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Naturally Occurring Organohalogen Compounds-A Comprehensive Review. 天然有机卤素化合物综述
Q1 Medicine Pub Date : 2023-01-01 DOI: 10.1007/978-3-031-26629-4_1
Gordon W Gribble

The present volume is the third in a trilogy that documents naturally occurring organohalogen compounds, bringing the total number-from fewer than 25 in 1968-to approximately 8000 compounds to date. Nearly all of these natural products contain chlorine or bromine, with a few containing iodine and, fewer still, fluorine. Produced by ubiquitous marine (algae, sponges, corals, bryozoa, nudibranchs, fungi, bacteria) and terrestrial organisms (plants, fungi, bacteria, insects, higher animals) and universal abiotic processes (volcanos, forest fires, geothermal events), organohalogens pervade the global ecosystem. Newly identified extraterrestrial sources are also documented. In addition to chemical structures, biological activity, biohalogenation, biodegradation, natural function, and future outlook are presented.

本卷是记录天然存在的有机卤素化合物三部曲中的第三卷,使总数量从1968年的不到25种增加到迄今为止的大约8000种化合物。几乎所有这些天然产品都含有氯或溴,少数含有碘,更少含有氟。有机卤素由无处不在的海洋生物(藻类、海绵、珊瑚、苔藓虫、裸鳃、真菌、细菌)和陆生生物(植物、真菌、细菌、昆虫、高等动物)和普遍的非生物过程(火山、森林火灾、地热事件)产生,遍布全球生态系统。新发现的外星来源也被记录在案。除了化学结构外,还介绍了生物活性、生物卤化、生物降解、自然功能和未来前景。
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引用次数: 0
Phytochemical Profiles and Biological Studies of Selected Botanical Dietary Supplements Used in the United States. 在美国使用的植物性膳食补充剂的植物化学概况和生物学研究。
Q1 Medicine Pub Date : 2023-01-01 DOI: 10.1007/978-3-031-26768-0_1
Eric D Salinas-Arellano, Ines Y Castro-Dionicio, Jonathan G Jeyaraj, Nathan P Mirtallo Ezzone, Esperanza J Carcache de Blanco

Based on their current wide bioavailability, botanical dietary supplements have become an important component of the United States healthcare system, although most of these products have limited scientific evidence for their use. The most recent American Botanical Council Market Report estimated for 2020 a 17.3% increase in sales of these products when compared to 2019, for a total sales volume of $11,261 billion. The use of botanical dietary supplements products in the United States is guided by the Dietary Supplement Health and Education Act (DSHEA) from 1994, enacted by the U.S. Congress with the aim of providing more information to consumers and to facilitate access to a larger number of botanical dietary supplements available on the market than previously. Botanical dietary supplements may be formulated for and use only using crude plant samples (e.g., plant parts such as the bark, leaves, or roots) that can be processed by grinding into a dried powder. Plant parts can also be extracted with hot water to form an "herbal tea." Other preparations of botanical dietary supplements include capsules, essential oils, gummies, powders, tablets, and tinctures. Overall, botanical dietary supplements contain bioactive secondary metabolites with diverse chemotypes that typically are found at low concentration levels. These bioactive constituents usually occur in combination with inactive molecules that may induce synergy and potentiation of the effects observed when botanical dietary supplements are taken in their different forms. Most of the botanical dietary supplements available on the U.S. market have been used previously as herbal remedies or as part of traditional medicine systems from around the world. Their prior use in these systems also provides a certain level of assurance in regard to lower toxicity levels. This chapter will focus on the importance and diversity of the chemical features of bioactive secondary metabolites found in botanical dietary supplements that are responsible for their applications. Many of the active principles of botanical dietary substances are phenolics and isoprenoids, but glycosides and some alkaloids are also present. Biological studies on the active constituents of selected botanical dietary supplements will be discussed. Thus, the present chapter should be of interest for both members of the natural products scientific community, who may be performing development studies of the products available, as well as for healthcare professionals who are directly involved in the analysis of botanical interactions and evaluation of the suitability of botanical dietary supplements for human consumption.

