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Poly-amido-saccharides: Synthesis via Anionic Polymerization of a β-Lactam Sugar Monomer

机译:聚酰氨基的糖:通过β内酰胺糖单体的阴离子聚合合成

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摘要

Chiral poly-amido-saccharides (PASs) with a defined molecular weight and narrow polydispersity are synthesized using an anionic ring-opening polymerization of a β-lactam sugar monomer. The PASs have a previously unreported main chain structure that is composed of pyranose rings linked through the 1- and 2-positions by an amide bond with α-stereochemistry. The monomer is synthesized in one-step from benzyl-protected d-glucal and polymerized using mild reaction conditions to give degrees of polymerization ranging from 25 to >150 in high yield. Computational modeling reveals how the monomer’s structure and steric bulk affect the thermodynamics and kinetics of polymerization. Protected and deprotected polymers and model compounds are characterized using a variety of methods (NMR, GPC, IR, DLS, etc.). Reductive debenzylation provides the deprotected, hydrophilic polymers in high yield. Based on circular dichroism, the deprotected polymers possess a regular secondary structure in aqueous solution, which agrees favorably with the prediction of a helical structure using molecular modeling. Furthermore, we provide evidence suggesting that the polymers bind the lectin concanavalin A at the same site as natural carbohydrates, showing the potential of these polymers to mimic natural polysaccharides. PASs offer the advantages associated with synthetic polymers, such as greater control over structure and derivitization, and less batch-to-batch variation. At the same time, they preserve many of the structural features of natural polysaccharides, such as a stereochemically regular, rigid pyranose backbone, that make natural carbohydrate polymers important materials both for their unique properties and useful applications.
机译:使用β-内酰胺糖单体的阴离子开环聚合反应,可以合成具有确定分子量和窄分散性的手性聚酰胺基糖类(PAS)。 PAS具有以前未报告的主链结构,该结构由吡喃糖环组成,该吡喃糖环通过1位和2位通过酰胺键与α-立体化学连接。该单体由苄基保护的d-葡糖一步合成,并使用温和的反应条件进行聚合,以高收率得到的聚合度为25-> 150。计算模型揭示了单体的结构和空间体积如何影响聚合反应的热力学和动力学。使用多种方法(NMR,GPC,IR,DLS等)对受保护和脱保护的聚合物及模型化合物进行表征。还原性脱苄基可以高产率提供脱保护的亲水性聚合物。基于圆二色性,脱保护的聚合物在水溶液中具有规则的二级结构,这与使用分子模型预测螺旋结构非常吻合。此外,我们提供的证据表明该聚合物在与天然碳水化合物相同的位点结合凝集素伴刀豆球蛋白A,显示出这些聚合物模仿天然多糖的潜力。 PAS提供了与合成聚合物相关的优势,例如,更好地控制结构和衍生化,并减少了批次间的差异。同时,它们保留了天然多糖的许多结构特征,例如立体化学规则的刚性吡喃糖主链,这些特征使天然碳水化合物聚合物成为其独特性能和有用应用的重要材料。

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  • 年(卷),期 -1(134),39
  • 年度 -1
  • 页码 16255–16264
  • 总页数 25
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