Structural characterization

结构表征
  • 文章类型: Journal Article
    莲花(Nelumbonucifera),属于Nelumbonaceae科,是一种美丽的水生多年生植物。几千年来,它一直被用作古老的园艺植物和著名的农作物。现代植物化学和药理实验证明,多糖是荷花中最关键的生物活性成分之一。因此,对核子多糖(NNPs)的基础研究进展和发展前景进行系统综述,为其进一步研究和应用提供理论依据。本文综述了近年来荷花多糖的研究进展,它专注于先进的提取和纯化方法,独特的结构特征,从事生物活动,潜在的分子机制,以及NNPs的结构和活性关系。这篇综述揭示了NNPs在食品工业中提供功能生物活性剂或用于医疗保健的治疗有效药物方面的潜在价值。此外,这篇综述将为未来基础研究社区和食品或制药行业中NNPs的进一步商业产品开发和有前途的工业应用提供有价值的见解。
    Lotus (Nelumbo nucifera), belonging to the family of Nelumbonaceae, is a beautiful aquatic perennial plant. It has been used as an ancient horticulture plant and famous agricultural crop for thousands of years. Modern phytochemical and pharmacological experiments have proved that polysaccharide is one of the most pivotal bioactive constituents of lotus. Hence, the systematic review covering the fundamental research advances and developing prospects of N. nucifera polysaccharides (NNPs) is an urgent demand to provide theoretical basis for their further research and application. The present review summarizes current emerging research progresses on the polysaccharides isolated from lotus, and it focuses on advanced extraction and purification methods, unique structural features, engaging biological activities, potential molecular mechanisms, as well as the relationship of structure and activity of NNPs. This review sheds light on the potential values of NNPs in affording functionally bioactive agents in food industry or therapeutically effective medicines for health care. In addition, this review will provide valuable insights for further commercial product development and promising industrial application of NNPs in both of the fundamental research communities and food or pharmaceutical industries in future.
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  • 文章类型: Journal Article
    肉桂Y.C.Ma(CD),主要分布在中国地区(新疆,内蒙古,甘肃),蒙古,伊朗和印度。肉笋多糖(CDPs),作为CD的主要成分之一和至关重要的生物活性物质,具有多种药理活性,包括免疫调节,抗衰老,抗氧化剂,保肝,抗骨质疏松,抗炎,肠道菌群调节作用。在过去的三十年中,已经从CD成功地获得了许多多糖。然而,目前尚无有关CDP的全面审查。考虑到CDP对生物研究和药物发现的重要性,本综述旨在系统总结近年来国内外关于CD多糖提取纯化方法的主要研究,以及它们的化学结构的表征,生物活性,构效关系,以及CDPs在制药领域的应用。同时,进一步详细讨论了CDP研究的不足,并提出了未来CDP作为治疗剂和功能性食品研究的新的有价值的见解。
    Cistanche deserticola Y. C. Ma (CD), is mainly distributed in the regions of China (Xinjiang, Inner Mongolia, Gansu), Mongolia, Iran and India. Cistanche deserticola polysaccharide (CDPs), as one of the main components and a crucial bioactive substance of CD, has a variety of pharmacological activities, including immunomodulatory, anti-aging, anti-oxidant, hepatoprotective, anti-osteoporotic, anti-inflammatory, intestinal flora regulatory effects. Many polysaccharides have been successfully obtained in the last three decades from CD. However, there is currently no comprehensive review available concerning CDPs. Considering the importance of CDPs for biological study and drug discovery, the present review aims to systematically summarize the recent major studies on extraction and purification methods of polysaccharides from CD, as well as the characterization of their chemical structure, biological activity, structure-activity relationship, and the application of CDPs in pharmaceutical field. Meanwhile, the shortcomings of CDPs research are further discussed in detail, and new valuable insights for future CDPs research as therapeutic agents and functional foods are proposed.
