Cite

1. Abdulrahaman, A.A., Olayinka, B.U., Andrauwus, Z.D., Aluko, T.A., Adebola, M.O. &Oladele, F.A.(2014). Traditional preparations and uses of groundnut in Nigeria. Annals. Food Science and Technology, 15(1): 29-34.Search in Google Scholar

2. Agbagwa, I.O. &Ndukwu, B.C.(2004).Cucurbita L. Species in Nigeria: Under-’exploited food and vegetable crops. Niger Delta Biologia, 4(2): 11-15.Search in Google Scholar

3. Alfawaz, M.A.(2004). Chemical composition and oil characteristics of pumpkin Cucurbita maxima seed kernels. Food Science and Agriculture Research Center, King Saudi University, Saudi Arabia,129:5-18Search in Google Scholar

4. AOAC.(2005). Official Method of Analysis of AOAC Intl. 15th ed. Association of Official Analytical Chemists, WilsonBoalevard, Arlinton Virginia, USA, 2: 910-928.Search in Google Scholar

5. Badau, M. H., Nkama, I. &Jideani, I. A.(2005). Phytic acid content and hydrochloric acid extractability of minerals in pearl milletas affected by germination time and cultivar. Journal of Food Chemistry, 92: 425-435.10.1016/j.foodchem.2004.08.006Search in Google Scholar

6. Badifu, G.I.O. &Ogunsua, A.O.(1991).Chemical composition of kernels from some species of cucurbitaceae grown in Nigeria. Plant Foods for Human Nutrition, 41(1):35–44.10.1007/BF02196380Search in Google Scholar

7. Benitez, L.V. (1989). Amino acid and fatty acid profiles in aquaculture nutrition studies. Pp 166 In: De Silva, S.S. (Ed). Fish Nutrition Research in Asia. Proceeding of Third Asia Fish Nutrition Network Meeting, Manila, Philipppines: Asian Fisheries Society, Manila.Search in Google Scholar

8. Bozan, B. &Temelli, F.(2002). Supercritical CO2 extraction of flaxseed. Journal of American Oil Chemists, 79: 231-235.Call, F., Huan, S., and Quanhong, L.(2006). A review on pharmacological activities and utilization technologies of pumpkin. Plant Foods for Human Nutrition, 61:73–80.Search in Google Scholar

9. El-Adawy, T.A. &Taha, K.M.(2001). Characteristics and composition of different seeds oils and flours. Food Chemistry, 74: 47-54.10.1016/S0308-8146(00)00337-XSearch in Google Scholar

10. El Sohaimy S.A.(2012).Functional Foods and Nutraceuticals-Modern Approach to Food Science. World Applied Sciences Journal, 20: 691-708.Search in Google Scholar

11. Enujiugha, V.N., Badejo, A.A., Iyiola, S.O. &Oluwamukomi, M.O.(2003). Effect of germination on the nutritional and functional properties of African oil bean(PentaclethramacrophyllaBenth) seed flour. Journal of Food Agriculture and Environment, 1:72-75.Search in Google Scholar

12. Fagbemi, T. N., Oshodi, A. A. & Ipinmoroti, K. O.(2005). Effect of processing on the functional properties of full fat and defatted fluted pumpkin (Telfairaoccidentalis) seed flours. Journal of Food Technology, 3(3): 370-377.Search in Google Scholar

13. Fagbemi, T.N.(2006). Effects on processing on the functional properties of full and deffatted fluted pumpkin seed flours (Telfairiaoccidentalis). Journal of Food Technology,4(1): 70-79.Search in Google Scholar

14. Fagbemi, T.N., Adeoya, A.S. &Badejo, A.A.(2012). Effect of sulphiting on the physical and functional properties of acetylated cassava (Manihotesculenta) starch. Food 6(1): 38–43.Search in Google Scholar

15. FAO/WHO.(1991). Protein quality evaluation. In Food and Agricultural Organization of the United Nations, Rome, Italy.Search in Google Scholar

16. Fasasi, O.S.(2009). Proximate, anti-nutritional factors and functional properties of pearl millet (Pennisetumglaucum). Journal of Food Technology, 7(3): 92-97.Search in Google Scholar

17. FNB:IOM.(2002). Food and Nutrition Board:Institute of Medicine. Dietary reference intake for energy, carbohydrate, fibre, fat, fatty acids, cholesterol, protein and amino acid. National Academy of Sciences. The National Academies Press Washington D.C.: 107-967.Search in Google Scholar

