Exploring the Structure-Activity Relationship of Safflower Polysaccharides: From the Structural Characteristics to Biological Function and Therapeutic Applications.

IF 4.8 2区 医学 Q1 CHEMISTRY, MEDICINAL Journal of ethnopharmacology Pub Date : 2024-11-20 DOI:10.1016/j.jep.2024.119131
Jia-Xin Li, Ding-Qiao Xu, Dong-Xiao Cui, Rui-Jia Fu, Ze-Chen Niu, Wen-Juan Liu, Yu-Ping Tang
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Abstract

Ethnopharmacological relevance: Safflower, the florets of Carthamus tinctorius L., is a widely used traditional Chinese medicine for promoting circulation and improving dysmenorrhea. Polysaccharides is one of the principal water-soluble components in Safflower, which recently endowed with a variety of biological activities, thus making them have important research significance in the field of ethnopharmacology.

Aim of the study: This review summarized the latest research progress on the preparation technology, structural characteristics, and pharmacological effects of Safflower polysaccharides. Moreover, by comparing the structural characteristic of Safflower polysaccharides, the potential structure-activity relationship of Safflower polysaccharides was also discussed.

Materials and methods: This article used keywords including Safflower polysaccharide, Carthamus tinctorius L polysaccharide, Safflower polysaccharide extraction and separation, Safflower polysaccharide structure, and Safflower polysaccharide anti-tumor effects to search for all relevant literature in PubMed, Web of Science, Google Scholar, ScienceDirect, CNKI and other databases from the establishment of the database to July 2024.

Results: Summarizing current research findings, seventeen homogeneous Safflower polysaccharides have been obtained. Their structural characteristics, including molecular weights, monosaccharide composition, sugar residue types, glycosidic bond configuration, and the linkage sequence, were initially researched. In terms of pharmacological activity, Safflower polysaccharides exhibit a wide range of biological activities, including immune regulation, anti-tumor effects, and antioxidant properties. Furthermore, the structural characteristics of Safflower polysaccharides significantly influence its biological activities, encompassing factors such as molecular weight, monosaccharide composition, and degree of branching.

Conclusion: Safflower polysaccharides have seen significant advancements in recent years regarding preparation methods, structural characterization, and pharmacological studies. These achievements would provide a theoretical basis for the application of Safflower polysaccharide in the field of ethnopharmacology. While Safflower polysaccharides exhibit diverse biological activities and significant potential for development and utilization, further in-depth research is needed to enhance our understanding of their mechanisms of action and optimize their clinical applications.

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探索红花多糖的结构-活性关系:从结构特征到生物功能和治疗应用。
民族药理学意义:红花(Carthamus tinctorius L.的小花)是一种广泛使用的传统中药,具有促进血液循环和改善痛经的作用。多糖是红花中的主要水溶性成分之一,具有多种生物活性,因此在民族药理学领域具有重要的研究意义:本综述总结了红花多糖的制备技术、结构特征和药理作用等方面的最新研究进展。研究目的:综述了红花多糖制备技术、结构特征、药理作用等方面的最新研究进展,并通过比较红花多糖的结构特征,探讨了红花多糖潜在的结构-活性关系:本文以红花多糖、荠菜多糖、红花多糖提取分离、红花多糖结构、红花多糖抗肿瘤作用等为关键词,在PubMed、Web of Science、Google Scholar、ScienceDirect、CNKI等数据库中检索了自数据库建立至2024年7月的所有相关文献:结果:综合目前的研究成果,共获得 17 种均相红花多糖。初步研究了它们的结构特征,包括分子量、单糖组成、糖残基类型、糖苷键构型和连接序列。在药理活性方面,红花多糖具有广泛的生物活性,包括免疫调节、抗肿瘤作用和抗氧化性。此外,红花多糖的结构特征对其生物活性有显著影响,包括分子量、单糖组成和分支程度等因素:近年来,红花多糖在制备方法、结构表征和药理研究方面取得了重大进展。这些成果为红花多糖在民族药理学领域的应用提供了理论依据。红花多糖具有多种生物活性,具有巨大的开发和利用潜力,但还需要进一步深入研究,以加深对其作用机制的了解,优化其临床应用。
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来源期刊
Journal of ethnopharmacology
Journal of ethnopharmacology 医学-全科医学与补充医学
CiteScore
10.30
自引率
5.60%
发文量
967
审稿时长
77 days
期刊介绍: The Journal of Ethnopharmacology is dedicated to the exchange of information and understandings about people''s use of plants, fungi, animals, microorganisms and minerals and their biological and pharmacological effects based on the principles established through international conventions. Early people confronted with illness and disease, discovered a wealth of useful therapeutic agents in the plant and animal kingdoms. The empirical knowledge of these medicinal substances and their toxic potential was passed on by oral tradition and sometimes recorded in herbals and other texts on materia medica. Many valuable drugs of today (e.g., atropine, ephedrine, tubocurarine, digoxin, reserpine) came into use through the study of indigenous remedies. Chemists continue to use plant-derived drugs (e.g., morphine, taxol, physostigmine, quinidine, emetine) as prototypes in their attempts to develop more effective and less toxic medicinals.
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