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Strategies for Efficient Lead Structure Discovery from Natural Products

机译:从天然产物中高效发现铅结构的策略

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This investigation aims to evaluate strategies for an efficient selection of bioactive compounds from the multitude and biodiversity of the plant kingdom. Statistics prove natural products (NPs) as a source leading most consistently to successful development of new drugs. However, there are several reasons why the interest in finding bioactive NPs has generally declined at several major pharmaceutical companies. Their substantial argument is that the research in this field is time-consuming, highly complex and ineffective.nnA more rational and economic search for new lead structures from nature must therefore be a priority in order to overcome these problems. In this paper, different strategies are described to exploit the molecular diversity of bioactive secondary metabolites, namely classical pharmacognostic approaches and computational methods. The latter include various data mining tools, like virtual screening filtering experiments using pharmacophore models, docking studies, and neural networks, which help to establish a relationship between chemical structure and biological activity. The strengths and weaknesses of these methods will be shown in this review.nnFocusing on selected targets within the arachidonic acid cascade (phospholipase A2, 5-lipoxygenase, cyclooxygenase-1 and -2), several studies of successful discoveries in the field of anti-inflammatory NPs were scrutinized for the applied strategies. Both the compilation of relevant published data and recent studies supported by our own research clearly demonstrate the benefits of the synergistic effect of a hybridization of these strategies for an effective drug discovery from natural ingredients.
机译:这项研究旨在评估从植物界的多样性和生物多样性中有效选择生物活性化合物的策略。统计数据证明天然产物(NPs)是最成功地导致新药成功开发的来源。但是,有几个原因导致几家主要制药公司对发现生物活性NP的兴趣普遍下降。他们的实质性论点是,在这一领域的研究是耗时,高度复杂且无效的。因此,为了克服这些问题,必须更加优先考虑从自然界中更合理,更经济地寻找新的铅结构。在本文中,描述了利用生物活性次生代谢物的分子多样性的不同策略,即经典的药物诊断方法和计算方法。后者包括各种数据挖掘工具,例如使用药效团模型的虚拟筛选过滤实验,对接研究和神经网络,这些工具有助于建立化​​学结构与生物活性之间的关系。这些方法的优缺点将在本文中进行综述。nn针对花生四烯酸级联中的选定靶标(磷脂酶A2、5-脂氧合酶,环加氧酶-1和-2),在抗-DNA领域成功发现的若干研究仔细检查炎症性NPs的应用策略。相关公开数据的汇编以及由我们自己的研究支持的最新研究都清楚地表明了这些策略的杂交对从天然成分中发现有效药物的协同作用的好处。

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