基于其目前广泛的生物利用度,植物性膳食补充剂已成为美国医疗保健系统的重要组成部分,尽管大多数这些产品的使用科学证据有限。最新的美国植物委员会市场报告估计,与2019年相比,2020年这些产品的销售额将增长17.3%,总销售额为11261亿美元。在美国,植物性膳食补充剂产品的使用受1994年膳食补充剂健康与教育法(DSHEA)的指导,该法案由美国国会颁布,旨在向消费者提供更多信息,并促进市场上比以前更多数量的植物性膳食补充剂的使用。植物性膳食补充剂可仅为可通过研磨加工成干粉的粗植物样品(例如,植物部分,如树皮、叶子或根)配制并使用。植物部分也可以用热水提取,形成“凉茶”。植物性膳食补充剂的其他制剂包括胶囊、精油、软糖、粉末、片剂和酊剂。总的来说,植物性膳食补充剂含有具有不同化学型的生物活性次级代谢物,通常在低浓度水平下发现。这些生物活性成分通常与非活性分子结合,当植物性膳食补充剂以不同形式服用时,可能会产生协同作用和增强效果。美国市场上的大多数植物性膳食补充剂以前都被用作草药疗法或作为世界各地传统医学系统的一部分。它们在这些系统中的预先使用也提供了关于较低毒性水平的一定程度的保证。本章将着重于植物性膳食补充剂中发现的生物活性次生代谢物的化学特征的重要性和多样性,这是它们应用的原因。许多植物性膳食物质的活性原理是酚类和类异戊二烯,但糖苷和一些生物碱也存在。对选定的植物性膳食补充剂的活性成分的生物学研究将进行讨论。因此,本章应引起天然产品科学界成员的兴趣,他们可能正在对现有产品进行开发研究,也应引起直接参与植物相互作用分析和评估人类食用植物性膳食补充剂适宜性的保健专业人员的兴趣。
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引用次数: 0
Deoxyribonucleic Acid Barcoding for the Identification of Botanicals. 脱氧核糖核酸条形码技术在植物鉴别中的应用。
Q1 Medicine Pub Date : 2023-01-01 DOI: 10.1007/978-3-031-26768-0_4
Natascha Techen, Iffat Parveen, Ikhlas A Khan

The Natural Herbal Products industry uses botanicals or herbs as raw materials for production of herbal products or dietary supplements. Recently, the demand for natural herbal products has increased tremendously and this has led to adulteration and to counterfeit herbal products. The present chapter deals with currently used molecular methods from "simple" single genomic regions to high-throughput whole genome or transcriptome sequencing methods used in the identification of botanicals.

天然草药产品行业使用植物或草药作为生产草药产品或膳食补充剂的原料。最近,对天然草药产品的需求急剧增加,这导致了掺假和假冒草药产品。本章涉及目前使用的分子方法,从“简单”的单基因组区域到高通量的全基因组或转录组测序方法,用于鉴定植物药物。
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引用次数: 0
Modern Photocatalytic Strategies in Natural Product Synthesis. 天然产物合成中的现代光催化策略。
Q1 Medicine Pub Date : 2023-01-01 DOI: 10.1007/978-3-031-11783-1_1
Sara Cuadros, Tommaso Bortolato, Alberto Vega-Peñaloza, Luca Dell'Amico

Modern photocatalysis has proven its generality for the development and functionalization of native functionalities. To date, the field has found broad applications in diverse research areas, including the total synthesis of natural products. This contribution covers recent reports of total syntheses involving as a key step a photocatalytic reaction. Among the selected examples, the photocatalytic processes proceed in a highly chemo-, regio-, and stereoselective manner, thereby allowing the rapid access to structurally complex architectures under light-driven conditions.

现代光催化在天然官能团的开发和功能化方面已经证明了它的通用性。迄今为止,该领域已广泛应用于各种研究领域,包括天然产物的全合成。这篇文章涵盖了最近关于全合成的报道,包括光催化反应的关键步骤。在所选的例子中,光催化过程以高度化学选择性、区域选择性和立体选择性的方式进行,从而允许在光驱动条件下快速获得结构复杂的结构。
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引用次数: 0
Nomenclature: Herbal Taxonomy in the Global Commerce of Botanicals. 命名法:全球植物贸易中的草药分类。
Q1 Medicine Pub Date : 2023-01-01 DOI: 10.1007/978-3-031-26768-0_3
Roy Upton

In the world trade of medicinal plants, the naming of plants is fundamental to understanding which species are acceptable for therapeutic use. There are a variety of nomenclatural systems that are used, inclusive of common names, Latinized binomials, Galenic or pharmaceutical names, and pharmacopeial definitions. Latinized binomials are the primary system used for naming wild plants, but these alone do not adequately define medicinal plant parts. Each system has its specific applications, advantages, and disadvantages. The topic of medicinal plant nomenclature is discussed broadly by underscoring when and how varying nomenclatural systems should be used. It is emphasized that pharmacopeial definitions represent the only naming system that integrates plant identity, relevant plant parts, and the specific quality metrics to which a material must comply, thus affording the most appropriate identification method available for medicinal plant materials.

