Xiaoxue Li, Huili Li, Lei Shi, Zuguang Yin, Yuguo Du, Hongxia Zhang, Xin Wang, Xinxin Wang, Kexin Xu, Weili Wang, Ronglian Xing, Yi Liu
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Eight compounds (<b>6a</b>, <b>6c</b>, <b>6j</b>, <b>7b</b>, <b>7c</b>, <b>7d</b>, <b>7e</b>, and <b>7g</b>) displayed potent inhibitory effects against <i>Prorocentrum minimum</i>, <i>Skeletonema costatum</i>, and <i>Alexandrium pacificum</i>, and they had similar or better activity than the positive control (CuSO<sub>4</sub>) and bacillamide A. Compound <b>6a</b> exhibited the most potent algicidal activity against <i>S. costatum</i> (half-maximal effective concentration [EC<sub>50</sub>] = 0.11 μg/mL), being 23-fold more potent than bacillamide A, 28-fold more potent than CuSO<sub>4</sub>, and 39-fold more potent than Diuron. Compound <b>6j</b> exhibited significant algicidal activity against the toxic dinoflagellates <i>P. minimum</i> (EC<sub>50</sub> = 1.0 μg/mL) and <i>A. pacificum</i> (EC<sub>50</sub> = 0.47 μg/mL), being 3-5-fold more potent than natural bacillamide A, Diuron, and CuSO<sub>4</sub>. Micrographs and SEM images revealed that <b>6j</b> induced cell wall rupture and cellular content leakage. Biochemical and physiological studies indicated that <b>6j</b> might partially disrupt the antioxidant and photosynthetic systems in algal cells, resulting in morphological changes, cell wall rupture, and inclusion leakage. Our work suggests that <b>6j</b> has a distinct mode of action from CuSO<sub>4</sub> and provides a promising candidate for the development of new algicides, worthy of further investigation.</p>","PeriodicalId":18222,"journal":{"name":"Marine Drugs","volume":"22 11","pages":""},"PeriodicalIF":4.9000,"publicationDate":"2024-11-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC11595864/pdf/","citationCount":"0","resultStr":"{\"title\":\"Design, Synthesis, and Evaluation of Novel Thiazole-Containing Algicides Inspired by Bacillamide A.\",\"authors\":\"Xiaoxue Li, Huili Li, Lei Shi, Zuguang Yin, Yuguo Du, Hongxia Zhang, Xin Wang, Xinxin Wang, Kexin Xu, Weili Wang, Ronglian Xing, Yi Liu\",\"doi\":\"10.3390/md22110494\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>The pursuit of highly effective, low-toxicity, and eco-friendly algicides for controlling and eradicating harmful algal blooms (HABs) is of paramount importance. The natural allelochemical bacillamide A has displayed impressive algicidal activity against harmful algae with favorable safety profiles. However, the poor synthetic efficiency and large dose requirements of bacillamide A limit its further application. In this paper, 17 thiazole-containing bacillamide derivatives (BDs) were designed and synthesized in three linear steps as potential algicides. Eight compounds (<b>6a</b>, <b>6c</b>, <b>6j</b>, <b>7b</b>, <b>7c</b>, <b>7d</b>, <b>7e</b>, and <b>7g</b>) displayed potent inhibitory effects against <i>Prorocentrum minimum</i>, <i>Skeletonema costatum</i>, and <i>Alexandrium pacificum</i>, and they had similar or better activity than the positive control (CuSO<sub>4</sub>) and bacillamide A. Compound <b>6a</b> exhibited the most potent algicidal activity against <i>S. costatum</i> (half-maximal effective concentration [EC<sub>50</sub>] = 0.11 μg/mL), being 23-fold more potent than bacillamide A, 28-fold more potent than CuSO<sub>4</sub>, and 39-fold more potent than Diuron. Compound <b>6j</b> exhibited significant algicidal activity against the toxic dinoflagellates <i>P. minimum</i> (EC<sub>50</sub> = 1.0 μg/mL) and <i>A. pacificum</i> (EC<sub>50</sub> = 0.47 μg/mL), being 3-5-fold more potent than natural bacillamide A, Diuron, and CuSO<sub>4</sub>. Micrographs and SEM images revealed that <b>6j</b> induced cell wall rupture and cellular content leakage. Biochemical and physiological studies indicated that <b>6j</b> might partially disrupt the antioxidant and photosynthetic systems in algal cells, resulting in morphological changes, cell wall rupture, and inclusion leakage. Our work suggests that <b>6j</b> has a distinct mode of action from CuSO<sub>4</sub> and provides a promising candidate for the development of new algicides, worthy of further investigation.