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Review: Prospects for the Use of Extracts and Polysaccharides from Marine Algae to Prevent and Treat the Diseases Caused by Helicobacter Pylori

机译:评论:使用海藻提取物和多糖预防和治疗幽门螺杆菌引起的疾病的前景

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Helicobacter pylori possesses a broad spectrum of pathogenic factors that allow it to survive and colonize the gastric mucosa, and thus, the pathogenetic targets, which have the same diversity, require search for and the development of alternative, effective, and innocuous means for the eradication of H.pylori. In recent years, fucoidanshave been extensively studied due to the numerous interesting biological activities, including the anti-adhesive, anti-oxidative, antitoxic, immunomodulatory, anticoagulant, and anti-infection effects. This review summarizes thedata on the effects of extracts and sulfated polysaccharides of marine algae, mainly fucoidans, on pathogenic targets in Helicobacter infection. The pathogenetic targets for therapeutic agents after H.pylori infection, such as flagellas, urease, and other enzymes, including adhesins, cytotoxin A (VacA), phospholipase, and L-8, are characterized here. The main target for the sulfated polysaccharides of seaweed is cell receptors of the gastric mucosa. This review presents the published data about the pleiotropic anti-inflammatory effects of polysaccharides on the gastric mucosa. It is known that fucoidan and other sulfated polysaccharides from algae have anti-ulcer effects, prevent the adhesion of H.pylori to, and reduce the formation of biofilm. The authors speculate that the effect of sulfated polysaccharides on the infectious process caused by H.pylori is related to their action on innate and adaptive immunity cells, and also anti-oxidant and antitoxic potential. Presented in the review are materials indicated for the study of extracts and sulfated polysaccharides from seaweed during H.pylori infection, as these compounds are characterized by multimodality actions. Based on the analysis of literary materials in recent years, the authors concluded that fucoidan can be attributed to the generation of new candidates to create drugs intended for the inclusion in the scheme of eradication therapy of H.pylori infection.
机译:幽门螺杆菌具有广泛的致病因素,可使其存活并在胃粘膜上定殖,因此,具有相同多样性的致病靶标需要寻找并开发出替代性,有效且无害的方法来进行根除幽门螺杆菌近年来,由于许多有趣的生物学活性,包括抗粘连,抗氧化,抗毒性,免疫调节,抗凝和抗感染作用,对岩藻依聚糖进行了广泛的研究。这篇综述总结了有关海藻提取物和硫酸多糖(主要是岩藻依聚糖)对幽门螺杆菌感染致病靶标的影响的数据。幽门螺杆菌感染后,诸如鞭毛,脲酶和其他酶(包括黏附素,细胞毒素A(VacA),磷脂酶和L-8)等其他酶的致病标靶已在此处表征。海藻硫酸化多糖的主要靶标是胃粘膜的细胞受体。这篇综述提供了有关多糖对胃粘膜多效抗炎作用的公开数据。已知藻类中的岩藻依聚糖和其他硫酸化多糖具有抗溃疡作用,可防止幽门螺杆菌粘附,并减少生物膜的形成。作者推测,硫酸化多糖对幽门螺杆菌引起的感染过程的影响与其对先天性和适应性免疫细胞的作用有关,还与抗氧化和抗毒性潜力有关。这篇综述中介绍的材料是用于研究幽门螺杆菌感染期间海藻的提取物和硫酸化多糖的材料,因为这些化合物具有多峰作用。根据对近年来文学资料的分析,作者得出结论,岩藻依聚糖可以归功于产生新候选物来开发旨在纳入幽门螺杆菌感染根除计划的药物。

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