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首页> 外文期刊>Journal of combinatorial chemistry >Development of Hydrogel TentaGel Shell-Core Beads for Ultrahigh Throughput Solution-Phase Screening of Encoded OBOC Combinatorial Small Molecule Libraries
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Development of Hydrogel TentaGel Shell-Core Beads for Ultrahigh Throughput Solution-Phase Screening of Encoded OBOC Combinatorial Small Molecule Libraries

机译:用于超高通量溶液相筛选编码的OBOC组合小分子文库的水凝胶TentaGel壳核微珠的开发

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The one-bead one-compound(OBOC)combinatorial library method enables the rapid generation and screening of millions of discrete chemical compounds on beads.Most of the OBOC screening methods require the library compounds to remain tethered to the bead during screening process.Methods have also been developed to release library compounds from immobilized beads for in situ solution phase or"lawn"assays.However,this latter approach,while extremely powerful,is severely limited by the lack of suitable solid supports for such assays.Here,we report on the development of a novel hydrogel TentaGel shell-core(HTSC)bead in which hydrogel is grafted onto the polystyrene-based TentaGel(TG)bead as an outer shell(5-80 mu m thick)via free radical surface-initiated polymerization.This novel shell-core bilayer resin enables the preparation of encoded OBOC combinatorial small molecule libraries,such that the library compounds reside on the highly hydrophilic outer layer and the coding tags reside in the polystyrene-based TG core.Using fluorescein as a model small molecule compound,we have demonstrated that fluorescein molecules that have been linked covalently to the hydrogel shell via a disulfide bond could readily diffuse out of the hydrogel layer into the bead surrounding after reduction with dithiothreitol.In contrast,under identical condition,the released fluorescein molecules remained bound to unmodified TG bead.We have prepared an encoded OBOC small molecule library on the novel shell-core beads and demonstrated that the beads can be readily decoded.
机译:单珠单化合物(OBOC)组合文库方法可快速生成和筛选微珠上数百万种不连续的化合物,大多数OBOC筛选方法都要求在筛选过程中将库化合物保持束缚在珠上。还开发了从固定的珠子中释放文库化合物以进行原位溶液相或“草坪”测定的方法。但是,后一种方法虽然功能强大,但由于缺乏适合这种测定的固体支持物而受到严重限制。在此,我们报道新型水凝胶TentaGel壳核(HTSC)珠的开发,其中通过自由基表面引发的聚合将水凝胶作为外壳(5-80μm)接枝到聚苯乙烯基TentaGel(TG)珠上。新型壳核双层树脂能够制备编码的OBOC组合小分子文库,从而使文库化合物位于高亲水性外层,而编码标签位于p使用荧光素作为模型小分子化合物,我们已经证明了通过二硫键与水凝胶壳共价连接的荧光素分子在二硫苏糖醇还原后很容易从水凝胶层中扩散到珠周围。相反,在相同条件下,释放的荧光素分子仍与未修饰的TG珠结合。我们在新型壳核磁珠上制备了编码的OBOC小分子文库,证明了该珠易于解码。

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