Author:
Daniels Evan,Wulandari Nur,Faridah Didah Nur
Abstract
Consuming foods with a low glycemic index, such as sweet corn (Zea mays Saccharata), which has a high fiber content, can help lower the risk of diabetes. According to previous research, sweet corn is predicted to have a low glycemic index (GI). The study's goals were to determine the value of the glycemic index of corn and to produce low glycemic index instant flake products made from sweet corn and red beans. The glycemic index value of sweet corn was determined using a glycemic index test technique based on ISO 26642:2010E. The flakes was made with the addition of red beans reported to have the lowest glycemic index among legume, i.e. 26 in order to enhance the crude protein content of the flakes. Flakes were made in two formulas based on the proportion of red beans to sweet corn, namely formula 1 (30:70) and formula 2 (70:30). Proximate analysis was done according to AOAC 2005, total dietary fiber analysis according to AOAC Official Methods 985.29, and total starch analysis according to AOAC 2002.02. Texture analysis of the flakes was carried out using a texture analyzer and color analysis using a chromameter. The sweet corn was found to have a low GI (<55) i.e. 36. Formula 1 flakes contained more fat (db), carbohydrate (db), and total starch (db); while formula 2 flakes had more moisture, protein (db), and resistant starch (db). The resulting flakes have crispy texture (hardness of 553±5.09 gf for formula 1 and 519.05±6.86 gf for formula 2) and have yellow color (both are included in the yellow chromatic area).
Publisher
Department of Food Science and Technology, IPB University (Bogor Agricultural University)
Subject
General Earth and Planetary Sciences,General Environmental Science
Reference38 articles.
1. Afandi FA, Wijaya CH, Faridah DN, Suyatma NE, Jayanegara A. 2021. Evaluation of various starchy foods: A systematic review and meta-analysis on chemical properties affecting the glycemic index values based on in vitro and in vivo experiments. Foods 10: 364. https://doi.org/10.3390/foods10020364
2. Amagliani L, O’Regan J, Kelly AL, O’Mahony JA. 2016. Chemistry, structure, functionality and applications of rice starch. J Cereal Sci 70: 291-300. https://doi.org/10.1016/j.jcs.2016.06.014
3. Ansari S, Maftoon-Azad N, Farahnaky A, Hosseini E, Badii F. 2014. Effect of moisture content on textural attributes of dried figs. Int Agrophys 28: 403-412. https://doi.org/10.2478/intag-2014-0031
4. [AOAC] Association of Official Analytical Chemists. 2002. Official Methods of Analysis: Resistant Starch in Starch and Plant Materials. AOAC 2002.02. Association of Official Analytical Che-mist, Washington DC.
5. [AOAC] Association of Official Analytical Chemists. 2005. Total Dietary Fiber Determination. AOAC 985.29. Association of Official Analytical Che-mist, Washington DC.