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  • 文章类型: Journal Article
    天然多糖具有广泛的生物活性,它们的结构特征密切相关,包括它们的分子量分布,尺寸,单糖组成,糖苷键类型和空间构象,等。尺寸排阻色谱(SEC)和不对称流场-流动分馏(AF4),作为两种有效的分离技术,两者都有持续发展和提高的潜力。该手稿回顾了SEC和AF4的基本原理和分离应用。多糖的结构信息和空间构象可以使用与多个检测器偶联的SEC或AF4获得。此外,本手稿详细阐述了通过SEC分离的多糖等样品的剪切降解。此外,还讨论了两种方法在应用过程中出现的异常洗脱。SEC和AF4都具有持续开发和完善的巨大潜力,从而为多糖分离和表征提供增加的可能性和机会。
    Natural polysaccharides exhibit a wide range of biological activities, which are closely related to their structural characteristics, including their molecular weight distribution, size, monosaccharide composition, glycosidic bond types and spatial conformation, etc. Size exclusion chromatography (SEC) and asymmetrical flow field-flow fractionation (AF4), as two potent separation techniques, both harbor potential for continuous development and enhancement. This manuscript reviewed the fundamental principles and separation applications of SEC and AF4. The structural information and spatial conformation of polysaccharides can be obtained using SEC or AF4 coupled with multiple detectors. In addition, this manuscript elaborates in detail on the shear degradation of samples such as polysaccharides separated by SEC. In addition, the abnormal elution that occurs during the application of the two methods is also discussed. Both SEC and AF4 possess considerable potential for ongoing development and refinement, thereby offering increased possibilities and opportunities for polysaccharide separation and characterization.
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  • 文章类型: Journal Article
    茶多糖(TPS)因其具有多种生物活性而备受关注,优异的生物相容性和良好的生物降解性,在食品和制药行业创造了广泛的潜在应用。然而,TPS组分的高分子量和复杂性限制了其纯化和生物活性,限制其潜在的应用。在这次审查中,各种提取方法的影响,茶叶加工,和发酵程度对TPS的组成和结构进行了深入研究,以克服这一困境。通过对体内外研究的综合分析,详细讨论了TPS的健康益处,包括抗氧化剂,抗肥胖,肠道微生物群落的调节,和抗癌生物活性。总结了TPS的典型结构表征技术,并深入讨论了与常见食物成分的相互作用,为TPS的整体知识提供更深入的视角。最后,这篇综述对TPS的广泛应用进行了广泛的概述,包括其强大的乳化特性和生物可达性,在食品营养等各个领域,药物输送,封装膜,和乳化剂。本文旨在为TPS的生产利用的深入发展提供理论依据。
    Tea polysaccharides (TPS) have attracted much attention due to their multiple biological activities, excellent biocompatibility and good biodegradability, creating a wide range of potential applications in the food and pharmaceutical industries. However, the high molecular weight and complexity of TPS components have restricted its purification and bioactivity, limiting its potential applications. In this review, the effects of various extraction methods, tea processing, and degree of fermentation on the composition and structure of TPS were thoroughly investigated to overcome this dilemma. Through a comprehensive analysis of in vivo and in vitro studies, the health benefits of TPS are discussed in detail, including antioxidant, anti-obesity, modulation of gut microbial communities, and anticancer bioactivities. Typical structural characterization techniques of TPS are also summarized, and interactions with common food components are discussed in depth, providing a deeper perspective on the overall knowledge of TPS. Finally, this review offers an extensive overview of the wide range of applications of TPS, including its strong emulsifying properties and bio-accessibility, in various fields such as food nutrition, drug delivery, encapsulation films, and emulsifiers. This review aims to provide a theoretical basis for the profound development of TPS for productive utilization.
