Wessjohann Ludger A, Ruijter Eelco
Leibniz-lnstitute of Plant Biochemistry, Department of Bioorganic Chemistry, Weinberg 3, D-06120 Halle (Saale), Germany.
Mol Divers. 2005;9(1-3):159-69. doi: 10.1007/s11030-005-1313-y.
Naturally occurring macrocycles often exhibit remarkable biological activities and, therefore, constitute an attractive starting point for diversity-oriented synthesis for lead discovery in drug development. Multicomponent reactions have been used for the introduction of chemical diversity in strategies towards macrocycle libraries, mostly by combinational synthesis of a linear precursor combined with a subsequent macrocyclization reaction. The Ugi reaction in particular may be used for the macrocyclization itself as well, and a library of natural product-like macrocycles can be constructed in a single step from simple precursors. The efficiency and versatility of both strategies is immense and is exemplarily illustrated by the construction of small libraries of cyclopeptide alkaloid derivatives and biaryl ether macrocycles. The syntheses of the latter compound group are examples of multiple multicomponent macrocyclizations including bifunctional building blocks (M3iB3 or MiB), of which the Ugi-MiBs and their variations are discussed in more detail.
天然存在的大环化合物通常表现出显著的生物活性,因此,构成了药物开发中以多样性为导向的先导化合物发现合成的一个有吸引力的起点。多组分反应已被用于在构建大环文库的策略中引入化学多样性,主要是通过线性前体的组合合成与随后的大环化反应。特别是Ugi反应也可用于大环化本身,并且可以从简单前体一步构建天然产物样大环化合物文库。这两种策略的效率和通用性都非常高,环肽生物碱衍生物和联芳基醚大环化合物的小型文库的构建就是例证。后一组化合物的合成是包括双功能构建块(M3iB3或MiB)的多个多组分大环化的实例,其中将更详细地讨论Ugi-MiB及其变体。