol., 2009, 46, 5, 418-422.
Ghavidel and Jamuna Prakash. Effect of germination and dehulling on functional properties of legume flours. J. Sci. Fd. Agric., 2006, 86, 8, 1189-1195.
Chiemela, E.C., Olufemi, A. and Joseph, O.A. Effect of germination on the chemical, functional and pasting properties of flour from brown and yellow varieties of tigernut (Cyperus esculentus). Fd. Res. Int., 2009, 42, 1004-1009.
Aremu M.O., Olaofe, O., Akintayo, E.T. and Adeyeye, E.I. Foaming, water absorption, emulsification and gelation properties of cresting's groundnut (Kerstingiella geocarpa) and Bambara groundnut (Vigna subterranean) flour as influenced by neutral salts and their concentrations. Pak. J. Nutr., 2008, 7, 1, 194-201.
Gamel, T.H., Linssen, J.P., Mesallam, A.S., Damir, A.A. and Shekib, L.A. Seed treatments affect functional and anti -nutritional properties of amaranth flours. J. Sci. Fd. Agric., 2006, 86, 1095-1102.
Palmiano, E.P. and Juliano, B.O. Biochemical changes in the rice grain during germination.
Plant Physiol., 1972, 49, 751-756.
Hoojjat, P. and Zabik, M.E. Sugar-snap cookies prepared with wheat -navy bean- sesame seed flour blends. Cereal Chem., 1984, 61, 41-44.