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  • 文章类型: Journal Article
    五味子(SC),木兰科的一种植物,俗称“北五味子”,自古以来,因其药用价值高,被列为《神农本草经》中的高档中药。来自南芥果实(SCP)的多糖是SC中的活性成分,具有各种生物活性,包括免疫调节,抗肿瘤,抗氧化剂,肝脏保护,抗炎和降血糖活性。研究表明,SCP的提取方法包括热水提取,水提取和酒精沉淀,超声波辅助,微波辅助等。不同的提取方法会影响多糖的得率和纯度,并提高SCP的提取率,两种或多种提取方法可以组合。SCP主要由葡萄糖组成,甘露糖,鼠李糖,半乳糖,半乳糖醛酸和阿拉伯糖。本文旨在对其提取分离方法的研究进展进行系统综述,结构表征,以及近年来国内外SCP的生物活性。深入探讨了SCP的药理活性和作用机制,为SC的研究和临床应用提供了一定的参考。
    Schisandra chinensis (SC), a plant of the Magnoliaceae family, commonly known as \"North Schisandra chinensis\", has been listed as a top-grade Chinese medicine in the Shennong Materia Medica Classic for its high medicinal value since ancient times. Polysaccharides from S. chinensis fruits (SCPs) are an active component in SC, which have various biological activity, including immune regulation, anti-tumor, antioxidant, liver protective, anti-inflammatory and hypoglycemic activity. Research has shown that the extraction methods of SCPs include hot water extraction, water extraction and alcohol precipitation, ultrasonic-assisted, microwave-assisted and so on. Different extraction methods can affect the yield and purity of polysaccharides, and to improve the extraction yield of SCPs, two or more extraction methods can be combined. SCPs are mainly composed of glucose, mannose, rhamnose, galactose, galacturonic acid and arabinose. This article aims to provide a systematic review of the research progress in the extraction and separation methods, structural characterization, and biological activity of SCPs both domestically and internationally in recent years. This deeply explores the pharmacological activity and action mechanism of SCPs, and provides a certain point of reference for the research and clinical application of SC.
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  • 文章类型: Systematic Review
    背景:巴林达在中医(TCM)中如何称为“八吉天”,它属于茜草属,在中国和其他东亚国家广泛用于药用。巴林天多糖(MOPs)是关键的生物活性成分之一,具有多种生物活性,如抗氧化,抗疲劳,增强免疫力,抗骨质疏松,ect.
    目的:这篇综述旨在提供最新制备技术的全面信息,结构表征,和药理作用的MOPs。对MOP的结构和临床药理学进行了更深入的研究。为进一步研究MOPs的药理活性和指导临床安全用药奠定了基础。
    方法:WebofScience,PubMed,Scifinder,谷歌学者,CNKI,万方数据库,和其他在线数据库用于搜索和收集有关提取和分离方法的文献,结构表征,2004年至2023年MOPs出版商的药理活性。关键词是“巴林达多糖”,\"提取\",\"隔离\",“净化”和“药理作用”。
    结果:巴林天自古以来就被广泛用于补肾阳,并以治疗抑郁症而闻名的中国“四大南方药物”之一,骨质疏松,类风湿性关节炎,不孕症,疲劳和老年痴呆症。已研究用于治疗抑郁症和骨质疏松症的巴林达的活性成分大多是多糖和寡糖。多糖的含量随提取方法的不同而不同,分离和纯化。MOPs具有广泛的药理作用,包括抗氧化剂,抗疲劳,免疫调节,抗骨质疏松,和精子发生活动的调节。这些药理特性为氧化应激的治疗奠定了基础,骨质疏松,生精功能障碍,免疫缺陷,炎症和其他疾病与MOP。
    结论:目前,MOP已应用于骨骼肌萎缩的治疗,精索静脉曲张,骨质疏松,由于其增强免疫力的作用,改善生殖和抗氧化。然而,这些效应的构效关系尚不清楚。未来可以对MOP进行更深入的研究。毒理学和临床药理学,以及MOP的作用机制也需要深入研究和澄清。本文为MOP在多功能食品和药物中的应用和安全性奠定了基础。
    BACKGROUND: Morinda officinalis How is called \"Ba-Ji-Tian\" in Traditional Chinese Medicine (TCM), which belongs to the genus Rubiaceae and is widely used for medicinal purposes in China and other eastern Asian countries. Morinda officinalis How polysaccharides (MOPs) are one of the key bioactive components, and have a variety of biological activities, such as antioxidation, antifatigue, enhanced immunity, antiosteoporosis, ect.
