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从苏木茎皮中分离得到的抗凝和抗血栓多糖的结构特征。

Structural characterization of anticoagulant and antithrombotic polysaccharides isolated from Caesalpinia ferrea stem barks.

机构信息

Instituto Superior de Ciências Biomédicas, Universidade Estadual do Ceará, Av. Dr. Silas Munguba 1700, 60740-000 Fortaleza, CE, Brazil.

Departamento de Química, Universidade Federal do Ceará, Campus do Pici, Bloco 935, 60455-760, Fortaleza, CE, Brazil.

出版信息

Int J Biol Macromol. 2021 Apr 1;175:147-155. doi: 10.1016/j.ijbiomac.2021.01.177. Epub 2021 Jan 30.

Abstract

This study aimed to isolate, characterize chemical-structurally and evaluate the effects of polysaccharides from Caesalpinia (Libidibia) ferrea stem barks in the haemostatic system. The deproteinated-polysaccharide extract (PE-Cf) after being fractionated by ion exchange chromatography-DEAE-cellulose resulted in three fractions (FI, FII, FIII) containing total carbohydrates (14.3-38%), including uronic acid (5-16%), and polyphenols (0.94-1.7 mg/g GAE). The polysaccharide fractions presented polydisperse profile in polyacrylamide gel electrophoresis (detected by Stains-All) and molecular masses (9.5 × 10 Da-1.5 × 10 Da) identified by gel permeation chromatography. FT-IR showed absorption bands (1630 cm, 1396-1331 cm), indicative of uronic acid, and a band at 1071 cm, typical of COO groups of galacturonic acid. The NMR spectra of C. ferrea polysaccharides revealed a central core composed mainly by 5-linked α-Araf and minority components as α-Rhap and α-GalAp. UV spectra of fractions revealed discrete shoulders at 269-275 nm, characteristic of polyphenolic compounds. In vitro, polysaccharides inhibited the intrinsic and/or common coagulation pathway (aPTT test) (2.0-3.7 fold) and the platelet aggregation induced by 3 μM adenosine diphosphate (25-48%) and 5 μg/mL collagen (24%), but not that induced by arachidonic acid. In vivo, the polysaccharides inhibited (36-69%) venous thrombosis induced by hypercoagulability and stasis, showing discrete hemorrhagic effect. In conclusion, the polysaccharides of C. ferrea barks, containing arabinose, galactose, rhamnose and uronic acid, possess anticoagulant, antiplatelet and antithrombotic properties of low hemorrhagic risk, suggesting potential applicability in thromboembolic disorders.

摘要

本研究旨在从栗豆树(Caesalpinia(Libidibia)ferrea)茎皮中分离、鉴定化学结构,并评估多糖在止血系统中的作用。经离子交换层析-DEAE 纤维素分级后,脱蛋白多糖提取物(PE-Cf)得到三个包含总碳水化合物(14.3-38%)的多糖级分(FI、FII、FIII),其中包括戊糖(5-16%)和多酚(0.94-1.7 mg/g GAE)。多糖级分在聚丙烯酰胺凝胶电泳(Stains-All 检测)中呈现出多分散性图谱,用凝胶渗透色谱法确定分子量(9.5×10 Da-1.5×10 Da)。FT-IR 显示出戊糖的特征吸收带(1630 cm、1396-1331 cm),以及半乳糖醛酸的 COO 基团的特征吸收带(1071 cm)。栗豆树多糖的 NMR 光谱显示,其核心主要由 5-连接的α-Araf 组成,还有少量的α-Rhap 和α-GalAp。级分的紫外光谱在 269-275 nm 处显示出离散的肩峰,表明存在多酚化合物。体外实验中,多糖抑制内源性和/或共同凝血途径(APTT 试验)(2.0-3.7 倍)以及 3 μM 二磷酸腺苷(25-48%)和 5 μg/mL 胶原蛋白(24%)诱导的血小板聚集,但不抑制由花生四烯酸诱导的血小板聚集。体内实验中,多糖抑制由高凝和停滞引起的静脉血栓形成(36-69%),同时具有轻微的出血作用。综上所述,栗豆树树皮中的多糖含有阿拉伯糖、半乳糖、鼠李糖和戊糖,具有抗凝、抗血小板和抗血栓形成作用,且出血风险低,提示其在血栓栓塞性疾病中具有潜在的应用价值。

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