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Original Articles

Structure and digestibility properties of resistant rice starch cross-linked with citric acid

, &
Pages 2166-2177 | Received 30 Mar 2017, Accepted 14 Aug 2017, Published online: 29 Dec 2017

References

  • Van Hung, P.; Chau, H. T.; Phi, N. T. L. In Vitro Digestibility and in Vivo Glucose Response of Native and Physically Modified Rice Starches Varying Amylose Contents. Food Chemistry 2016, 191, 74–80.
  • Englyst, H. N.; Kingman, S. M.; Cummings, J. H. Classification and Measurement of Nutritionally Important Starch Fractions. European Journal of Clinical Nutrition 1992, 46, S33–50.
  • Xie, X. S.; Liu, Q.; Cui, S. W. Studies on the Granular Structure of Resistant Starches (Type 4) from Normal, High Amylose and Waxy Corn Starch Citrates. Food Research International 2006, 39, 332–341.
  • Jyothi, A. N.; Moorthy, S. N.; Rajasekharan, K. N. Effect of Cross‐Linking with Epichlorohydrin on the Properties of Cassava (Manihot esculenta Crantz) Starch. Starch‐Stärke 2006, 58, 292–299.
  • Xie, X. S.; Liu, Q. Development and Physicochemical Characterization of New Resistant Citrate Starch from Different Corn Starches. Starch‐Stärke 2004, 56, 364–370.
  • Jyothi, A. N.; Moorthy, S. N.; Sreekumar, J. N.; Rajasekharan, K. N. Studies on the Properties of Citrate Derivatives of Cassava (Manihot esculenta Crantz) Starch Synthesized by Microwave Technique. Journal of the Science of Food and Agriculture 2007, 87, 871–879.
  • Mei, J.; Zhou, D.; Jin, Z.; Xu, X.; Chen, H. Effects of Citric Acid Esterification on Digestibility, Structural and Physicochemical Properties of Cassava Starch. Food Chemistry 2015, 187, 378–384.
  • Yamamoto, K.; Sawada, S.; Onogaki, T. Properties of Rice Starch Prepared by Alkali Method with Various Conditions. Journal of the Japanese Society of Starch Science 1973, 20, 99–104.
  • American Association of Cereal Chemists (AACC). Approved Method of the AACC, Methods 08-01, 44-15A, 46-12A, 30-10; AACC International: St. Paul, MN, USA, 2000; 10th ed.
  • Williams, P.; Kuzina, F.; Hlynka, I. Rapid Colorimetric Procedure for Estimating the Amylose Content of Starches and Flours. Cereal Chemistry 1970, 47, 411–421.
  • Klaushofer, H.; Berghofer, E.; Steyrer, W. Die Neuentwicklung Modifizierter Stärken Am Beispiel Von Citratstärke. Ernahrung/Nutrition 1978, 2, 51–55.
  • Kweon, D.; Choi, J.; Kim, E.; Lim, S. Adsorption of Divalent Metal Ions by Succinylated and Oxidized Corn Starches. Carbohydrate Polymers 2001, 46, 171–177.
  • Atrous, H.; Benbettaieb, N.; Chouaibi, M.; Attia, H.; Ghorbel, D. Changes in Wheat and Potato Starches Induced by Gamma Irradiation: A Comparative Macro and Microscopic Study. International Journal of Food Properties 2017, 20, 1532–1546.
  • Chung, H. J.; Liu, Q.; Lee, L.; Wei, D. Relationship between the Structure, Physicochemical Properties and in Vitro Digestibility of Rice Starches with Different Amylose Contents. Food Hydrocolloids 2011, 25, 968–975.
  • Won, C.; Jin, Y. I.; Kim, M.; Lee, Y.; Chang, Y. H. Structural and Rheological Properties of Potato Starch Affected by Degree of Substitution by Octenyl Succinic Anhydride. International Journal of Food Properties 2017 doi:10.1080/10942912.2016.1272610.
  • Xu, A.; Seib, P. Determination of the Level and Position of Substitution in Hydroxypropylated Starch by High-Resolution 1H NMR Spectroscopy of Alpha-Limit Dextrins. Journal of Cereal Science 1997, 25, 17–26.
  • Tester, R. F.; Morrison, W. R. Swelling and Gelatinization of Cereal Starches. I. Effects of Amylopectin, Amylose, and Lipids. Cereal Chemistry 1990, 67, 551–557.
  • Reddy, I.; Seib, P. A. Paste Properties of Modified Starches from Partial Waxy Wheats. Cereal Chemistry 1999, 76, 341–349.
  • Chung, H. J.; Liu, Q. Effect of Gamma Irradiation on Molecular Structure and Physicochemical Properties of Corn Starch. Journal of Food Science 2009, 74, C353–C361.
  • Bao, J.; Shen, S.; Sun, M.; Corke, H. Analysis of Genotypic Diversity in the Starch Physicochemical Properties of Nonwaxy Rice: Apparent Amylose Content, Pasting Viscosity and Gel Texture. Starch‐Stärke 2006, 58, 259–267.
