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Rhodanine as a scaffold in drug discovery: A critical review of its biological activities and mechanisms of target modulation

机译:罗丹宁作为药物发现中的支架:对其生物学活性和靶标调控机制的严格评论

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Introduction: Rhodanine-based compounds have been associated with numerous biological activities. After many years of research in drug discovery, they have gained a reputation as being pan assay interference compounds (PAINS) and frequent hitters in screening campaigns. Rhodanine-based compounds are also aggregators that can non-specifically interact with target proteins as well as Michael acceptors and interfere photometrically in biological assays due to their color. Areas covered: The authors review the recently reported biological activities of rhodanine-based compounds. Furthermore, the article provides details of their synthesis and occurrence in compound libraries through high-throughput screening (HTS) and virtual high-throughput screening (VHTS). Additionally, the authors provide the reader with possible mechanisms of non-specific target modulation, analysis of the crystal structures of enzymerhodanine complexes and a comparison of rhodanine and thiazolidine-2,4- dione moieties. Expert opinion: The biological activity of compounds possessing a rhodanine moiety should be considered very critically despite the convincing data obtained in biological assays. In addition to the lack of selectivity, unusual structureactivity relationship profiles and safety and specificity problems mean that rhodanines are generally not optimizable.
机译:简介:基于罗丹宁的化合物已与许多生物活性有关。经过多年的药物发现研究,他们已成为泛测定干扰化合物(PAINS)和筛选活动中的经常击打者的声誉。基于罗丹宁的化合物也是聚集体,由于它们的颜色,它们可以与靶蛋白以及迈克尔受体非特异性相互作用,并在光度学上干扰生物测定。研究范围:作者回顾了最近报道的基于罗丹宁的化合物的生物活性。此外,本文通过高通量筛选(HTS)和虚拟高通量筛选(VHTS)提供了它们在化合物库中的合成和存在的详细信息。此外,作者还为读者提供了非特异性靶标调节的可能机制,酶丹螺碱复合物的晶体结构分析以及若丹宁和噻唑烷-2,4-二酮部分的比较。专家意见:尽管在生物学分析中获得了令人信服的数据,但应非常严格地考虑具有若丹宁部分的化合物的生物学活性。除了缺乏选择性外,不寻常的结构活性关系概况以及安全性和特异性问题还意味着罗丹酮通常无法被优化。

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