LeProust E, Pellois J P, Yu P, Zhang H, Gao X, Srivannavit O, Gulari E, Zhou X
Department of Chemistry, University of Houston, Texas 77204-5641, USA.
J Comb Chem. 2000 Jul-Aug;2(4):349-54. doi: 10.1021/cc000009x.
Solution reactions using photogenerated reagents (Gao, X.; Yu, P.; LeProust, E.; Sonigo, L.; Pellois, J. P.; Zhang, H. J. Am. Chem. Soc. 1998, 120, 12698) are a potentially powerful means for combinatorial parallel synthesis of addressable molecular microarrays. In this report, we demonstrate that this chemistry permits combinatorial screening of reaction conditions on a microarray platform. Using this method of optimization and our reaction apparatus, efficient photogenerated acids and reaction conditions suitable for removal of the acid labile protection group on 5'-O of nucleotides are identified in a short period of time. The chemistry platform demonstrated opens new avenues for rapid, simultaneous investigation of multiple reactions using different reagents and reaction parameters directly on a solid support (e.g., a glass plate). The combinatorial screening method described may be extended to include general organic reactions employing photogenerated and conventional reagents as well as a microarray reaction device. This should be especially valuable for efficient synthesis of addressable organic compound libraries.
使用光生试剂的溶液反应(高,X.;于,P.;勒普鲁斯特,E.;索尼戈,L.;佩洛伊斯,J.P.;张,H.《美国化学会志》1998年,120卷,12698页)是用于可寻址分子微阵列组合平行合成的一种潜在强大手段。在本报告中,我们证明这种化学方法允许在微阵列平台上对反应条件进行组合筛选。利用这种优化方法和我们的反应装置,在短时间内确定了适用于去除核苷酸5'-O上酸不稳定保护基的高效光生酸和反应条件。所展示的化学平台为直接在固体支持物(如玻璃板)上使用不同试剂和反应参数快速、同时研究多个反应开辟了新途径。所描述的组合筛选方法可扩展到包括使用光生试剂和传统试剂的一般有机反应以及微阵列反应装置。这对于高效合成可寻址有机化合物库应该特别有价值。