植酸
化学
抗营养剂
生物利用度
微量营养素
食品科学
植酸酶
螯合作用
保健品
抗氧化剂
蛋白酵素
生物化学
磷酸盐
柠檬酸
维生素C
生物
酶
无机化学
有机化学
药理学
作者
Awadhesh Kumar,Brajesh Singh,Pinky Raigond,Chandrasekhar Sahu,Udit Nandan Mishra,Srigopal Sharma,Milan Kumar Lal
标识
DOI:10.1016/j.foodres.2021.110193
摘要
Phytic acid (PA), [myo-inositol 1,2,3,4,5,6-hexakisphosphate] is the principal storage compound of phosphorus (P) and account for 65%-85% of the seeds total P. The negative charge on PA attracts and chelates metal cations resulting in a mixed insoluble salt, phytate. Phytate contains six negatively charged ions, chelates divalent cations such as Fe2+, Zn2+, Mg2+, and Ca2+ rendering them unavailable for absorption by monogastric animals. This may lead to micronutrient deficiencies in humans since they lack the enzyme phytase that hydrolyzes phytate and releases the bound micronutrients. There are two main concerns about the presence of PA in human diet. The first is its negative impact on the bioavailability of several minerals and the second is the evidence of PA inhibiting various proteases essential for protein degradation and the subsequent digestion in stomach and small intestine. The beneficial role of PA has been underestimated due to its distinct negative consequences. PA is reported to be a potent natural plant antioxidant which plays a protective role against oxidative stress in seeds and preventive role in various human diseases. Recently beneficial roles of PA as an antidiabetic and antibacterial agent has been reported. Thus, the development of grains with low-PA and modified distribution pattern can be achieved through fine-tuning of its content in the seeds.
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