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通过结构导向的C-H活化反应实现多功能丁烯内酯的合成。

Versatile Butenolide Syntheses via a Structure-Oriented C-H Activation Reaction.

作者信息

Lin Yu-Kun, Kim Donghyeon, Ouyang Yuxin, Yu Jin-Quan

机构信息

Department of Chemistry, The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, California 92037, United States.

出版信息

J Am Chem Soc. 2025 Jul 23;147(29):26019-26028. doi: 10.1021/jacs.5c09040. Epub 2025 Jul 3.

Abstract

Despite significant advances in forging a single bond via C-H activation in the past decade, one-step construction of biologically or chemically important scaffolds from abundant feedstock chemicals, namely, structure-oriented C-H activation, remains a significant challenge. Since feedstocks often contain a single functional group, multiple C(sp)-H bond functionalizations are often necessary toward the assembly of densely functionalized scaffolds. As classic pharmacophores and versatile synthetic intermediates, butenolides have received extensive attention from the pharmaceutical industry and synthetic chemists. Here, we report the development of a palladium catalyst that enables the one-step conversion of aliphatic acids into ubiquitous butenolides involving triple functionalizations of methylene and methine C-H bonds with -butyl hydroperoxide (TBHP) as the sole oxidant. The unprecedented triazole-pyridone ligand is essential for realizing this "butenolide-oriented" C-H activation reaction. The availability of diverse aliphatic acids allows rapid access to unexplored but medicinally interesting chemical space of butenolides. Improved syntheses of a wide range of bioactive natural products and drug molecules were achieved using this reaction, including anticancer and anti-HIV compounds. As low as 1 mol % catalyst loading, ready scalability, and product purification through a simple aqueous washing represent rare practical advantages for C-H activation reactions.

摘要

尽管在过去十年中通过C-H活化形成单一化学键取得了重大进展,但从丰富的原料化学品一步构建具有生物学或化学重要性的支架,即结构导向的C-H活化,仍然是一项重大挑战。由于原料通常只含有一个官能团,因此为了组装高度官能化的支架,往往需要进行多次C(sp)-H键官能化。丁烯内酯作为经典的药效团和通用的合成中间体,受到了制药行业和合成化学家的广泛关注。在此,我们报道了一种钯催化剂的开发,该催化剂能够将脂肪酸一步转化为常见的丁烯内酯,以叔丁基过氧化氢(TBHP)作为唯一氧化剂,实现亚甲基和次甲基C-H键的三重官能化。前所未有的三唑吡啶酮配体对于实现这种“以丁烯内酯为导向”的C-H活化反应至关重要。多种脂肪酸的可得性使得能够快速进入未被探索但具有药用价值的丁烯内酯化学空间。利用该反应实现了多种生物活性天然产物和药物分子的改进合成,包括抗癌和抗HIV化合物。低至1 mol%的催化剂负载量、易于放大以及通过简单水洗进行产物纯化,这些都是C-H活化反应罕见的实际优势。

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