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Studies in selectivity of lipases in preparation of cyanohydrins, sugar conjugates and secondary alcohols

机译:脂肪酶在制备氰醇,糖结合物和仲醇中的选择性研究

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摘要

Biocatalysis can be applied in organic synthetic chemistry to counter challenges posed by increased demands towards chemo-, regio- and stereoselectivity, not forgetting the need for greener chemistry. During the last 30 years, biocatalysis with the use of enzymes as chiral catalysts has become more common in chemistry laboratories and industrial processes. In this thesis, the use of lipases as versatile biocatalysts in the acylation of alcohols is examined both in the light of literature examples and four original publications.In the first part of the work presented in this thesis lipases were utilized in two examples concerning secondary alcohols. First, the kinetic resolution of heterocyclic aromatic secondary alcohols through transesterification was thoroughly examined including the studies of competing hydrolysis and esterification reactions. In another example, lipases were utilized in the formation of a dynamic systemic resolution (DSR) process which in turn was used as a developmental tool in the optimization of the dynamic kinetic resolution (DKR) of five heterocyclic aromatic cyanohydrins in one pot for the preparation of cyanohydrin esters as single enantiomers.In the second part of the work, the regio- and stereoselectivity of lipases was used to form sugar conjugates of glyceric and β-amino acids. The primary hydroxyl groups of methyl α-D-galacto-, -gluco- and -mannopyranosides were now acylated trough lipasecatalyzed transesterification and enantioselective lipase-catalyzed ring-opening of β- lactams, respectively.
机译:可将生物催化应用于有机合成化学中,以应对化学,区域和立体选择性日益增长的需求所带来的挑战,同时不要忘记对绿色化学的需求。在过去的30年中,使用酶作为手性催化剂的生物催化在化学实验室和工业过程中变得越来越普遍。本论文结合文献实例和四篇原始出版物,对脂肪酶在醇酰化反应中的通用生物催化剂的应用进行了研究。在本论文的第一部分中,脂肪酶被用于涉及仲醇的两个实例中。首先,彻底研究了杂环芳族仲醇通过酯交换反应的动力学拆分,包括竞争性水解和酯化反应的研究。在另一个实例中,脂肪酶被用于形成动态系统拆分(DSR)过程,而该过程又被用作开发工具,以优化一个罐中五个杂环芳族氰醇的动态动力学拆分(DKR)的制备。在工作的第二部分中,脂酶的区域选择性和立体选择性被用于形成甘油和β-氨基酸的糖缀合物。甲基α-D-半乳糖-,-葡萄糖-和-甘露吡喃糖苷的伯羟基现在分别被酰化的槽型脂肪酶催化的酯交换作用和对映选择性的脂肪酶催化的β-内酰胺的开环反应。

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    Sundell Riku;

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  • 年度 2014
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