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双孢蘑菇杂多糖的化学硫酸化优化、结构表征及抗凝血活性研究。

Optimization of chemical sulfation, structural characterization and anticoagulant activity of Agaricus bisporus fucogalactan.

机构信息

Department of Biochemistry and Molecular Biology, Federal University of Paraná, CP 19046, CEP 81531-980, Curitiba, Paraná, Brazil.

Department of Biochemistry and Molecular Biology, Federal University of Paraná, CP 19046, CEP 81531-980, Curitiba, Paraná, Brazil.

出版信息

Carbohydr Polym. 2016 Aug 1;146:345-52. doi: 10.1016/j.carbpol.2016.03.061. Epub 2016 Mar 22.

Abstract

A fucogalactan (E) was isolated from aqueous extract of Agaricus bisporus. The monosaccharide composition, methylation, and NMR analyses showed it is constituted by a (1→6)-linked α-d-Galp main-chain, partially methylated at O-3, and partially substituted at O-2 by non-reducing end-units of α-l-Fucp or α-d-Galp. HPSEC analysis showed it had Mw of 1.28×10(4)gmol(-1). The polysaccharide was sulfated modifying reaction time, molar ratio of sulfation agent to hydroxyl group on the polysaccharide (ηClSO3H/OH ratio), and ratio of total reaction volume to weight of sample (VT/w ratio; μLmg(-1)). The degree of substitution (DS) was evaluated for all sulfated derivatives. The sulfated fucogalactan with the highest DS value (2.83) had the best anticoagulant activity on Activated Partial Thromboplastin Time (APTT) and Protrombin Time (PT) assays. This sulfated fucogalactan, named E100, was obtained with the optimal conditions of ηClSO3H/OH ratio of 18, VT/w ratio of 100, in 6h of reaction. The results showed that E100 produces a linear increment of APTT for concentrations of 15-45μgmL(-1), whereas PT was almost constant between 20 and 400μgmL(-1), suggesting an anticoagulant activity via inhibition of the intrinsic pathway of blood coagulation. NMR and methylation analyses showed that α-d-Galp units of the main chain were greatly sulfated on 2-O-, 3-O-, and 4-O-positions.

摘要

一种岩藻半乳聚糖(E)从双孢蘑菇的水提物中分离得到。单糖组成、甲基化和 NMR 分析表明,它由(1→6)-连接的α-d-Galp 主链组成,在 O-3 位部分甲基化,在 O-2 位由非还原端单元α-l-Fucp 或α-d-Galp 部分取代。HPSEC 分析表明其分子量为 1.28×10(4)gmol(-1)。多糖进行硫酸化修饰,反应时间、硫酸化试剂与多糖羟基摩尔比(ηClSO3H/OH 比)和总反应体积与样品重量比(VT/w 比;μLmg(-1))对取代度(DS)有影响。所有硫酸化衍生物的 DS 值都进行了评估。具有最高 DS 值(2.83)的硫酸化岩藻半乳聚糖在活化部分凝血活酶时间(APTT)和凝血酶原时间(PT)测定中具有最佳的抗凝活性。这种硫酸化岩藻半乳聚糖,命名为 E100,是在 ηClSO3H/OH 比为 18、VT/w 比为 100、反应 6 小时的最佳条件下得到的。结果表明,E100 在 15-45μgmL(-1)浓度范围内使 APTT 呈线性增加,而 PT 在 20-400μgmL(-1)之间几乎保持不变,表明其抗凝活性通过抑制血液凝固的内在途径。NMR 和甲基化分析表明,主链的α-d-Galp 单元在 2-O-、3-O-和 4-O-位上被高度硫酸化。

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