Thöle Christian, Brandt Simone, Ahmed Niyaz, Hensel Andreas
Institute of Pharmaceutical Biology and Phytochemistry, University of Münster, Münster 48149, Germany.
Pathogen Biology Laboratory, Department of Biotechnology and Bioinformatics, University of Hyderabad, Hyderabad, Telangana 500046, India.
Molecules. 2015 Sep 15;20(9):16770-87. doi: 10.3390/molecules200916770.
Polysaccharide containing extracts from immature fruits of okra (Abelmoschus esculentus) are known to exhibit antiadhesive effects against bacterial adhesion of Helicobacter pylori (H. pylori) to stomach tissue. The present study investigates structural and functional features of polymers responsible for this inhibition of bacterial attachment to host cells. Ammonium sulfate precipitation of an aqueous extract yielded two fractions at 60% and 90% saturation with significant antiadhesive effects against H. pylori, strain J99, (FE60% 68% ± 15%; FE90% 75% ± 11% inhibition rates) after preincubation of the bacteria at 1 mg/mL. Sequential extraction of okra fruits yielded hot buffer soluble solids (HBSS) with dose dependent antiadhesive effects against strain J99 and three clinical isolates. Preincubation of H. pylori with HBSS (1 mg/mL) led to reduced binding to 3'-sialyl lactose, sialylated Le(a) and Le(x). A reduction of bacterial binding to ligands complementary to BabA and SabA was observed when bacteria were pretreated with FE90%. Structural analysis of the antiadhesive polysaccharides (molecular weight, monomer composition, linkage analysis, stereochemistry, and acetylation) indicated the presence of acetylated rhamnogalacturonan-I polymers, decorated with short galactose side chains. Deacetylation of HBSS and FE90% resulted in loss of the antiadhesive activity, indicating esterification being a prerequisite for antiadhesive activity.
已知秋葵(黄秋葵)未成熟果实中含多糖提取物对幽门螺杆菌(H. pylori)黏附胃组织具有抗黏附作用。本研究调查了负责抑制细菌黏附宿主细胞的聚合物的结构和功能特征。水提取物经硫酸铵沉淀后,在饱和度为60%和90%时得到两个组分,在将细菌于1 mg/mL下预孵育后,对幽门螺杆菌J99菌株具有显著的抗黏附作用(FE60%抑制率为68%±15%;FE90%抑制率为75%±11%)。对秋葵果实进行连续提取得到热缓冲液可溶性固体(HBSS),其对J99菌株和三株临床分离株具有剂量依赖性抗黏附作用。幽门螺杆菌与HBSS(1 mg/mL)预孵育导致其与3'-唾液酸乳糖、唾液酸化Le(a)和Le(x)的结合减少。当用FE90%预处理细菌时,观察到细菌与与BabA和SabA互补的配体的结合减少。对具有抗黏附作用的多糖进行结构分析(分子量、单体组成、连接分析、立体化学和乙酰化)表明存在乙酰化的鼠李半乳糖醛酸聚糖-I聚合物,其带有短的半乳糖侧链。HBSS和FE90%的脱乙酰化导致抗黏附活性丧失,表明酯化是抗黏附活性的先决条件。