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一种来源于小球藻的硫酸化胞外多糖,具有体外抗α-D-葡萄糖苷酶活性。

A sulfated exopolysaccharide derived from Chlorella sp. exhibiting in vitro anti-α-D-Glucosidase activity.

机构信息

Laboratory for the Protection of Ecosystems in Arid and Semi-Arid Zones, FNSV, Kasdi Merbah University, 30000, Ouargla, Algeria.

Division of Process Engineering, College of Science and Technology, Chadli Bendjedid University, 36000, El Tarf, Algeria.

出版信息

Arch Microbiol. 2024 Apr 16;206(5):218. doi: 10.1007/s00203-024-03940-6.

Abstract

There is a great scientific curiosity to discover all environments sheltering microalgae, especially those with exceptional characteristics from coldest to hottest ones, the purpose remains to explore the potential of the native microalgae flora and the research for new bioactive compounds. This study aimed to isolate a polysaccharide-producing microalga from an extreme ecosystem and to evaluate its capacity to inhibit the α-D-glucosidase enzyme. Chlorella strain is isolated from hypersaline Lake in the Algerian desert. The exopolysaccharide extraction was performed by the concentration of free-cell supernatant in a rotary evaporator. The infrared analysis showed a characteristic footprint of carbohydrates with particular functional groups, such as sulfate. Gas chromatography-mass spectrometry has revealed a hetero-exopolysaccharide composed of galactose 35.75%, glucose 21.13%, xylose 16.81%, fructose 6.96%, arabinose 5.10%, and glucuronic acid 2.68%. The evaluation of the anti-hyperglycemic activity demonstrated a significant α-D-glucosidase inhibition of 80.94 ± 0.01% at 10 mg mL with IC equal to 4.31 ± 0.20 mg mL. This study opens a vast prospect to use exopolysaccharides as natural nutraceutical or food additive.

摘要

有一种强烈的科学好奇心,想要发现所有能庇护微藻的环境,特别是那些具有特殊性质的环境,从最冷到最热的环境都有。其目的仍然是探索本土微藻群的潜力和寻找新的生物活性化合物。本研究旨在从极端生态系统中分离出一种产多糖的微藻,并评估其抑制α-D-葡萄糖苷酶的能力。从阿尔及利亚沙漠的高盐湖中分离出小球藻菌株。通过在旋转蒸发器中浓缩游离细胞上清液来提取胞外多糖。红外分析显示出具有特殊功能基团(如硫酸盐)的碳水化合物的特征足迹。气相色谱-质谱联用仪揭示了一种杂合胞外多糖,由 35.75%的半乳糖、21.13%的葡萄糖、16.81%的木糖、6.96%的果糖、5.10%的阿拉伯糖和 2.68%的葡萄糖醛酸组成。对降血糖活性的评价表明,在 10mg/mL 时,对α-D-葡萄糖苷酶的抑制率高达 80.94±0.01%,IC 为 4.31±0.20mg/mL。这项研究为将胞外多糖用作天然营养保健品或食品添加剂开辟了广阔的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c31a/11021272/59aeb000dd26/203_2024_3940_Fig1_HTML.jpg

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