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Research Article

Functional and physical properties of sorghum-based extruded product supplemented with soy meal flour

ORCID Icon, & | (Reviewing editor)
Article: 1707608 | Received 26 Aug 2019, Accepted 16 Dec 2019, Published online: 30 Dec 2019

References

  • AACC. (2000). Approved methods of the american association of cereal chemists. St, Paul, MN.
  • Abioye, V. F., Ade-Omowaye, B. I. O., Babarinde, G. O., & Adesigbin, M. K. (2011). Chemical, physico-chemical and sensory properties of soy-plantain flour. African Journal of Food Science, 5(4), 176–21.
  • Adedeji, A. A., Suhr, E., Bhadriraju, S., & Alavi, S. (2016). Drying characteristics of bean analog – a sorghum based extruded product. Journal of Food Processing and Preservation, 41(2). doi:10.1111/jfpp.12856
  • Anderson, R. A., Conway, H. F., & Peplinski, A. J. (1970). Gelatinization of corn grits by roll cooking, extrusion cooking and steaming. Starch-Starke, 22(4), 2–7. doi:10.1002/star.19700220408
  • Anuonye, J. C., Onuh, J. O., Egwim, E., & Adeyemo, S. O. (2010). Nutrient and antinutrient composition of extruded acha/Soybean blends. Journal of Food Processing and Preservation, 34, 680–691. doi:10.1111/j.1745-4549.2009.00425.x
  • Asare, E. M., Sefa-Dedeh, S., Afoakwa, E. O., Sakyi-Dawson, E., & Budu, A. S. (2010). Response surface methodology for studying the effects of feed moisture and ingredient variations on the chemical composition and appearance of extruded sorghum-groundnut cowpea blends. International Journal of Food Engineering, 6(6). doi:10.2202/1556-3758.2025
  • Basediya, A. L., Pandey, S., Shrivastava, S. P., Khan, K. A., & Nema, A. (2013). Effect of process and machine parameters on physical properties of extrudate during extrusion cooking of sorghum, horse gram and defatted soy flour blends. Journal of Food Science and Technology, 50(1), 44–52. doi:10.1007/s13197-011-0319-y
  • Belton, P. S., & Taylor, J. R. N. (2004). Sorghum and millets : Protein sources for Africa. Trends in Food Science & Technology, 15, 94–98. doi:10.1016/j.tifs.2003.09.002
  • Brncic, M., Tripalo, B., Jezek, D., Semenski, D., Drvar, N., & Ukrainczyk, M. (2006). Effect of twin-screw extrusion parameters on mechanical hardness of direct-expanded extrudates. Sadhana, 31(5), 527–536. doi:10.1007/BF02715911
  • Charunuch, C., Tangkanakul, P., Limsangouan, N., & Sonted, V. (2008). Effects of extrusion conditions on the physical and functional properties of instant cereal beverage powders admixed with mulberry (Morus alba L .) leaves. Food Science and Technology Research, 14(5), 421–430. doi:10.3136/fstr.14.421
  • Crowe, T. W., & Johnson, L. A. (2001). Twin-screw extrusion texturization of extruded-expelled soybean flour. Journal of the American Oil Chemists’ Society, 78(8), 781–786. doi:10.1007/s11746-001-0342-8
  • Devi, N. L., Shobha, S., Tang, X., Shaur, S. A., Dogan, H., Alavi, S., … Alavi, S. (2013). Development of protein-rich sorghum-based expanded snacks using extrusion technology. International Journal of Food Properties ISSN:, 16(2), 263–276. doi:10.1080/10942912.2011.551865
  • Dicko, M. H., Gruppen, H., Traoré, A. S., Voragen, A. G. J., & Van Berkel, W. J. H. (2006). Sorghum grain as human food in Africa : Relevance of content of starch and amylase activities. African Journal of Biotechnology, 5(5), 384–395.
