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一种来自在盐胁迫条件下培养的极大节旋藻菌株的新型生物活性和功能性胞外多糖。

A novel bioactive and functional exopolysaccharide from the cyanobacterial strain Arthrospira maxima cultivated under salinity stress.

作者信息

Harbaoui Amel, Khelifi Nadia, Aissaoui Neyssene, Muzard Murielle, Martinez Agathe, Smaali Issam

机构信息

Department of Chemical and Biological Engineering, Laboratory of Protein Engineering and Bioactive Molecules (LR11ES24), INSAT, University of Carthage, BP 676, 1080, Tunis Cedex, Tunisia.

University of Carthage, Higher Institute of Marine Sciences of Bizerte, BP 15, Errimel, 7080, Bizerte, Tunisia.

出版信息

Bioprocess Biosyst Eng. 2025 Mar;48(3):445-460. doi: 10.1007/s00449-024-03120-2. Epub 2024 Dec 17.

Abstract

Cyanobacterial exopolysaccharides (EPS) remain released by cyanobacteria in the surrounding environment with the main purpose of protection against harmful environmental conditions. Recently, they have received significant attention due to their unique structural characteristics, functional properties, and potential applications across various fields. The current study describes the evaluation of EPS production under salinity stress from Arthrospira maxima. The application of high salinity up to 40 g/L enhanced EPS production, which was collected and purified by alcohol precipitation followed by membrane dialysis and lyophilization. A yield of 60 mg/L was obtained. The Size exclusion chromatography gave for the purified EPS an apparent molecular weight of 2.1 × 10 Da. Monosaccharide composition showed that EPS is a heteropolymer, with mannose, xylose, and glucuronic acid identified as the predominant monosaccharides and derivatives. Nuclear magnetic resonance spectroscopy (C and H) confirmed that EPS is a heteropolysaccharide, entirely in α- anomeric configuration, with glucuronic acid as a main monomer that is probably linked to mannose and xylose via α-glycosidic linkages. Bioactivity assessment of EPS revealed that it exhibits antibacterial activity against several strains, notably, Bacillus subtilis (MIC: 0.6 ± 0.05 mg/mL), Bacillus cereus (MIC: 1 ± 0.01 mg/mL), Escherichia coli (MIC: 0.8 ± 0.01 mg/mL) and Klebsiella pneumonia (MIC: 0.8 ± 0.01 mg/mL). Antioxidant activity was measured using the DPPH radical scavenging assay, yielding an IC₅₀ of 6.83 mg/mL. Besides, EPS was also found to exhibit an interesting emulsifying property with several oil types, indicating its potential as a versatile biopolymer for applications in various industrial sectors.

摘要

蓝藻胞外多糖(EPS)持续由蓝藻释放到周围环境中,其主要目的是抵御有害环境条件。最近,由于其独特的结构特征、功能特性以及在各个领域的潜在应用,它们受到了极大关注。当前研究描述了极大节旋藻在盐胁迫下EPS产量的评估。高达40 g/L的高盐度应用提高了EPS产量,通过乙醇沉淀收集并纯化,随后进行膜透析和冻干。获得了60 mg/L的产量。尺寸排阻色谱法测得纯化后的EPS表观分子量为2.1×10 Da。单糖组成表明EPS是一种杂聚物,甘露糖、木糖和葡萄糖醛酸被鉴定为主要的单糖及其衍生物。核磁共振光谱(碳谱和氢谱)证实EPS是一种杂多糖,完全处于α-异头构型,葡萄糖醛酸是主要单体,可能通过α-糖苷键与甘露糖和木糖相连。EPS的生物活性评估表明,它对几种菌株具有抗菌活性,特别是枯草芽孢杆菌(MIC:0.6±0.05 mg/mL)、蜡样芽孢杆菌(MIC:1±0.01 mg/mL)、大肠杆菌(MIC:0.8±0.01 mg/mL)和肺炎克雷伯菌(MIC:0.8±0.01 mg/mL)。使用DPPH自由基清除法测定抗氧化活性,IC₅₀为6.83 mg/mL。此外,还发现EPS对几种油类具有有趣的乳化性能,表明其作为一种通用生物聚合物在各个工业领域应用的潜力。

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