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首页> 外文期刊>Chemistry: A European journal >A Hydrophilic Cyclodextrin Duplex Forming Supramolecular Assemblies by Physical Cross-Linking of a Biopolymer
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A Hydrophilic Cyclodextrin Duplex Forming Supramolecular Assemblies by Physical Cross-Linking of a Biopolymer

机译:通过物理交联的生物聚合物的亲水性环糊精双链形成超分子组装。

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New beta-cyclodextrin(beta-CD)dimeric species have been synthesised in which the two CD moieties are connected by one or two hydrophilic oli-go(ethylene oxide)spacers.Their com-plexation with sodium adamantylace-tate(free adamantane)and adaman-tane-grafted chitosan(AD-chitosan)was then studied by different complementary techniques and compared with their hydrophobic counterparts that contain an octamethylene spacer.Isothermal titration calorimetry experiments have demonstrated that the use of hydrophilic spacers between the two CDs instead of aliphatic chains makes almost all of the CD cavities available for the inclusion of free adamantane.Investigation of the interaction of the CDs with AD-chitosan by viscosity measurements strongly suggests that the molecular conformation of the CD dimeric species plays a crucial role in their cross-linking with the biopolymer.The derivative doubly linked with hydrophilic arms,also called a duplex,has been shown to be a more efficient cross-linking agent than its singly bridged counterpart,referred to as a dimer.Hence,only 0.5 molar equivalents of the hydrophilic duplex with respect to adamantane was required to obtain the maximum viscosity,whereas in the case of the duplex with aliphatic spacers,the maximum viscosity was achieved with a [duplex]/[AD] ratio of about 1.7(corresponding to a [CD]/ [AD] ratio of 2.5),but with a higher value.To clarify the relationships between the molecular architecture and complexation properties,computational studies were also performed that clearly confirmed the importance of double bridging.
机译:合成了新的β-环糊精(β-CD)二聚体物种,其中两个CD部分通过一个或两个亲水的低聚(环氧乙烷)间隔基连接。它们与金刚烷酸钠(游离金刚烷)和然后,通过不同的互补技术研究了adaman-tane接枝的壳聚糖(AD-壳聚糖),并将其与包含八亚甲基间隔基的疏水对应物进行了比较。等温滴定热法实验表明,两个CD之间使用亲水性间隔基代替了脂肪族链使几乎所有CD腔都可用于包含游离金刚烷。通过粘度测量研究CD与AD-壳聚糖的相互作用,强烈表明CD二聚体物种的分子构象在与CD的交联中起着至关重要的作用。已经证明与亲水性臂双重连接的衍生物(也称为双链体)是一种更有效的交联剂。因此,相对于金刚烷,仅需要0.5摩尔当量的亲水性双链体相对于金刚烷即可获得最大粘度,而对于带有脂肪族间隔基的双链体而言,最大粘度为[双链] / [AD]比率约为1.7(相当于[CD] / [AD]比率2.5)获得的,但具有更高的价值。为阐明分子结构与络合性质之间的关系,计算研究还进行了明确证实双重桥接的重要性的研究。

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