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Tsuji–Trost Cyclization of Disulfonamides:Synthesis of 12-Membered 11-Membered and Pyridine-Fused MacrocyclicTriamines

机译:Tsuji –二磺酰胺的Trost环化:合成12元11元和吡啶融合的大环化合物三胺

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摘要

Macrocyclic triamine disulfonamides can be synthesized by double Tsuji–Trost N-allylation reaction of open-chain disulfonamides with 2-alkylidene-1,3-propanediyl bis(carbonates). The previously used Atkins–Richman macrocyclization method generally gives lower yields and requires more tedious purification of the product. Solvent, palladium source, ligand, and concentration have all been varied to optimize the yields of two key 12-membered ring bioactive compounds, CADA and VGD020. The new approach tolerates a wide range of functional groups and gives highest yields for symmetrical compounds in which the acidities of the two sulfonamide groups are matched, although the yields of unsymmetrical compounds are still generally good. The method has also been extended to the synthesis of 11-membered rings, pyridine-fused macrocycles, and products bearing an ester or aryl substituent on the exocyclic double bond.
机译:大环三胺二磺酰胺可以通过开链二磺酰胺与2-亚烷基-1,3-丙二基双(碳酸酯)的两次Tsuji-Trost N-烯丙基化反应合成。以前使用的Atkins-Richman大环化方法通常产量较低,并且需要对产品进行更繁琐的纯化。溶剂,钯源,配体和浓度均已改变,以优化两种关键的12元环生物活性化合物CADA和VGD020的产率。尽管不对称化合物的收率总体上还是不错的,但是这种新方法可耐受各种官能团,并为其中两个磺酰胺基团的酸度匹配的对称化合物提供了最高的收率。该方法还扩展到11元环,吡啶稠合大环的合成以及在环外双键上带有酯或芳基取代基的产物的合成。

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