18. Hassan, H.A., Mustafa, A.I. & Ahmed, A.R.(2013). Effect of incorporation of decorticated pigeon pea (Cajanuscajan) protein isolate on functional, baking and sensory characteristics of Wheat (Triticum aestivum) biscuit. Advance Journal of Food Science and Technology, 5:976–981.10.19026/ajfst.5.3335Search in Google Scholar

19. Ifesan,B.O.T., Akintade, A.O. & Gabriel-Ajobiewe, R.A.O.(2017). Physicochemical and nutritional properties of Mucunapruriensand Parkiabiglobosasubjected to controlled fermentation. International Food Research Journal, 24: 2177-2184.Search in Google Scholar

20. Ijarotimi, O.S.(2012). Influence of germination and fermentation on chemical composition, protein quality and physical properties of wheat flour (Triticumaestivum). Journal of Cereals and Oil seeds,3(3): 35-47.Search in Google Scholar

21. Jerkins R.(2000). X-ray techniques. In Meyers, R.A. (Ed) Overview in encyclopedia of analytical chemistry. Chichester: Willey Sons, J. Ltd.10.1002/9780470027318.a6801Search in Google Scholar

22. McGovern, P. E., Zhang, J., Tang, J., Zhang, Z., Hall, G. R., Moreau, R. A.,Nunez, A., Butrym, E.D.,Richards, M.P.,Wang, C.S., Cheng, G., Zhao, Z. & Wang, C.(2004). Fermented beverages ofSearch in Google Scholar

23. Pre and proto-histonic China. Proceedings of National Academy of Sciences, 101(51):17593-17598.Search in Google Scholar

24. Ohtsubo, K., Suzuki, K., Yasui, Y. & Kasumi, T.(2005). Bio-functional components in the processed pregerminated brown rice by a twinscrew extruder. Journal of Food Composition and Analysis,18 (4):303-316.10.1016/j.jfca.2004.10.003Search in Google Scholar

25. Olaofe, O., Adeyemi, F.O.& Adediran, G.O.(1994). Amino acid, mineral compositions and functional properties of some oilseeds. Journal of Agricultural and Food Chemistry,42(4):879-881.10.1021/jf00040a007Search in Google Scholar

26. Oshodi, A.A. &Fagbemi, T.N.(1992). Functional properties of defatted flour and protein isolate of fluted pumpkin seed flour. Ghana Journal of Chemistry, 1: 216-226.Search in Google Scholar

27. Osundahunsi, O. F. &Aworh, O.C.(2002). A preliminary study on the use of tempeh based formula as a weaning diets in Nigeria. Plant Foods for Human Nutrition, 57: 365-376.10.1023/A:1021805117084Search in Google Scholar

28. Shemi,G. (2013). Effective utilization of processing techniques on nutritional and pharmacological activities of pumpkin seeds. National conference on implication and intervention of phytomedicine in disease management. Dept. of Biochemistry, Periyar University, Salem.Search in Google Scholar

29. Ukpabi, U. J. and Ndimele, C. (1990). Evaluation of the quality of gari produced in Imo state. Nigerian Food Journal, 8: 105-110.Search in Google Scholar

30. Urbano, G.M., Lopez, J.C., Aranda, A., Vilchez, L., Cabrera, J.M., Porres& Aranda, P.(2006). Evaluation of zinc and magnesium bioavailability from pea (Pisumsativum L. sprouts. Errect of illumination and different germination periods, International Journal of Food Science and Technology, 41:618-626.10.1111/j.1365-2621.2005.01107.xSearch in Google Scholar

31. Wang, H. & Ng, T.B. (2003). Isolation of cucurmoschin: A novel antifungal peptideabundant in arginine, glutamate and glycine residue from black pumpkin seed peptides, 24:969-972.10.1016/S0196-9781(03)00191-8Search in Google Scholar

32. Yadegari, M., Golparvar, A.R. & Barzegar, R.(2012). Multivariate analysis of quantitative traits in Iranian pumpkin lines (Curcubitaspp). African Journal of Agricultural Resources, 7:764-774.10.5897/AJAR11.1780Search in Google Scholar

eISSN:
2344-150X
Language:
English
Publication timeframe:
2 times per year
Journal Subjects:
Industrial Chemistry, other, Food Science and Technology