Deeming Alex S, Russell Claire J, Willis Michael C
Department of Chemistry, University of Oxford, Chemistry Research Laboratory, Mansfield Road, Oxford, OX1 3TA (UK) http://mcwillis.chem.ox.ac.uk/MCW/Home.html.
Angew Chem Int Ed Engl. 2015 Jan 19;54(4):1168-71. doi: 10.1002/anie.201409283. Epub 2014 Nov 27.
We describe a method for the synthesis of sulfonamides through the combination of an organometallic reagent, a sulfur dioxide equivalent, and an aqueous solution of an amine under oxidative conditions (bleach). This simple reaction protocol avoids the need to employ sulfonyl chloride substrates, thus removing the limitation imposed by the commercial availability of these reagents. The resultant method allows access to new chemical space, and is also tolerant of the polar functional groups needed to impart favorable physiochemical properties required for medicinal chemistry and agrochemistry. The developed chemistry is employed in the synthesis of a targeted 70 compound array, prepared using automated methods. The array achieved a 93% success rate for compounds prepared. Calculated molecular weights, lipophilicities, and polar surface areas are presented, demonstrating the utility of the method for delivering sulfonamides with drug-like properties.
我们描述了一种在氧化条件下(使用漂白剂),通过有机金属试剂、二氧化硫等价物和胺的水溶液相结合来合成磺胺类化合物的方法。这种简单的反应方案无需使用磺酰氯底物,从而消除了这些试剂商业可得性所带来的限制。所得方法能够开拓新的化学空间,并且还能耐受赋予药物化学和农业化学所需良好物理化学性质的极性官能团。所开发的化学方法用于合成一个由70种化合物组成的目标阵列,该阵列采用自动化方法制备。所制备的化合物成功率达到93%。文中给出了计算所得的分子量、亲脂性和极性表面积,证明了该方法在递送具有类药物性质的磺胺类化合物方面的实用性。