    OBJECTIVE: This review is aimed at providing comprehensive information of the latest preparation technologies, structural characterization, and pharmacological effects of MOPs. A more in-depth research on the structure and clinical pharmacology of the MOPs was explored. It could lay a foundation for further investigate the pharmacological activities and guide the safe clinical practice of MOPs.
    METHODS: The Web of Science, PubMed, Scifinder, Google Scholar, CNKI, Wanfang database, and other online database are used to search and collect the literature on extraction and separation methods, structural characterization, and pharmacological activities of MOPs publisher from 2004 to 2023. The key words are \"Morinda officinalis polysaccharides\", \"extraction\", \"isolation\", \"purification\" and \"pharmacological effects\".
    RESULTS: Morinda officinalis has been widely used in tonifying the kidney yang since ancient times, and is famous for one of the \"Four Southern Medicines\" in China for the treatment of depression, osteoporosis, rheumatoid arthritis, infertility, fatigue and Alzheimer\'s disease. The active ingredients of Morinda officinalis that have been researched on the treatment of depression and osteoporosis are mostly polysaccharides and oligosaccharides. The content of polysaccharides varies with different methods of extraction, separation and purification. MOPs have a wide range of pharmacological effects, including antioxidant, antifatigue, immunomodulatory, antiosteoporosis, and regulation of spermatogenesis activities. These pharmacological properties lay a foundation for the treatment of oxidative stress, osteoporosis, spermatogenic dysfunction, immunodeficiency, inflammation and other diseases with MOPs.
    CONCLUSIONS: At present, MOPs have been applied in the treatment of skeletal muscle atrophy, varicocele, osteoporosis, because of its effects of enhancing immunity, improving reproduction and antioxidant. However, the structure-activity relationship of these effects are still not clear. The more deeply study could be conducted on the MOPs in the future. The toxicology and clinical pharmacology, as well as mechanism of action of MOPs were also needed to deeply studied and clarified. This paper could lay the foundation for the application and safety of MOPs in multifunctional foods and drugs.
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  • 文章类型: Journal Article
    牛杆草根是一种著名的中药,具有很高的药用价值和食品价值。牛杆草根多糖(ALP),作为主要成分和生物活性物质,具有多种生物活性,包括消炎药,抗氧化剂,低血糖,降血脂,抗血栓,免疫调节活性和肠道菌群的改善。多糖的生物活性与其结构密切相关,不同的提取和纯化方法会产生不同的多糖结构。作为一种天然多糖,ALP在药物载体中具有辽阔的运用远景。在本文中,我们综述了提取的研究进展,净化,结构表征,生物活动,ALP的构效关系和药物载体应用,以期为医疗卫生价值的发展和应用提供基础参考。同时,深入讨论了ALP研究的不足,并对其潜在的发展前景和未来的研究方向进行了展望。
    Arctium lappa L. root is a well-known Chinese medicine with high medicinal and food values. Arctium lappa L. root polysaccharide (ALP), as the main component and bioactive substance, has a variety of biological activities, including anti-inflammatory, antioxidant, hypoglycemic, hypolipidemic, antithrombotic, immunomodulatory activity and improvement of intestinal flora. The biological activities of polysaccharides are closely related to their structures, and different extraction and purification methods will yield different polysaccharide structures. As a kind of natural polysaccharide, ALP has a broad application prospect in drug carrier. In this paper, we reviewed the research progress on the extraction, purification, structural characterization, biological activities, structure-activity relationship and drug carrier application of ALP, in order to provide basic reference for the development and application of medical and health care value. At the same time, the shortcomings of ALP research are discussed in depth, and the potential development prospect and future research direction are prospected.
