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    • 6. 发明授权
    • Spatially defined synthesis
    • 空间定义合成
    • US06420123B1
    • 2002-07-16
    • US09544411
    • 2000-04-06
    • Arpad Furka
    • Arpad Furka
    • G01N3353
    • C07K1/047B01J19/0046B01J2219/00286B01J2219/00295B01J2219/00297B01J2219/00299B01J2219/00457B01J2219/00459B01J2219/00463B01J2219/0047B01J2219/00472B01J2219/005B01J2219/00504B01J2219/00506B01J2219/00515B01J2219/0054B01J2219/00542B01J2219/00545B01J2219/00585B01J2219/0059B01J2219/00592B01J2219/00596B01J2219/00659B01J2219/00664B01J2219/0072B01J2219/00725C40B40/10C40B60/14C40B70/00
    • In accordance with the method of the invention and within the framework of the split synthesis technique, compounds are synthesized on macroscopic solid support units which are spatially organized in groups, referred to herein as strings, so that the location of each unit in a string is known and recorded. Each string is placed in a reaction vessel for contact with a suitable reagent or reagents to couple a first component on the support units. Each string is submitted to a different reaction and the sequential arrangement of the support units is maintained throughout the whole reaction step and any subsequent washing steps. At the completion of a reaction step the support units of the strings (referred to as source strings) are sorted in a different sequential arrangement to form new strings (referred to as destination strings) for the next reaction step. The reorganization of the support units into new destination strings is recorded for each reaction step in the synthesis. The destination strings may then be converted to source strings by subjecting each string to different second reaction steps to couple another component onto the solid support units. The reaction and sorting steps are repeated until the desired products are formed. The sequence history is reviewed and the composition of each product is predicted without the need for tags or labels. The sorting steps can be carried out manually or preferably by automated means.
    • 根据本发明的方法,并且在分裂合成技术的框架内,化合物在宏观固体支持单元上合成,其在空间上被组织成组,这里称为串,使得每个单元在串中的位置是 已知和记录。 将每个串放置在反应容器中以与合适的试剂或试剂接触以将第一组分偶联在载体单元上。 每个串都进行不同的反应,并且在整个反应步骤和任何随后的洗涤步骤中保持支持单元的顺序排列。 在反应步骤完成时,串的支持单元(称为源字符串)以不同的顺序排列排列以形成用于下一个反应步骤的新字符串(称为目的字符串)。 在合成中记录每个反应步骤将支持单元重组成新的目的地字符串。 然后可以通过使每个串进行不同的第二反应步骤将目的地字符串转换为源字符串,以将另一个组件耦合到固体支持单元上。 重复反应和分选步骤,直到形成所需的产物。 审查序列历史,并且预测每个产品的组成,而不需要标签或标签。 分选步骤可以手动或优选通过自动化手段进行。