  • Ding, Q., Ainsworth, P., Plunkett, A., Tucker, G., & Marson, H. (2006). The effect of extrusion conditions on the functional and physical properties of wheat-based expanded snacks. Journal of Food Engineering, 73, 142–148. doi:10.1016/j.jfoodeng.2005.01.013
  • Ding, Q., Ainsworth, P., Tucker, G., & Marson, H. (2005). The effect of extrusion conditions on the physicochemical properties and sensory characteristics of rice-based expanded snacks. Journal of Food Engineering, 66, 283–289. doi:10.1016/j.jfoodeng.2004.03.019
  • Duarte, P. R., Majewska, K., & Doetkott, C. (1998). Effect of extrusion process parameters on the quality of buckwheat flour mixes. Cereal Chemistry, 75(3), 338–345. doi:10.1094/CCHEM.1998.75.3.338
  • Fan, J., Mitchell, J. R., & Blanshard, J. M. V. (1996). The effect of sugars on the extrusion of maize grits : I. The role of the glass transition in determining product density and shape. International Journal of Food Science and Technology, 31, 55–65. doi:10.1111/ifs.1996.31.issue-1
  • Filli, K. B., Nkama, I., Abubakar, U. M., & Jideani, V. A. (2010). Influence of of extrusion variables on some functional properties of extruded millet-soybean for the manufacture of ‘Fura’: A Nigerian traditional food. African Journal of Food Science, 4(6), 342–352.
  • Gbenyi, D. I., Nkama, I., & Badau, M. H. (2016). Modeling mineral profile of extruded sorghum bambara groundnut breakfast cereals. British Journal of Applied Science and Technology, 17(4), 1–14. doi:10.9734/BJAST/2016/28700
  • Golob, P., Farrell, G., & Orchard, J. E. (2002). Crop post-harvest : Science and technology (Vol. 1). Black well: Black well science Ltd.
  • Gopirajah, R., & Muthukumarappan, K. (2017). Effect of extrusion process conditions on the physical properties of Tef-Oat healthy snack extrudates. Journal of Food Processing and Preservation, e13559, 1–9. doi:10.1111/jfpp.13559
  • Hagenimana, A., Ding, X., & Fang, T. (2006). Evaluation of rice flour modified by extrusion cooking. Journal of Cereal Science, 43, 38–46. doi:10.1016/j.jcs.2005.09.003
  • Hegazy, H. S., El-bedawey, A. E. A., Rahma, E. H., & Gaafar, A. M. (2017). Effect of extrusion processs on nutritional, functional properties and antioxidant activity of germinated chickpea incorporated corn extrudates. American Journal of Food Science and Nutrition Research, 4(1), 59–66.
  • Hernandez-Diaz, J. R., Quintero-Ramos, A., Barnard, J., & Balandran-Quintana, R. R. (2007). Functional properties of extrudates prepared with blends of wheat flour/pinto bean meal with added wheat bran. Food Science and Technology International, 13(4), 301–308. doi:10.1177/1082013207082463
  • Hernandez-Nava, R. G., Bello-Perez, L. A., Martin-Martinez, E. S., Hernandez-Sanchez, H., & Mora-Escobedo, R. (2011). Effect of extrusion cooking on the functional properties and starch components of lentil/banana blends: Response surface analysis. Revista Mexicana De Ingeniería Química, 10(3), 409–419.
  • Kebede, L., Solomon, W., Bultosa, G., #x0026; Yetneberek, S. (2010). Effect of extrusion operating conditions on the physical and sensory properties of tef (Eragrostis tef [Zucc .] Trotter) flour extrudates. Ethiopian Journal of Applied Science and Technology, 1(1), 27–38.
  • Kumar, T. V. A., Samuel, D. V. K., Jha, S. K., & Sinha, J. P. (2015). Twin screw extrusion of sorghum and soya blends : A response surface analysis. Journal of Agricultural Science and Technology, 17, 649–662.
  • Kurt, A. R., Muthumarappan, K., & Kannadhason, S. (2009). Effects of ingredients and extrusion parameters on properties of Aquafeeds conteaining DDGS and corn starch. Journal of Aquaculture Feed Science and Nutrition, 1(1), 22–38. joafsnu.2009.22.38.
  • Lazou, A., & Krokida, M. (2010). Functional properties of corn and corn-lentil extrudates. Food Research International, 43, 609–616. doi:10.1016/j.foodres.2009.09.017
  • Leonel, M., de Freitas, T. S., & Mischan, M. M. (2009). Physical characteristics of extruded cassava starch. Scientia Agricola, 66(4), 486–493. doi:10.1590/S0103-90162009000400009
  • Majumdar, R. K., Venkateshwarlu, G., & Roy, A. K. (2011). Effect of extrusion variables on the physico-chemical properties of soyabean-fish based ready-to-eat snacks. Agricultural Journal, 6(1), 23–27. doi:10.3923/aj.2011.23.2
  • Mason, W. R., & Hoseney, R. C. (1986). Factors affecting the viscosity of extrusion cooked wheat starch. Cereal Chemistry, 63(5), 436–441.
