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Hybrid molecules incorporating natural products: applications in cancer therapy, neurodegenerative disorders and beyond.

机译:掺入天然产物的杂化分子:在癌症治疗,神经退行性疾病等领域的应用。

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摘要

In this article the design of hybrid molecules that covalently connect two distinct drug entities in one molecule, at least one part being a biologically active natural product will be discussed. In the quest for novel drug entities, the hybrid approach is a promising path to drug molecules that can effectively target multifactorial diseases including neurodegenerative disorders like Alzheimer's and Parkinson's diseases (AD and PD). The hybrid approach can also be used to optimize certain biological properties like affinity and selectivity, but also to gain novel biological activities distinct from the ones of the components. Due to the high potential of natural products to exhibit pronounced biological activities, natural products have been one of the major sources of components in hybrid molecules. This review will cover their applications in developing drugs for neurodegenerative disorders, in the diverse field of anti-cancer agents (which represents the major application for natural products in medicinal chemistry), but also in miscellaneous areas of bioactive compounds including antioxidants, antimalarial drugs and estrogen-related hybrids to reach various therapeutic aims. The unique tasks of hybrid molecule design will be addressed, such as describing suitable ways to chemically connect the drug components, how to use the approach to enhance biological activity with respect to both activity and selectivity and potential drawbacks of the hybrid approach. It will be shown that hybrids can be more than the sum of their components, but in many cases should be considered as pharmacological entities in their own respect.
机译:在本文中,将讨论在一个分子中共价连接两个不同药物实体的杂合分子的设计,其中至少一部分是具有生物活性的天然产物。在寻求新的药物实体时,混合方法是一种有望有效靶向多种因素的药物分子的途径,这些疾病包括神经退行性疾病,如阿尔茨海默氏病和帕金森氏病(AD和PD)。混合方法还可以用于优化某些生物学特性(如亲和力和选择性),还可以获取不同于某些组分的新颖生物活性。由于天然产物具有显示出明显生物活性的高潜力,天然产物已成为杂化分子中组分的主要来源之一。这篇综述将涵盖它们在开发用于神经退行性疾病的药物,在抗癌药的各个领域(代表药物在天然化学中的主要应用)以及在生物活性化合物的其他领域(包括抗氧化剂,抗疟药和与雌激素有关的杂种达到各种治疗目的。杂交分子设计的独特任务将得到解决,例如描述化学连接药物成分的合适方法,就该方法的活性和选择性以及潜在的缺点,如何使用该方法增强生物活性。将会显示,杂种的作用可能不只是其成分的总和,但在许多情况下,就其自身而言,应将其视为药理学实体。

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