Dai Wei-Min, Shi Jianyu
Laboratory of Asymmetric Catalysis and Synthesis, Department of Chemistry, Zhejiang University, Hangzhou, China.
Comb Chem High Throughput Screen. 2007 Dec;10(10):837-56. doi: 10.2174/138620707783220338.
Diversity-oriented organic synthesis (DOS) and solid-phase organic synthesis (SPOS) are proven technologies for generating small molecule libraries for chemical genetics studies. Integration of controlled microwave heating with DOS and SPOS not only speeds up the library preparation process but also offers unique opportunities in tackling issues which are hardly addressed by thermal heating. Microwave-assisted synthesis is illustrated for (a) highly regioselective Wittig olefination of cycloalkanones by accurate regulation of temperature; (b) tandem Wittig-IMDA sequence toward stereochemical diversity of gamma-butyrolactones; (c) one-pot alkylation-amidation approach toward appendage diversity through use of building blocks; and (d) one-pot U-4CR-annulation strategy toward skeletal diversity via careful reaction design. Microwave-assisted solid-phase organic synthesis (MASPOS) is highlighted by incorporating with split-pool combinatorial synthesis (SPCS) of indole sulfonamides via a key on-resin Cu(II)- or Pd(II)-catalyzed heteroannulation under microwave heating. Design and fabrication of a novel diglycine-derived catlinker are described and its role in facilitating on-resin reaction is evaluated. A traceless synthesis of indole sulfonamides via microwave-assisted Cu(II)-catalyzed heteroannulation of the catlinker-tethered substrates is also given.
面向多样性的有机合成(DOS)和固相有机合成(SPOS)是用于生成化学遗传学研究小分子文库的成熟技术。将可控微波加热与DOS和SPOS相结合,不仅加快了文库制备过程,还为解决热加热难以解决的问题提供了独特的机会。本文通过以下实例阐述了微波辅助合成:(a)通过精确调节温度实现环烷酮的高区域选择性维蒂希烯烃化反应;(b)串联维蒂希-IMDA反应序列实现γ-丁内酯的立体化学多样性;(c)通过使用构建模块的一锅法烷基化-酰胺化方法实现附属物多样性;(d)通过精心设计反应的一锅法U-4CR环化策略实现骨架多样性。微波辅助固相有机合成(MASPOS)的亮点在于,在微波加热条件下,通过关键的树脂上铜(II)或钯(II)催化的杂环化反应,与吲哚磺酰胺的裂分池组合合成(SPCS)相结合。描述了一种新型二甘氨酸衍生的连接体的设计与制备,并评估了其在促进树脂上反应中的作用。还给出了通过微波辅助铜(II)催化连接体连接的底物的杂环化反应进行吲哚磺酰胺无痕合成的方法。