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期刊名称:Natural Product Reports
期刊ISSN:0265-0568
期刊官方网站:http://pubs.rsc.org/en/journals/journalissues/np
出版商:Royal Society of Chemistry (RSC)
出版周期:Monthly
影响因子:15.111
始发年份:1984
年文章数:58
是否OA:否
Correction: Hot off the Press
Natural Product Reports ( IF 15.111 ) Pub Date : 2024-01-03 , DOI: 10.1039/D3NP90056H
Correction for ‘Hot off the Press’ by Robert A. Hill et al., Nat. Prod. Rep., 2023, 40, 1816–1821, http://doi.org/10.1039/d3np90052e.
Back cover
Natural Product Reports ( IF 15.111 ) Pub Date : 2024-01-24 , DOI: 10.1039/D4NP90004A
A graphical abstract is available for this content
Contents list
Natural Product Reports ( IF 15.111 ) Pub Date : 2024-01-24 , DOI: 10.1039/D4NP90003K
The first page of this article is displayed as the abstract.
Simple phenylpropanoids: recent advances in biological activities, biosynthetic pathways, and microbial production†
Natural Product Reports ( IF 15.111 ) Pub Date : 2023-10-09 , DOI: 10.1039/D3NP00012E
Zhanpin Zhu,Ruibing Chen
Covering: 2000 to 2023 Simple phenylpropanoids are a large group of natural products with primary C6–C3 skeletons. They are not only important biomolecules for plant growth but also crucial chemicals for high-value industries, including fragrances, nutraceuticals, biomaterials, and pharmaceuticals. However, with the growing global demand for simple phenylpropanoids, direct plant extraction or chemical synthesis often struggles to meet current needs in terms of yield, titre, cost, and environmental impact. Benefiting from the rapid development of metabolic engineering and synthetic biology, microbial production of natural products from inexpensive and renewable sources provides a feasible solution for sustainable supply. This review outlines the biological activities of simple phenylpropanoids, compares their biosynthetic pathways in different species (plants, bacteria, and fungi), and summarises key research on the microbial production of simple phenylpropanoids over the last decade, with a focus on engineering strategies that seem to hold most potential for further development. Moreover, constructive solutions to the current challenges and future perspectives for industrial production of phenylpropanoids are presented.
Chemistry and bioactivity of lindenane sesquiterpenoids and their oligomers†
Natural Product Reports ( IF 15.111 ) Pub Date : 2023-10-04 , DOI: 10.1039/D3NP00022B
Jun Luo,Danyang Zhang,Pengfei Tang,Nan Wang,Shuai Zhao,Lingyi Kong
Covering: 1925 to July 2023 Among the sesquiterpenoids with rich structural diversity and potential bioactivities, lindenane sesquiterpenoids (LSs) possess a characteristic cis, trans-3,5,6-carbocyclic skeleton and mainly exist as monomers and diverse oligomers in plants from the Lindera genus and Chloranthaceae family. Since the first identification of lindeneol from Lindera strychnifolia in 1925, 354 natural LSs and their oligomers with anti-inflammatory, antitumor, and anti-infective activities have been discovered. Structurally, two-thirds of LSs exist as oligomers with interesting skeletons through diverse polymeric patterns, especially Diels–Alder [4 + 2] cycloaddition. Fascinated by their diverse bioactivities and intriguing polycyclic architectures, synthetic chemists have engaged in the total synthesis of natural LSs in recent decades. In this review, the research achievements related to LSs from 1925 to July of 2023 are systematically and comprehensively summarized, focusing on the classification of their structures, chemical synthesis, and bioactivities, which will be helpful for further research on LSs and their oligomers.
Huperzine alkaloids: forty years of total syntheses
Natural Product Reports ( IF 15.111 ) Pub Date : 2023-10-11 , DOI: 10.1039/D3NP00029J
Lili Song
Covering: up to 2023 Huperzine alkaloids are a group of natural products belonging to the Lycopodium alkaloids family. The representative member huperzine A has a unique structure and exhibits potent inhibitory activity against acetylcholine esterase (AChE). This subfamily of alkaloids provides a great opportunity for developing synthetic methodologies and asymmetric synthesis. The efforts towards the synthesis of huperzine A have cultivated dozens of total syntheses and a rich body of new chemistry. Impressive progress has also been made in the synthesis of other huperzine alkaloids. The total syntheses of huperzines B, U, O, Q and R, structure reassignment and total syntheses of huperzines K, M and N have been reported in the past decade. This review focuses on the synthetic organic chemistry and the biosynthesis and medicinal chemistry of huperzines are also covered briefly.
