首页> 美国卫生研究院文献>Marine Drugs >Marine Pharmacology in 2014–2015: Marine Compounds with Antibacterial Antidiabetic Antifungal Anti-Inflammatory Antiprotozoal Antituberculosis Antiviral and Anthelmintic Activities; Affecting the Immune and Nervous Systems and Other Miscellaneous Mechanisms of Action
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Marine Pharmacology in 2014–2015: Marine Compounds with Antibacterial Antidiabetic Antifungal Anti-Inflammatory Antiprotozoal Antituberculosis Antiviral and Anthelmintic Activities; Affecting the Immune and Nervous Systems and Other Miscellaneous Mechanisms of Action

机译:2014–2015年海洋药理学:具有抗菌抗糖尿病抗真菌抗炎抗原生动物抗结核抗病毒和驱虫活性的海洋化合物;影响免疫和神经系统以及其他各种作用机制

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摘要

The systematic review of the marine pharmacology literature from 2014 to 2015 was completed in a manner consistent with the 1998–2013 reviews of this series. Research in marine pharmacology during 2014–2015, which was reported by investigators in 43 countries, described novel findings on the preclinical pharmacology of 301 marine compounds. These observations included antibacterial, antifungal, antiprotozoal, antituberculosis, antiviral, and anthelmintic pharmacological activities for 133 marine natural products, 85 marine compounds with antidiabetic, and anti-inflammatory activities, as well as those that affected the immune and nervous system, and 83 marine compounds that displayed miscellaneous mechanisms of action, and may probably contribute to novel pharmacological classes upon further research. Thus, in 2014–2015, the marine natural product pharmacology pipeline provided novel pharmacology as well as new lead compounds for the marine pharmaceutical pipeline, and thus continued to contribute to ongoing global research for alternative therapeutic approaches to many disease categories.
机译:2014年至2015年对海洋药理学文献的系统综述以与本系列1998-2013年综述相一致的方式完成。来自43个国家的研究人员在2014-2015年间进行了海洋药理学研究,该研究描述了301种海洋化合物的临床前药理学新发现。这些观察结果包括对133种海洋天然产物的抗菌,抗真菌,抗原生动物,抗结核,抗病毒和驱虫药的药理活性,85种具有抗糖尿病和抗炎活性的海洋化合物以及影响免疫和神经系统的那些化合物以及83种海洋具有其他作用机制的化合物,可能在进一步研究中可能会促成新的药理学类别。因此,在2014–2015年间,海洋天然产物药理管线为海洋药物管线提供了新颖的药理学和新的先导化合物,因此继续为正在进行的针对多种疾病类别的替代治疗方法的全球研究做出贡献。

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