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斯特拉瑟利奥内酯类的集体和 diverted 全合成:具有强大抗疟和抗锥虫活性的大环内酯家族。

Collective and Diverted Total Synthesis of the Strasseriolides: A Family of Macrolides Endowed with Potent Antiplasmodial and Antitrypanosomal Activity.

机构信息

Max-Planck-Institut für Kohlenforschung, 45470, Mülheim/Ruhr, Germany.

Instituto de Parasitologia y Biomedicina "López-Neyra", Consejo Superior de Investigaciones Científicas, Avenida del Conocimiento 17 18016, Armilla, Granada, Spain.

出版信息

Angew Chem Int Ed Engl. 2024 Sep 2;63(36):e202408725. doi: 10.1002/anie.202408725. Epub 2024 Jul 29.

Abstract

The strasseriolide macrolides show promising in vitro and in vivo activities against P. falciparum and T. cruzi, the parasites causing malaria and Chagas disease, respectively. However, the as yet poor understanding of structure/activity relationships and the fact that one family member proved systemically toxic for unknown reasons render a more detailed assessment of these potential lead compounds difficult. To help overcome these issues, a collective total synthesis was devised. The key steps consisted of a ring closing alkyne metathesis (RCAM) reaction to forge a common macrocyclic intermediate followed by a hydroxy-directed ruthenium catalyzed trans-hydrostannation of the propargyl alcohol site thus formed. The resulting alkenyltin derivative served as the central node of the synthesis blueprint, which could be elaborated into the natural products themselves as well as into a set of non-natural analogues according to the concept of diverted total synthesis. The recorded biological data confirmed the potency of the compounds and showed the lack of any noticeable cytotoxicity. The "northern" allylic alcohol subunit was recognized as an integral part of the pharmacophore, yet it provides opportunities for chemical modification.

摘要

斯特拉塞尔内酯类大环内酯化合物在体外和体内对引起疟疾和恰加斯病的寄生虫疟原虫和克氏锥虫均显示出良好的活性。然而,人们对结构/活性关系的了解还很不完善,而且由于未知原因,其中一个家族成员对系统性毒性,这使得对这些潜在的先导化合物进行更详细的评估变得困难。为了克服这些问题,设计了一个集体的全合成。关键步骤包括形成共同的大环中间体的环封闭炔烃交叉复分解(RCAM)反应,然后是羟基导向的钌催化反式氢锡化形成的炔丙醇位点。所得的烯基锡衍生物作为合成蓝图的中心节点,可以根据偏置全合成的概念将其扩展为天然产物本身以及一组非天然类似物。记录的生物学数据证实了这些化合物的效力,并且表明没有任何明显的细胞毒性。“北部”烯丙基醇亚基被认为是药效团的一个组成部分,但它为化学修饰提供了机会。

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