</p>\",\"PeriodicalId\":18222,\"journal\":{\"name\":\"Marine Drugs\",\"volume\":\"22 11\",\"pages\":\"\"},\"PeriodicalIF\":4.9000,\"publicationDate\":\"2024-11-01\",\"publicationTypes\":\"Journal Article\",\"fieldsOfStudy\":null,\"isOpenAccess\":false,\"openAccessPdf\":\"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC11595864/pdf/\",\"citationCount\":\"0\",\"resultStr\":null,\"platform\":\"Semanticscholar\",\"paperid\":null,\"PeriodicalName\":\"Marine Drugs\",\"FirstCategoryId\":\"3\",\"ListUrlMain\":\"https://doi.org/10.3390/md22110494\",\"RegionNum\":2,\"RegionCategory\":\"医学\",\"ArticlePicture\":[],\"TitleCN\":null,\"AbstractTextCN\":null,\"PMCID\":null,\"EPubDate\":\"\",\"PubModel\":\"\",\"JCR\":\"Q1\",\"JCRName\":\"CHEMISTRY, MEDICINAL\",\"Score\":null,\"Total\":0}","platform":"Semanticscholar","paperid":null,"PeriodicalName":"Marine Drugs","FirstCategoryId":"3","ListUrlMain":"https://doi.org/10.3390/md22110494","RegionNum":2,"RegionCategory":"医学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q1","JCRName":"CHEMISTRY, MEDICINAL","Score":null,"Total":0}
引用次数: 0
摘要
为控制和消除有害藻华(HABs),寻求高效、低毒、生态友好型杀藻剂是至关重要的。天然等位化学物质杆菌酰胺 A 对有害藻类具有令人印象深刻的杀藻活性和良好的安全性。然而,由于杆菌酰胺 A 的合成效率低、剂量要求高,限制了它的进一步应用。本文设计并通过三个线性步骤合成了 17 个含噻唑的杆菌酰胺衍生物(BDs),作为潜在的杀藻药物。其中 8 个化合物(6a、6c、6j、7b、7c、7d、7e 和 7g)对 Prorocentrum minimum、Skeletonema costatum 和 Alexandrium pacificum 具有很强的抑制作用,其活性与阳性对照(CuSO4)和杆菌酰胺 A 相似或更好。化合物 6a 对 S. costatum 的杀藻活性最强(半最大有效浓度 [EC50] = 0.11 μg/mL),比杆菌酰胺 A 强 23 倍,比 CuSO4 强 28 倍,比 Diuron 强 39 倍。化合物 6j 对有毒甲藻 P. minimum(EC50 = 1.0 μg/mL)和 A. pacificum(EC50 = 0.47 μg/mL)具有显著的杀藻活性,其效力是天然杆菌酰胺 A、Diuron 和 CuSO4 的 3-5 倍。显微照片和扫描电镜图像显示,6j 能诱导细胞壁破裂和细胞内容物渗漏。生化和生理研究表明,6j 可能会部分破坏藻类细胞的抗氧化和光合系统,导致形态变化、细胞壁破裂和内含物渗漏。我们的工作表明,6j 与 CuSO4 具有不同的作用模式,为开发新型杀藻剂提供了有希望的候选物质,值得进一步研究。
Design, Synthesis, and Evaluation of Novel Thiazole-Containing Algicides Inspired by Bacillamide A.
The pursuit of highly effective, low-toxicity, and eco-friendly algicides for controlling and eradicating harmful algal blooms (HABs) is of paramount importance. The natural allelochemical bacillamide A has displayed impressive algicidal activity against harmful algae with favorable safety profiles. However, the poor synthetic efficiency and large dose requirements of bacillamide A limit its further application. In this paper, 17 thiazole-containing bacillamide derivatives (BDs) were designed and synthesized in three linear steps as potential algicides. Eight compounds (6a, 6c, 6j, 7b, 7c, 7d, 7e, and 7g) displayed potent inhibitory effects against Prorocentrum minimum, Skeletonema costatum, and Alexandrium pacificum, and they had similar or better activity than the positive control (CuSO4) and bacillamide A. Compound 6a exhibited the most potent algicidal activity against S. costatum (half-maximal effective concentration [EC50] = 0.11 μg/mL), being 23-fold more potent than bacillamide A, 28-fold more potent than CuSO4, and 39-fold more potent than Diuron. Compound 6j exhibited significant algicidal activity against the toxic dinoflagellates P. minimum (EC50 = 1.0 μg/mL) and A. pacificum (EC50 = 0.47 μg/mL), being 3-5-fold more potent than natural bacillamide A, Diuron, and CuSO4. Micrographs and SEM images revealed that 6j induced cell wall rupture and cellular content leakage. Biochemical and physiological studies indicated that 6j might partially disrupt the antioxidant and photosynthetic systems in algal cells, resulting in morphological changes, cell wall rupture, and inclusion leakage. Our work suggests that 6j has a distinct mode of action from CuSO4 and provides a promising candidate for the development of new algicides, worthy of further investigation.
期刊介绍:
Marine Drugs (ISSN 1660-3397) publishes reviews, regular research papers and short notes on the research, development and production of drugs from the sea. Our aim is to encourage scientists to publish their experimental and theoretical research in as much detail as possible, particularly synthetic procedures and characterization information for bioactive compounds. There is no restriction on the length of the experimental section.