Natural ten-membered lactones: sources, structural diversity, biological activity, and intriguing future†
Natural Product Reports ( IF 15.111 ) Pub Date : 2023-10-27 , DOI: 10.1039/D3NP00013C
Vsevolod Dubovik,Anna Dalinova,Alexander Berestetskiy
Covering: 2012 to 2022 Ten-membered lactones (TMLs) are an interesting and diverse group of natural polyketides that are abundant in fungi and, to a lesser extent, in bacteria, marine organisms, and insects. TMLs are known for their ability to exhibit a wide spectrum of biological activity, including phytotoxic, cytotoxic, antifungal, antibacterial, and others. However, the random discovery of these compounds by scientific groups with various interests worldwide has resulted in patchy information about their distribution among different organisms and their biological activity. Therefore, despite more than 60 years of research history, there is still no common understanding of the natural sources of TMLs, their structural type classification, and most characteristic biological activities. The controversial nomenclature, incorrect or erroneous structure elucidation, poor identification of producing organisms, and scattered information on the biological activity of compounds – all these factors have led to the problems with dereplication and the directed search for TMLs. This review consists of two parts: the first part (Section 2) covers 104 natural TMLs, published between 2012 and 2022 (after the publishing of the previous review), and the second part (Section 3) summarizes information about 214 TMLs described during 1964–2022 and as a result highlights the main problems and trends in the study of these intriguing natural products.
Front cover
Natural Product Reports ( IF 15.111 ) Pub Date : 2024-01-24 , DOI: 10.1039/D4NP90002B
A graphical abstract is available for this content
Structural insights into the diverse prenylating capabilities of DMATS prenyltransferases
Natural Product Reports ( IF 15.111 ) Pub Date : 2023-11-06 , DOI: 10.1039/D3NP00036B
Evan T. Miller,Oleg V. Tsodikov,Sylvie Garneau-Tsodikova
Covering: 2009 up to August 2023 Prenyltransferases (PTs) are involved in the primary and the secondary metabolism of plants, bacteria, and fungi, and they are key enzymes in the biosynthesis of many clinically relevant natural products (NPs). The continued biochemical and structural characterization of the soluble dimethylallyl tryptophan synthase (DMATS) PTs over the past two decades have revealed the significant promise that these enzymes hold as biocatalysts for the chemoenzymatic synthesis of novel drug leads. This is a comprehensive review of DMATSs describing the structure–function relationships that have shaped the mechanistic underpinnings of these enzymes, as well as the application of this knowledge to the engineering of DMATSs. We summarize the key findings and lessons learned from these studies over the past 14 years (2009–2023). In addition, we identify current gaps in our understanding of these fascinating enzymes.
Contents list
Natural Product Reports ( IF 15.111 ) Pub Date : 2023-09-20 , DOI: 10.1039/D3NP90043F
The first page of this article is displayed as the abstract.
Back cover
Natural Product Reports ( IF 15.111 ) Pub Date : 2023-09-20 , DOI: 10.1039/D3NP90044D
A graphical abstract is available for this content
Hot off the press
Natural Product Reports ( IF 15.111 ) Pub Date : 2023-07-28 , DOI: 10.1039/D3NP90037A
A personal selection of 32 recent papers is presented, covering various aspects of current developments in bioorganic chemistry and novel natural products, such as clavirolide L from Clavularia viridis.
Structural diversity, hypothetical biosynthesis, chemical synthesis, and biological activity of Ganoderma meroterpenoids
Natural Product Reports ( IF 15.111 ) Pub Date : 2023-04-13 , DOI: 10.1039/D3NP00006K
Sybille B. Unsicker,Jonathan Gershenzon
Covering: 2018 to 2022 Meroterpenoids found in fungal species of the genus Ganoderma and known as Ganoderma meroterpenoids (GMs) are substances composed of a 1,2,4-trisubstituted benzene and a polyunsaturated side chain. These substances have attracted the attention of chemists and pharmacologists due to their diverse structures and significant bioactivity. In this review, we present the structures and possible biosynthesis of representative GMs newly found from 2018 to 2022, as well as chemical synthesis and biological activity of some interesting GMs. We propose for the first time a plausible biosynthetic pathway for GMs, which will certainly motivate further research on the biosynthetic pathway in Ganoderma species, as well as on chemical synthesis of GMs as important bioactive compounds for the purpose of drug development.
Contents list
Natural Product Reports ( IF 15.111 ) Pub Date : 2023-07-19 , DOI: 10.1039/D3NP90035E
The first page of this article is displayed as the abstract.
