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源于SR41的胞外聚合物功能化纳米硒:表征、单糖分析及自由基清除能力

Exopolymer-Functionalized Nanoselenium from SR41: Characterization, Monosaccharide Analysis and Free Radical Scavenging Ability.

作者信息

Wang Fengqin, Du Man, Kai Lixia, Du Shuai, Hu Weilian, Wang Yizhen, Cheng Yuanzhi

机构信息

Key Laboratory of Animal Nutrition and Feed Science (Eastern of China), Ministry of Agriculture and Rural Affairs, Hangzhou 310058, China.

Key Laboratory of Animal Feed and Nutrition of Zhejiang Province, Hangzhou 310058, China.

出版信息

Polymers (Basel). 2022 Aug 27;14(17):3523. doi: 10.3390/polym14173523.

Abstract

To provide a safe and effective supplement of the essential trace element selenium, we focused on the biosynthesis of nanoselenium (SeNPs) via probiotics. A novel kind of exopolymer-functionalized nanoselenium (SeEPS), whose average size was 67.0 ± 0.6 nm, was produced by SR41, whereas the control consisted of exopolymers without selenium (EPS). Chemical composition analysis, Fourier transform infrared (FTIR) spectroscopy and high-performance liquid chromatography (HPLC) confirmed that SeEPS and EPS shared similar polysaccharide characteristic groups, such as COO- and C=O, and contained not only 45.2-45.4% of sugars but also 23.5-24.7% of proteins and some lipids. Both SeEPS and EPS were primarily composed of mannose, amino glucose, ribose, glucose and galactose. Furthermore, to identify the biologically active component of SeEPS, three kinds of selenium particles with different stabilizers [Se(0), bovine serum albumin-Se and EPS-Se] were synthesized chemically, and their ability to scavenge free radicals in vitro was compared with that of SeEPS and EPS. The results revealed that EPS itself exhibited weak superoxide and hydroxyl radical scavenging abilities. Nevertheless, SeEPS had superior antioxidant properties compared to all other products, possibly due to the specific structure of SeNPs and exopolymers. Our results suggested that exopolymer-functionalized SeNPs with specific monosaccharide composition and structure could eventually find a potential application as an antioxidant.

摘要

为了提供一种安全有效的必需微量元素硒补充剂,我们专注于通过益生菌生物合成纳米硒(SeNPs)。一种新型的外聚合物功能化纳米硒(SeEPS),其平均粒径为67.0±0.6nm,由SR41产生,而对照组为由不含硒的外聚合物(EPS)组成。化学成分分析、傅里叶变换红外(FTIR)光谱和高效液相色谱(HPLC)证实,SeEPS和EPS具有相似的多糖特征基团,如COO-和C=O,不仅含有45.2-45.4%的糖类,还含有23.5-24.7%的蛋白质和一些脂质。SeEPS和EPS主要由甘露糖、氨基葡萄糖、核糖、葡萄糖和半乳糖组成。此外,为了鉴定SeEPS的生物活性成分,化学合成了三种带有不同稳定剂的硒颗粒[Se(0)、牛血清白蛋白-Se和EPS-Se],并将它们在体外清除自由基的能力与SeEPS和EPS进行了比较。结果表明,EPS本身表现出较弱的超氧化物和羟基自由基清除能力。然而,与所有其他产品相比,SeEPS具有卓越的抗氧化性能,这可能归因于SeNPs和外聚合物的特定结构。我们的结果表明,具有特定单糖组成和结构的外聚合物功能化SeNPs最终可能作为抗氧化剂找到潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a772/9459814/f2411997dc59/polymers-14-03523-g001a.jpg

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