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  • 文章类型: Systematic Review
    海洋低聚糖由于具有多种生理活性而被广泛应用于工业领域。然而,不同聚合度(Dps)的寡糖在生理活性和适用领域上有所不同。因此,分离是有希望和必要的,纯化和结构表征这些寡糖,以了解它们的结构-功能关系。这篇综述将总结分离的持续发展,海洋寡糖的纯化和结构表征,包括藻酸盐寡糖,角叉菜胶寡糖,琼脂寡糖,甲壳素寡糖和壳寡糖,强调分离和纯化方法的成功例子。此外,还包括在食品生物技术和农业领域制备功能性寡糖的前景。该综述无疑可以促进海洋功能性多糖在食品和农业中的利用。
    Marine oligosaccharides have now been applied in a wide range of industry due to various kinds of physiological activities. However, the oligosaccharides with different polymeric degrees (Dps) differed in physiological activities and applicable fields. So it is promising and essential to separate, purify and structurally characterize these oligosaccharides for understanding their structure-function relationship. This review will summarize the lasted developments in the separation, purification and structural characterization of marine oligosaccharides, including the alginate oligosaccharides, carrageenan oligosaccharides, agar oligosaccharides, chitin oligosaccharides and chitosan oligosaccharides, emphasizing the successful examples of methods for separation and purification. Furthermore, an outlook for preparation of functional oligosaccharides in food biotechnology and agriculture fields is also included. This comprehensive review could definitely promote the utilization of marine functional polysaccharides for food and agriculture.
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  • 文章类型: Journal Article
    背景:沙棘(HippophaerhamnoidesL.)是一种在中国历史悠久的可食用水果,是一种药用植物。鼠李糖果实富含多种营养成分和药理活性化合物。作为沙棘中最重要的活性成分之一,多糖由于其抗氧化剂而引起了研究人员的注意,抗疲劳,和肝脏保护特性。
    目的:这篇综述总结了近年来关于提取,净化,沙棘多糖的结构表征和药理活性。此外,讨论了沙棘多糖(SBPS)的结构与活性之间的关系。该综述将为今后沙棘多糖在医药和功能食品领域的深入开发和应用提供重要的研究基础和最新信息。
    方法:通过输入搜索词“沙棘多糖”,相关研究信息来自WebofScience等数据库,谷歌学者,PubMed,中国知网(CNKI),中国硕士学位论文全文数据库,和中国博士学位论文全文数据库。
    结果:SBPS的主要提取方法包括热水提取(HWE),超声波辅助提取(UAE),微波辅助提取(MAE),闪蒸(FE),和乙醇提取。从沙棘果实中分离出20多种多糖。不同提取方法得到的沙棘多糖的化学结构,隔离,纯化方法多种多样。沙棘多糖具有多种药理特性,包括抗氧化剂,抗疲劳,肝脏保护,抗肥胖,调节肠道菌群,免疫调节,抗肿瘤,抗炎,和低血糖活动。
    结论:沙棘具有悠久的药用历史和民族药食特色。多糖是沙棘的主要活性成分之一,他们越来越受到研究人员的关注。沙棘多糖具有显著的药理活性,健康益处,和广阔的应用前景。此外,进一步探索SBPS的化学结构,深入研究其药理活性,识别他们的物质基础,抗病机制的表征,潜在的健康功能仍是未来研究的方向。随着对提取纯化工艺研究的积累,化学结构,药理作用,分子机制,和结构-活动关系,来自自然资源的沙棘多糖最终将为人类健康做出重大贡献。
    BACKGROUND: Sea buckthorn (Hippophae rhamnoides L.) is an edible fruit with a long history in China as a medicinal plant. The fruits of H. rhamnoides are rich in a variety of nutrients and pharmacological active compounds. As one of the most important active ingredients in sea buckthorn, polysaccharides have attracted the attention of researchers due to their antioxidant, anti-fatigue, and liver protective qualities.
