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Synthesis of carbohydrate-functionalised sequence-defined oligo(amidoamine)s by photochemical thiol-ene coupling in a continuous flow reactor

机译:在连续流反应器中通过光化学硫醇-烯偶联合成碳水化合物官能化的序列定义的低聚(酰胺基胺)

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Poly/oligo(amidoamine)s (PAAs) have recently been recognised for their potential as well-defined scaffolds for multiple carbohydrate presentation and as multivalent ligands. Herein, we report two complimentary strategies for the preparation of such sequence-defined carbohydrate-functionalised PAAs that use photochemical thiol-ene coupling (TEC) as an alternative to the established azide-alkyne cycloaddition ("click") reaction. In the first approach, PAAs that contained multiple olefins were synthesised on a solid support from a new building block and subsequent conjugation with unprotected thio-carbohydrates. Alternatively, a pre-functionalised building block was prepared by using TEC and assembled on a solid support to provide a carbohydrate-functionalised PAA. Both methods rely on the use of a continuous flow photoreactor for the TEC reactions. This system is highly efficient, owing to its short path length, and requires no additional radical initiator. Performing the reactions at 254 nm in Teflon AF-2400 tubing provides a highly efficient TEC procedure for carbohydrate conjugation, as demonstrated in the reactions of O-allyl glycosides with thiols. This method allowed the complete functionalisation of all of the reactive sites on the PAA backbone in a single step, thereby obtaining a defined homogeneous sequence. Furthermore, reaction at 366 nm in FEP tubing in the flow reactor enabled the large-scale synthesis of an fluorenylmethyloxycarbonyl (Fmoc)-protected glycosylated building block, which was shown to be suitable for solid-phase synthesis and will also allow heterogeneous sequence control of different carbohydrates along the oligomeric backbone. These developments enable the synthesis of sequence-defined carbohydrate-functionalised PAAs with potential biological applications. Sweet flow chemistry: Monodisperse, sequence-defined glycooligomers were obtained through a combination of automated solid-phase synthesis and carbohydrate conjugation in a flow photoreactor by using thiol-ene chemistry (see figure).
机译:聚/低聚(酰胺基胺)(PAA)最近因其潜在的潜力而被明确定义为多种碳水化合物呈递的支架和多价配体。在此,我们报告了两种互补的策略,用于制备此类序列定义的碳水化合物官能化的PAA,这些PAA使用光化学硫醇-烯偶联(TEC)替代已建立的叠氮基-炔烃环加成(“ click”)反应。在第一种方法中,在新的结构单元的固体载体上合成包含多种烯烃的PAA,然后与未保护的硫代碳水化合物缀合。或者,通过使用TEC制备预功能化的结构单元,并将其组装在固体支持物上以提供碳水化合物功能化的PAA。两种方法都依赖于连续流动光反应器来进行TEC反应。由于其路径长度短,该系统是高效的,并且不需要额外的自由基引发剂。 Oef-烯丙基糖苷与硫醇的反应证明,在Teflon AF-2400管中在254 nm处进行反应可为碳水化合物的偶联提供高效的TEC程序。该方法允许在单个步骤中将PAA骨架上所有反应位点完全功能化,从而获得确定的均质序列。此外,在流动反应器中FEP管道中366 nm处的反应使得能够大规模合成芴基甲氧基羰基(Fmoc)保护的糖基化结构单元,该结构单元显示出适用于固相合成,并且还可以实现异构序列控制沿寡聚主链的不同碳水化合物。这些发展使得具有潜在生物学应用的序列限定的碳水化合物官能化的PAA的合成成为可能。甜流化学法:通过在流光反应器中使用硫醇-烯化学方法,通过自动固相合成和碳水化合物缀合的组合,获得了单分散的,序列定义的糖低聚物(见图)。

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