在世界药用植物贸易中,植物的命名对于了解哪些物种可用于治疗是至关重要的。有各种各样的命名系统被使用,包括通用名称,拉丁化二项式,盖伦或药名,药典定义。拉丁化的二项式名称是野生植物命名的主要系统,但仅凭这些名称并不能充分定义药用植物的部分。每个系统都有其特定的应用、优点和缺点。通过强调何时以及如何使用不同的命名系统,广泛讨论了药用植物命名的主题。强调药典定义代表了唯一的命名系统,它将植物特性、相关植物部分和材料必须遵守的特定质量指标整合在一起,从而为药用植物材料提供了最合适的鉴定方法。
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引用次数: 0
The Chemistry of Agarwood Odorants. 沉香气味剂的化学成分。
Q1 Medicine Pub Date : 2022-01-01 DOI: 10.1007/978-3-030-92030-2_2
N. Baldovini
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引用次数: 1
The Genus Walsura: A Rich Resource of Bioactive Limonoids, Triterpenoids, and Other Types of Compounds. Walsura属:丰富的生物活性柠檬素、三萜和其他类型化合物资源。
Q1 Medicine Pub Date : 2022-01-01 DOI: 10.1007/978-3-030-92030-2_4
N. Son
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引用次数: 2
Antimalarial Natural Products. 抗疟天然产物。
Q1 Medicine Pub Date : 2022-01-01 DOI: 10.1007/978-3-030-89873-1_1
David G I Kingston, Maria Belen Cassera

Natural products have made a crucial and unique contribution to human health, and this is especially true in the case of malaria, where the natural products quinine and artemisinin and their derivatives and analogues, have saved millions of lives. The need for new drugs to treat malaria is still urgent, since the most dangerous malaria parasite, Plasmodium falciparum, has become resistant to quinine and most of its derivatives and is becoming resistant to artemisinin and its derivatives. This volume begins with a short history of malaria and follows this with a summary of its biology. It then traces the fascinating history of the discovery of quinine for malaria treatment and then describes quinine's biosynthesis, its mechanism of action, and its clinical use, concluding with a discussion of synthetic antimalarial agents based on quinine's structure. The volume then covers the discovery of artemisinin and its development as the source of the most effective current antimalarial drug, including summaries of its synthesis and biosynthesis, its mechanism of action, and its clinical use and resistance. A short discussion of other clinically used antimalarial natural products leads to a detailed treatment of other natural products with significant antiplasmodial activity, classified by compound type. Although the search for new antimalarial natural products from Nature's combinatorial library is challenging, it is very likely to yield new antimalarial drugs. The chapter thus ends by identifying over ten natural products with development potential as clinical antimalarial agents.

天然产物对人类健康作出了至关重要和独特的贡献,在防治疟疾方面尤其如此,其中天然产物奎宁和青蒿素及其衍生物和类似物挽救了数百万人的生命。由于最危险的疟疾寄生虫恶性疟原虫已经对奎宁及其大多数衍生物产生耐药性,并且正在对青蒿素及其衍生物产生耐药性,因此仍然迫切需要新的药物来治疗疟疾。本卷以疟疾的简短历史开始,随后是其生物学的总结。然后追溯发现用于治疗疟疾的奎宁的迷人历史,然后描述奎宁的生物合成、作用机制和临床应用,最后讨论基于奎宁结构的合成抗疟疾药物。然后,本卷介绍了青蒿素的发现及其作为当前最有效抗疟药物来源的发展,包括其合成和生物合成、作用机制以及临床使用和耐药性的摘要。通过对其他临床使用的抗疟天然产物的简短讨论,可以对其他具有显著抗疟原虫活性的天然产物进行详细的治疗,并按化合物类型分类。尽管从《自然》的组合文库中寻找新的抗疟天然产物具有挑战性,但很有可能产生新的抗疟药物。因此,本章最后确定了十多种具有开发潜力的天然产物作为临床抗疟药。
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引用次数: 2
Chemical Ecology of the North American Newt Genera Taricha and Notophthalmus. 北美蝾螈属的化学生态学研究。
Q1 Medicine Pub Date : 2022-01-01 DOI: 10.1007/978-3-030-92030-2_3
C. Hanifin, Y. Kudo, M. Yotsu-Yamashita
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引用次数: 2
Correction to: Antimalarial Natural Products. 更正:抗疟天然产品。
Q1 Medicine Pub Date : 2022-01-01 DOI: 10.1007/978-3-030-89873-1_2
David J. I. Kingston, M. Cassera
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引用次数: 0
期刊
Progress in the chemistry of organic natural products
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