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Thermal treatments reduce rancidity and modulate structural and digestive properties of starch in pearl millet flour

食品科学 淀粉 化学 珍珠 小麦面粉 马铃薯淀粉 脂肪酶 水解 抗性淀粉 生物化学 神学 哲学
作者
T. Vinutha,Dinesh Kumar,Navita Bansal,Veda Krishnan,Suneha Goswami,Ranjeet Ranjan Kumar,Aditi Kundu,Vijaykumar Poondia,Shalini Gaur Rudra,Vignesh Muthusamy,G. Rama Prashat,Venkatesh Paramesh,Sweta Kumari,Pranita Jaiswal,Archana Singh,Archana Sachdev,S. P. Singh,Tara Satyavathi,S. V. Ramesh,Shelly Praveen
出处
期刊:International Journal of Biological Macromolecules [Elsevier BV]
卷期号:195: 207-216 被引量:53
标识
DOI:10.1016/j.ijbiomac.2021.12.011
摘要

Pearl millet is a nutrient dense and gluten free cereal, however it's flour remains underutilized due to the onset of rancidity during its storage. To the best of our knowledge, processing methods, which could significantly reduce the rancidity of the pearl millet flour during storage, are non-existent. In this study, pearl millet grains were subjected to a preliminary hydro-treatment (HT). Subsequently, the hydrated grain-wet flour have undergone individual and combined thermal treatments viz., hydrothermal (HTh) and thermal near infrared rays (thNIR). Effects of these thermal treatments on the biochemical process of hydrolytic and oxidative rancidity were analyzed in stored flour. A significant (p < 0.05) decrease in the enzyme activities of lipase (47.8%), lipoxygenase (84.8%), peroxidase (98.1%) and polyphenol oxidase (100%) in HT-HTh-thNIR treated flour compared to the individual treatments was documented. Upon storage (90 days), decline of 67.84% and 66.4% of free fatty acid and peroxide contents were observed in flour under HT-HTh-thNIR treatment without altering starch and protein digestibility properties. HT-HTh treated flour exhibited the highest (7.6%) rapidly digestible starch, decreased viscosity and increased starch digestibility (67.17%). FTIR analysis of HT-HTh treated flour divulged destabilization of short-range ordered crystalline structure and altered protein structures with decreased in vitro digestibility of protein. Overall, these results demonstrated the effectiveness of combined thermal treatment of HT-HTh-thNIR in reducing rancidity and preserving the functional properties of the stored flour.
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