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Silylation reaction of dextran:effect of experimental conditions on silylation yield,regioselectivity,and chemical stability of silylated dextrans

机译:葡聚糖的甲硅烷基化反应:实验条件对甲硅烷基化葡聚糖甲硅烷基化收率,区域选择性和化学稳定性的影响

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摘要

The controlled synthesis of biodegradable copolymers of dextran grafted with aliphatic polyesters first requires the preparation of polysaccharide derivatives soluble in organic solvents.Silylationof dextran can thus lead to such organosoluble derivatives and allows the polymerization of cyclic esters initiated from the nonsilylated OH functions.Silylation of dextran was studied in DMSO by different reactants such as 1,1,1,3,3,3-hexamethyldisilazane (HMDS) in the presence of various catalysts and N,O-bis(trimethylsilyl)acetamide (BSA).According to the silylating agent and the used experimental conditions,it was possible to obtain highly or totally silylated dextrans.In parallel,an investigation of the chemical stability of the dextran chain during silylation was performed.Thus,it was found that,when used at 50 degC,HDMS with or without catalysts gives a relatively high silylation yield and does not alter the dextran chain length,whereas at 80 degC,dextran degradation was observed.BSA is a very good silylating agent,which allows reaching 100% silylation even at 50 degC but provokes the degradation of the polysaccharide chains.The work was completed by a study of the reactivity order of the glucosidic OH functions toward silylation reaction.This order was found to be (OH~2>OH~4>OH~3) as already reported for other reactions.2D-NMR of highly silylated dextrans demonstrated that they are constituted of both quantitatively silylated glucose units and two types of disilylated ones.
机译:用脂肪族聚酯接枝的右旋糖酐的可生物降解共聚物的可控合成首先需要制备可溶于有机溶剂的多糖衍生物,因此右旋糖酐的甲硅烷基化可生成此类有机可溶性衍生物,并允许由非甲硅烷基化的OH官能团引发的环酯聚合。在各种催化剂和N,O-双(三甲基甲硅烷基)乙酰胺(BSA)的存在下,通过DMSO在不同的反应物如1,1,1,3,3,3-六甲基二硅氮烷(HMDS)上进行了研究。同时,对甲硅烷基化过程中右旋糖酐链的化学稳定性进行了研究。结果发现,在50℃下使用时,HDMS不论是否使用催化剂,甲硅烷基化率都相对较高,并且不会改变葡聚糖的链长,而在80℃时,会观察到葡聚糖降解。一种非常好的甲硅烷基化剂,即使在50摄氏度时也能达到100%的甲硅烷基化,但会引起多糖链的降解。通过研究糖苷OH官能团对甲硅烷基化反应的反应顺序来完成这项工作。如其他反应已经报道的那样(OH〜2> OH〜4> OH〜3)。高甲硅烷基化葡聚糖的2D-NMR证明它们既由定量甲硅烷基化的葡萄糖单元又由两种二甲硅烷基化的葡萄糖单元组成。

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