  • You, S. Y.; Oh, S. K.; Kim, H. S.; Chung, H. J. Influence of Molecular Structure on Physicochemical Properties and Digestibility of Normal Rice Starches. International Journal of Biological Macromolecules 2015, 77, 375–382.
  • Menzel, C.; Olsson, E.; Plivelic, T. S.; Andersson, R.; Johansson, C.; Kuktaite, R.; Järnström, L.; Koch, K. Molecular Structure of Citric Acid Cross-Linked Starch Films. Carbohydrate Polymers 2013, 96, 270–276.
  • Gani, A.; Ashwar, B. A.; Akhter, G.; Shah, A.; Wani, I. A.; Masoodi, F. A. Physico-Chemical, Structural, Pasting and Thermal Properties of Starches of Fourteen Himalayan Rice Cultivars. International Journal of Biological Macromolecules 2017, 95, 1101–1107.
  • Kim, M. J.; Choi, S. J.; Shin, S. I.; Sohn, M. R.; Lee, C. J.; Kim, Y.; Cho, W. I.; Moon, T. W. Resistant Glutarate Starch from Adlay: Preparation and Properties. Carbohydrate Polymers 2008, 74, 787–796.
  • El Halal, S. L. M.; Colussi, R.; Pinto, V. Z.; Bartz, J.; Radunz, M.; Carreño, N. L. V.; Dias, A. R. G.; Da Rosa Zavareze, E. Structure, Morphology and Functionality of Acetylated and Oxidised Barley Starches. Food Chemistry 2015, 168, 247–256.
  • Dastidar, T. G.; Netravali, A. N. Green’ Crosslinking of Native Starches with Malonic Acid and Their Properties. Carbohydrate Polymers 2012, 90, 1620–1628.
  • Biswas, A.; Shogren, R.; Selling, G.; Salch, J.; Willett, J.; Buchanan, C. M. Rapid and Environmentally Friendly Preparation of Starch Esters. Carbohydrate Polymers 2008, 74, 137–141.
  • Shi, R.; Zhang, Z.; Liu, Q.; Han, Y.; Zhang, L.; Chen, D.; Tian, W. Characterization of Citric Acid/Glycerol Co-Plasticized Thermoplastic Starch Prepared by Melt Blending. Carbohydrate Polymers 2007, 69, 748–755.
  • Zhou, J.; Tong, J.; Su, X.; Ren, L. Hydrophobic Starch Nanocrystals Preparations through Crosslinking Modification Using Citric Acid. International Journal of Biological Macromolecules 2016, 91, 1186–1193.
  • Karwasra, B. L.; Gill, B. S.; Kaur, M. Rheological and Structural Properties of Starches from Different Indian Wheat Cultivars and Their Relationships. International Journal of Food Properties 2017 doi:10.1080/10942912.2017.1328439.
  • Komulainen, S.; Verlackt, C.; Pursiainen, J.; Lajunen, M. Oxidation and Degradation of Native Wheat Starch by Acidic Bromate in Water at Room Temperature. Carbohydrate Polymers 2013, 93, 73–80.
  • Chi, H.; Xu, K.; Wu, X.; Chen, Q.; Xue, D.; Song, C.; Zhang, W.; Wang, P. Effect of Acetylation on the Properties of Corn Starch. Food Chemistry 2008, 106, 923–928.
  • Dong, C.; Li, C.; Xiao, H.; He, B.; Qian, L. β-Cyclodextrin Grafted Cellulose and Cationic Starch for Antibacterial Paper Products: A Comparative Study. BioResources 2014, 9, 3580–3590.
  • Mohamad, K. A. W.; Ismail, H.; Othman, N. Characterization of Citric Acid-Modified Tapioca Starch and Its Influence on Thermal Behavior and Water Absorption of High Density Polyethylene/Natural Rubber/Thermoplastic Tapioca Starch Blends. Polymer-Plastics Technology and Engineering 2011, 50, 748–753.
  • Kartha, K.; Srivastava, H. Reaction of Epichlorhydrin with Carbohydrate Polymers. Part I. Starch Reaction Kinetics. Starch‐Stärke 1985, 37, 270–276.
  • Włodarczyk-Stasiak, M.; Mazurek, A.; Kowalski, R.; Pankiewicz, U.; Jamroz, J. Physicochemical Properties of Waxy Corn Starch after Three-Stage Modification. Food Hydrocolloids 2017, 62, 182–190.
  • Yussof, N. S.; Utra, U.; Alias, A. K. Hydrolysis of Native and Cross‐Linked Corn, Tapioca, and Sweet Potato Starches at Sub‐Gelatinization Temperature Using a Mixture of Amylolytic Enzymes. Starch‐Stärke 2013, 65, 285–295.
  • Hoover, R.; Zhou, Y. In Vitro and in Vivo Hydrolysis of Legume Starches by α-amylase and Resistant Starch Formation in Legumes—A Review. Carbohydrate Polymers 2003, 54, 401–417.
  • Chung, H.; Shin, D.; Lim, S. In Vitro Starch Digestibility and Estimated Glycemic Index of Chemically Modified Corn Starches. Food Research International 2008, 41, 579–585.

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