  • Matthey, F. P., & Hanna, M. A. (1997). Physical and functional properties of twin-screw extruded whey protein concentrate–corn starch blends. LWT-Food Science and Technology, 30, 359–366. doi:10.1006/fstl.1996.0189
  • Odebode, F. D., Ekeleme, O. T., Ijarotimi, O. S., Malomo, S. A., Idowu, A. O., Badejo, A. A., … Fagbemi, T. N. (2018). Nutritional composition, antidiabetic and antilipidemic potentials of flour blends made from unripe plantain, soybean cake, and rice bran. Journal of Food Biochemistry, 42(4), 1–9. doi:10.1111/jfbc.12447
  • Ozer, E. A., Ibanoglu, S., Ainsworth, P., & Yagmur, C. (2004). Expansion characteristics of a nutritious extruded snack food using response surface methodology. European Food Research and Technology, 218, 474–479. doi:10.1007/s00217-004-0884-7
  • Pelembe, L. A. M., Erasmus, C., & Taylor, J. R. N. (2002). Development of a protein-rich composite sorghum-cowpea instant porridge by extrusion cooking process. LWT - Food Science and Technology, 35, 120–127. doi:10.1006/fstl.2001.0812
  • Perez, A. A., Drago, S. R., Carrara, C. R., Greef, D. M., De, Torres, R. L., & Gonzalez, R. J. (2008). Extrusion cooking of a maize/soybean mixture : Factors affecting expanded product characteristics and flour dispersion viscosity. Journal of Food Engineering, 87, 333–340. doi:10.1016/j.jfoodeng.2007.12.008
  • Shi, C., Shi, C., Wang, L., Wu, M., Adhikari, B., & Li, L. (2011). Optimization of twin-screw extrusion process to produce okara-maize snack foods using response surface methodology. International Journal of Food Engineering, 7(2), 1–24. doi:10.2202/1556-3758.1909
  • Solomon, W. K. (2007). Effect of barrel temprature on rehydration kinetics of direct-expanded Tef flour breakfast cereal. Journal of Food Process Engineering, 31, 469–487. doi:10.1111/j.1745-4530.2007.00160.x
  • Ströher, R., Stenzel, M., Pereira, N. C., & Zanin, G. M. (2012). Enzymatic extraction of protein from toasted and not toasted soybean meal. Procedia Food Science, 1, 463–469. doi:10.1016/j.profoo.2011.09.071
  • Suksomboon, A., Limroongreungrat, K., Sangnark, A., & Thititumjariya, K. (2011). Effect of extrusion conditions on the physicochemical properties of a snack made from purple rice (Hom Nil) and soybean flour blend. International Journal of Food Science and Technology, 46, 201–208. doi:10.1111/j.1365-2621.2010.02471.x
  • Tadesse, S. A., Bultosa, G., & Abera, S. (2019). Chemical and sensory quality of sorghum-based extruded product supplemented with defatted soy meal flour. Cogent Food & Agriculture, 5(1), 1–19. doi:10.1080/23311932.2019.1653617
  • Taylor, J. R. N., & Dewar, J. (2001). Developments in sorghum food technologies. Advances in Food and Nutrition Research, 43, 218–264.
  • Taylor, J. R. N., Schober, T. J., & Bean, S. R. (2006). Novel food and non-food uses for sorghum and millets. Journal of Cereal Science, 44, 252–271. doi:10.1016/j.jcs.2006.06.009
  • Valencia, R. R. C., Cruz, A. A., de La, Alvarez, J. C. I., & Kallio, H. (2009). Chemical and functional characterization of Kañiwa (Chenopodium pallidicaule) grain, extrudate and bran. Plant Foods for Human Nutrition, 64, 94–101. doi:10.1007/s11130-009-0109-0
  • Veronica, A. O., Olusola, O. O., & Adebowale, E. A. (2006). Qualities of extruded puffed snacks from maize/soybean mixture. Journal of Food Process Engineering, 29(2006), 149–161. doi:10.1111/j.1745-4530.200600054.x