Rasoul F, Ercole F, Pham Y, Bui C T, Wu Z, James S N, Trainor R W, Wickham G, Maeji N J
Mimotopes Pty Ltd., 11 Duerdin Street, Clayton, Victoria, 3168, Australia.
Biopolymers. 2000;55(3):207-16. doi: 10.1002/1097-0282(2000)55:3<207::AID-BIP30>3.0.CO;2-F.
Solid-phase synthesis is greatly dependent on the solid phase. We are interested in the development of a "pellicular" type of solid support where a more mobile polymer is grafted to rigid plastics. Compared to low cross-linked microporous beads that dominate the field, this approach allows great flexibility of design, as plastics are available as sheets, films, or threads, or can be molded into any shape, as required. Many different polymers or copolymers can be grafted onto any particular shape to give a wide choice of options in the physicochemical characteristics of the actual solid support. As an example of such a solid support, we report on polystyrene-grafted polypropylene in a particular shape that we have called "Lanterns." Its synthesis characteristics are compared to the commonly available low cross-linked polystyrene resins. As well, the handling advantages of these types of supports in multiple synthesis are highlighted.
固相合成在很大程度上依赖于固相。我们对开发一种“膜状”类型的固体载体感兴趣,其中更具流动性的聚合物被接枝到刚性塑料上。与主导该领域的低交联微孔珠相比,这种方法在设计上具有很大的灵活性,因为塑料可以制成片材、薄膜或线,或者可以根据需要模制成任何形状。许多不同的聚合物或共聚物可以接枝到任何特定形状上,从而在实际固体载体的物理化学特性方面提供广泛的选择。作为这种固体载体的一个例子,我们报道了一种特定形状的聚苯乙烯接枝聚丙烯,我们将其称为“灯笼”。将其合成特性与常用的低交联聚苯乙烯树脂进行了比较。此外,还强调了这些类型的载体在多重合成中的操作优势。