Convergent Synthesis of a Complex Oxime Library Using Chemical Domain Shuffling
摘要:
yThe synthesis of a complex hybrid oxime library is reported utilizing convergent ligation of alkoxyamine and carbonyl monomers via "chemical domain shuffling". Initial biological screening of the library against human small cell lung carcinoma (A549) cells led to the identification of a novel hybrid dimer in contrast to the corresponding monomeric compounds which were found to be inactive.
Convergent Synthesis of a Complex Oxime Library Using Chemical Domain Shuffling
摘要:
yThe synthesis of a complex hybrid oxime library is reported utilizing convergent ligation of alkoxyamine and carbonyl monomers via "chemical domain shuffling". Initial biological screening of the library against human small cell lung carcinoma (A549) cells led to the identification of a novel hybrid dimer in contrast to the corresponding monomeric compounds which were found to be inactive.
Convergent Synthesis of a Complex Oxime Library Using Chemical Domain Shuffling
作者:Shun Su、Dayle E. Acquilano、Jeevanandam Arumugasamy、Aaron B. Beeler、Erin L. Eastwood、Joshua R. Giguere、Ping Lan、Xiaoguang Lei、Geanna K. Min、Adam R. Yeager、Ya Zhou、James S. Panek、John K. Snyder、Scott E. Schaus、John A. Porco
DOI:10.1021/ol051023r
日期:2005.6.1
yThe synthesis of a complex hybrid oxime library is reported utilizing convergent ligation of alkoxyamine and carbonyl monomers via "chemical domain shuffling". Initial biological screening of the library against human small cell lung carcinoma (A549) cells led to the identification of a novel hybrid dimer in contrast to the corresponding monomeric compounds which were found to be inactive.