Discovery and development of botanical natural products and their analogues as therapeutics for ovarian cancer
Natural Product Reports ( IF 15.111 ) Pub Date : 2023-06-30 , DOI: 10.1039/D2NP00091A
Brittney K. Mize,Amrita Salvi,Yulin Ren,Joanna E. Burdette,James R. Fuchs
Covering: 2015 through the end of July 2022 Ovarian cancer is one of the most common cancers affecting the female reproductive organs and has the highest mortality rate among gynecological cancers. Although botanical drugs and their derivatives, namely members of the taxane and camptothecin families, represent significant therapeutics currently available for the treatment of ovarian cancer, new drugs that have alternative mechanisms of action are still needed to combat the disease. For this reason, many efforts to identify additional novel compounds from botanical sources, along with the further development of existing therapeutics, have continued to appear in the literature. This review is designed to serve as a comprehensive look at both the currently available small-molecule therapeutic options and the recently reported botanically-derived natural products currently being studied and developed as potential future therapeutics that could one day be used against ovarian cancer. Specifically, key properties, structural features, and biological data are highlighted that are important for the successful development of potential agents. Recently reported examples are specifically discussed in the context of “drug discovery attributes,” including the presence of structure–activity relationship, mechanism of action, toxicity, and pharmacokinetic studies, to help indicate the potential for future development and to highlight where these compounds currently exist in the development process. The lessons learned from both the successful development of the taxanes and camptothecins, as well as the strategies currently being employed for new drug development, are expected to ultimately help guide the future development of botanical natural products for ovarian cancer.
Recent advances in the discovery of plant-derived antimicrobial natural products to combat antimicrobial resistant pathogens: insights from 2018–2022
Natural Product Reports ( IF 15.111 ) Pub Date : 2023-07-13 , DOI: 10.1039/D2NP00090C
Sunmin Woo,Lewis Marquez,William J. Crandall,Caitlin J. Risener
Covering: 2018 to 2022 Antimicrobial resistance (AMR) poses a significant global health threat. There is a rising demand for innovative drug scaffolds and new targets to combat multidrug-resistant bacteria. Before the advent of antibiotics, infections were treated with plants chosen from traditional medicine practices. Of Earth's 374 000 plant species, approximately 9% have been used medicinally, but most species remain to be investigated. This review illuminates discoveries of antimicrobial natural products from plants covering 2018 to 2022. It highlights plant-derived natural products with antibacterial, antivirulence, and antibiofilm activity documented in lab studies. Additionally, this review examines the development of novel derivatives from well-studied parent natural products, as natural product derivatives have often served as scaffolds for anti-infective agents.
Front cover
Natural Product Reports ( IF 15.111 ) Pub Date : 2023-06-21 , DOI: 10.1039/D3NP90031B
A graphical abstract is available for this content
Future antimalarials from Artemisia? A rationale for natural product mining against drug-refractory Plasmodium stages
Natural Product Reports ( IF 15.111 ) Pub Date : 2023-04-06 , DOI: 10.1039/D3NP00001J
Alexandre Maciuk,Dominique Mazier,Romain Duval
Covering: up to 2023 Infusions of the plants Artemisia annua and A. afra are gaining broad popularity to prevent or treat malaria. There is an urgent need to address this controversial public health question by providing solid scientific evidence in relation to these uses. Infusions of either species were shown to inhibit the asexual blood stages, the liver stages including the hypnozoites, but also the sexual stages, the gametocytes, of Plasmodium parasites. Elimination of hypnozoites and sterilization of mature gametocytes remain pivotal elements of the radical cure of P. vivax, and the blockage of P. vivax and P. falciparum transmission, respectively. Drugs active against these stages are restricted to the 8-aminoquinolines primaquine and tafenoquine, a paucity worsened by their double dependence on the host genetic to elicit clinical activity without severe toxicity. Besides artemisinin, these Artemisia spp. contain many natural products effective against Plasmodium asexual blood stages, but their activity against hypnozoites and gametocytes was never investigated. In the context of important therapeutic issues, we provide a review addressing (i) the role of artemisinin in the bioactivity of these Artemisia infusions against specific parasite stages, i.e., alone or in association with other phytochemicals; (ii) the mechanisms of action and biological targets in Plasmodium of ca. 60 infusion-specific Artemisia phytochemicals, with an emphasis on drug-refractory parasite stages (i.e., hypnozoites and gametocytes). Our objective is to guide the strategic prospecting of antiplasmodial natural products from these Artemisia spp., paving the way toward novel antimalarial “hit” compounds either naturally occurring or Artemisia-inspired.
Front cover
Natural Product Reports ( IF 15.111 ) Pub Date : 2023-05-24 , DOI: 10.1039/D3NP90026F
A graphical abstract is available for this content
Contents list
Natural Product Reports ( IF 15.111 ) Pub Date : 2023-05-24 , DOI: 10.1039/D3NP90027D
The first page of this article is displayed as the abstract.
中科院SCI期刊分区
大类学科小类学科TOP综述
化学1区BIOCHEMISTRY & MOLECULAR BIOLOGY 生化与分子生物学1区
补充信息
自引率H-indexSCI收录状况PubMed Central (PML)
3.10141Science Citation Index Science Citation Index Expanded
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Natural Product Reports是一本综述期刊,旨在促进天然产物研究发展,涵盖分离、结构和立体化学测定、生物合成、生物活性和合成。 期刊收录研究方向: 酶学,核酸,遗传学,化学生态学,糖类,初级和次级代谢,分析技术。
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