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首页> 外文期刊>Journal of Polymers and the Environment >Microwave-Induced Modification of Physical and Functional Characteristics and Antioxidant Potential of Alkali-Soluble Cell Wall Polysaccharides of Nelumbo nucifera Rhizome
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Microwave-Induced Modification of Physical and Functional Characteristics and Antioxidant Potential of Alkali-Soluble Cell Wall Polysaccharides of Nelumbo nucifera Rhizome

机译:微波诱导的Nelumbo Nucifera relizome的碱可溶性细胞壁多糖的物理和功能性特征和抗氧化潜力的改变

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The alkali-soluble cell wall polysaccharides (CWPs), extracted from Nelumbo nucifera rhizome flour (NNRF), were treated with microwave radiation to modify their physical characteristics, functional properties, and antioxidant potential. The NNRF was treated at different levels of microwave treatment time (1, 2, 3, 4 and 5 min) using the low-medium intensity (200 W). The cell wall was isolated and CWPs were extracted in 10% KOH solution followed by their physical, functional, and antioxidant characterization. Microwave treatment resulted in the morphological, structural and compositional modifications in CWPs that were directly correlated with their functional properties and antioxidant potential. A significant (p 0.05) time-dependent exponential decrease in extract yield, exponential increase in water holding, oil holding, and swelling capacities, a polynomial increase in iron-binding capacity, and a linear increase in antioxidant properties including Trolox equivalent total antioxidant activity, ferrous reducing power, and free radical scavenging capacity of microwave-treated CWPs was observed. The increase in the studied functional and antioxidant potential of the treated samples may be due microwave-induced exposure of hydroxyl groups and uronic acid residues in CWPs. The data would be a valuable contribution to the literature regarding microwave-induced modification in physical, functional and antioxidant properties of CWPs of N. nucifera rhizome.
机译:用微波辐射处理从Nelumbo Nucifera relizoma粉(NNRF)中提取的碱溶性细胞壁多糖(CWP),以改变其物理特性,功能性和抗氧化剂潜力。使用低介质强度(200W),在不同水平的微波处理时间(1,2,3,4和5分钟)下进行NNRF。分离细胞壁,CWPS在10%KOH溶液中萃取,然后物理,功能和抗氧化剂表征。微波处理导致CWP中的形态学,结构和组成修饰与其功能性质和抗氧化潜力直接相关。显着的(P <0.05)提取物屈服,水持,油保持和溶胀容量的指数增加,铁结合能力的多项式增加,以及抗氧化性能的线性增加,包括抗氧化剂的抗氧化性能增加观察到微波处理CWP的抗氧化活性,含铁降低功率和自由基清除能力。所研究的样品的研究功能和抗氧化剂电位的增加可能是CWPS中的微波诱导的羟基暴露的羟基和尿酸残基暴露。数据对于对Nucifera根茎CWPS的物理,功能和抗氧化性能的微波诱导的微波诱导的改性的有价值贡献。

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