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A concise synthesis of (+)-batzelladine B from simple pyrrole-based starting materials

机译:从简单的基于吡咯的原料中合成简明的(+)-batzelladine B

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摘要

Alkaloids, secondary metabolites that contain basic nitrogen atoms, are some of the most well-known biologically active natural products in chemistry and medicine. Although the efficient laboratory syntheses of alkaloids would enable researchers to study and optimize their biological properties, the basicity and nucleophilicity of nitrogen, its susceptibility to oxidation, and its ability to alter reaction outcomes in unexpected ways – for example, through stereochemical instability and neighboring group participation – complicates their preparation in the laboratory. Efforts to address these issues have led to the invention of a large number of protecting groups that temper the reactivity of nitrogen; however, the use of protecting groups typically introduce additional steps and obstacles into the synthetic route. Alternatively, the use of aromatic nitrogen heterocycles as synthetic precursors can attenuate the reactivity of nitrogen and streamline synthetic strategies. In this manuscript, we use such an approach to achieve a synthesis of the complex anti-HIV alkaloid (+)-batzelladine B in nine steps (longest-linear sequence) from simple pyrrole-based starting materials. The route employs several key transformations that would be challenging or impossible to implement using saturated nitrogen heterocycles and highlights some of the advantages conferred by the use of aromatic starting materials.
机译:生物碱是含有碱性氮原子的次生代谢产物,是化学和医学领域最著名的生物活性天然产物 。尽管有效的实验室生物碱合成方法使研究人员能够研究和优化其生物特性,但 氮的碱性和亲核性,其对氧化的敏感性以及以意想不到的方式改变反应结果的能力,例如由于立体化学不稳定和邻近小组的参与-使他们在实验室中的制备变得复杂。解决这些问题的努力已导致发明了许多保护基团,它们可调节氮的反应性。然而,使用保护基通常会在合成路线中引入其他步骤和障碍。另外,使用芳香族氮杂环作为合成前体可以减弱氮的反应性,并简化合成策略 。在本手稿中,我们使用这种方法从简单的基于吡咯的原料开始,以九个步骤(最长的线性顺序)合成了复杂的抗HIV生物碱(+)-巴兹拉丁B。该路线采用了几种关键的转化方法,这些方法对于使用饱和氮杂环化合物将具有挑战性或无法实现,并强调了使用芳族原料带来的一些优势。

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