    OBJECTIVE: This review summarizes recent studies on extraction, purification, structural characterization and pharmacological activities of polysaccharides from sea buckthorn. In addition, the relationship between the structure and the activities of sea buckthorn polysaccharides (SBPS) were discussed. This review would provide important research bases and up-to-date information for the future in-depth development and application of sea buckthorn polysaccharides in the field of pharmaceuticals and functional foods.
    METHODS: By inputting the search term \"Sea buckthorn polysaccharides\", relevant research information was obtained from databases such as Web of Science, Google Scholar, PubMed, China Knowledge Network (CNKI), China Master Theses Full-text Database, and China Doctoral Dissertations Full-text Database.
    RESULTS: The main extraction methods of SBPS include hot water extraction (HWE), ultrasonic assisted extraction (UAE), microwave-assisted extraction (MAE), flash extraction (FE), and ethanol extraction. More than 20 polysaccharides have been isolated from sea buckthorn fruits. The chemical structures of sea buckthorn polysaccharides obtained by different extraction, isolation, and purification methods are diverse. Polysaccharides from sea buckthorn display a variety of pharmacological properties, including antioxidant, anti-fatigue, liver protection, anti-obesity, regulation of intestinal flora, immunoregulation, anti-tumor, anti-inflammatory, and hypoglycemic activities.
    CONCLUSIONS: Sea buckthorn has a long medicinal history and characteristics of an ethnic medicine and food. Polysaccharides are one of the main active components of sea buckthorn, and they have received increasing attention from researchers. Sea buckthorn polysaccharides have remarkable pharmacological activities, health benefits, and broad application prospects. In addition, further exploration of the chemical structure of SBPS, in-depth study of their pharmacological activities, identification of their material basis, characterization of disease resistance mechanisms, and potential health functions are still directions of future research. With the accumulation of research on the extraction and purification processes, chemical structure, pharmacological effects, molecular mechanisms, and structure-activity relationships, sea buckthorn polysaccharides derived from natural resources will ultimately make significant contributions to human health.
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  • 文章类型: Journal Article
    近年来,植物多糖因其令人印象深刻的生物活性而受到关注。桑叶在我国有着悠久的药用和食用历史,多糖是桑叶的主要活性成分之一,主要由木糖组成,阿拉伯糖,果糖,半乳糖,葡萄糖和甘露糖,等。桑叶多糖(MLPs)的提取方法主要包括热水提取,微波辅助提取,超声波提取,酶辅助提取,和共提取。MLPs的分离和纯化涉及脱色等核心步骤,蛋白质去除,和色谱分离。在药理作用方面,MLPs在降低血糖方面表现出优异的活性,抗氧化,免疫调节,抗肿瘤,抗菌,抗凝,和肠道微生物群的调节。目前,有大量关于MLPs的研究,然而,缺乏系统的总结。本文综述了有关提取的研究进展,结构表征,和MLPs的药理活性,指出了存在的不足,并提出了参考解决方案,旨在为进一步研究和开发MLPs提供依据。
    In recent years, plant polysaccharides have garnered attention for their impressive biological activity. Mulberry leaves have a long history of medicinal and edible use in China, polysaccharide is one of the main active components of mulberry leaves, mainly consist of xylose, arabinose, fructose, galactose, glucose and mannose, etc. The extraction methods of mulberry leaves polysaccharides (MLPs) mainly include hot water extraction, microwave-assisted extraction, ultrasonic extraction, enzyme-assisted extraction, and co-extraction. The separation and purification of MLPs involve core steps such as decolorization, protein removal, and chromatographic separation. In terms of pharmacological effects, MLPs exhibit excellent activity in reducing blood glucose, anti-oxidation, immune regulation, anti-tumor, antibacterial, anti-coagulation, and regulation of gut microbiota. Currently, there is a considerable amount of research on MLPs, however, there is a lack of systematic summarization. This review summarizes the research progress on the extraction, structural characterization, and pharmacological activities of MLPs, and points out existing shortcomings and suggests reference solutions, aiming to provide a basis for further research and development of MLPs.
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