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Regioselective reactions of 3f4-pyridynes enabled by the aryne distortion model

机译:芳烃畸变模型可实现3f4-吡啶炔的区域选择性反应

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The pyridine heterocycle continues to piay a vital role in the development of human medicines. More than 100 currently marketed drugs contain this privileged unit, which remains highly sought after synthetically. We report an efficient means to access di- and trisubstituted pyridines in an efficient and highly controlled manner using transient 3,4-pyridyne intermediates. Previous efforts to employ 3,4-pyridynes for the construction of substituted pyridines were hampered by a lack of regiocontrol or the inability to later manipulate an adjacent directing group. The strategy relies on the use of proximal halide or sulfamate substituents to perturb pyridyne distortion, which in turn governs regioselectivities in nucleophilic addition and cycloaddition reactions. After trapping of the pyridynes generated in situ, the neighbouring directing groups may be removed or exploited using versatile metal-catalysed cross-coupling reactions. This methodology now renders 3,4-pyridynes as useful synthetic building blocks for the creation of highly decorated derivatives of the medicinally privileged pyridine heterocycle.
机译:吡啶杂环继续在人类药物的开发中发挥重要作用。目前市场上销售的100多种药物都包含这个特权单元,合成后仍然受到高度追捧。我们报告了一种有效的方法,可使用瞬态3,4-吡啶炔中间体以高效且高度受控的方式访问二取代和三取代的吡啶。由于缺乏区域控制或以后无法操纵相邻的指导基团,阻碍了以前使用3,4-吡啶炔构建取代吡啶的努力。该策略依赖于使用近端卤化物或氨基磺酸酯取代基来扰动吡啶炔的变形,这反过来又决定了亲核加成和环加成反应中的区域选择性。在捕获原位生成的吡啶炔之后,可以使用通用的金属催化的交叉偶联反应除去或利用相邻的定向基团。现在,该方法论将3,4-吡啶炔用作有用的合成构建基块,用于创建具有高度修饰性的药用特权吡啶杂环衍生物。

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