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Trehalose Analogues: Latest Insights in Properties and Biocatalytic Production

机译:海藻糖类似物:性质和生物催化生产的最新见解

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Trehalose (α-d-glucopyranosyl α-d-glucopyranoside) is a non-reducing sugar with unique stabilizing properties due to its symmetrical, low energy structure consisting of two 1,1-anomerically bound glucose moieties. Many applications of this beneficial sugar have been reported in the novel food (nutricals), medical, pharmaceutical and cosmetic industries. Trehalose analogues, like lactotrehalose (α-d-glucopyranosyl α-d-galactopyranoside) or galactotrehalose (α-d-galactopyranosyl α-d-galactopyranoside), offer similar benefits as trehalose, but show additional features such as prebiotic or low-calorie sweetener due to their resistance against hydrolysis during digestion. Unfortunately, large-scale chemical production processes for trehalose analogues are not readily available at the moment due to the lack of efficient synthesis methods. Most of the procedures reported in literature suffer from low yields, elevated costs and are far from environmentally friendly. “Greener” alternatives found in the biocatalysis field, including galactosidases, trehalose phosphorylases and TreT-type trehalose synthases are suggested as primary candidates for trehalose analogue production instead. Significant progress has been made in the last decade to turn these into highly efficient biocatalysts and to broaden the variety of useful donor and acceptor sugars. In this review, we aim to provide an overview of the latest insights and future perspectives in trehalose analogue chemistry, applications and production pathways with emphasis on biocatalysis.
机译:海藻糖(α-d-吡喃葡萄糖基α-d-吡喃葡糖苷)是一种非还原性糖,由于其对称的低能结构(由两个1,1,端基键合的葡萄糖部分组成)而具有独特的稳定特性。在新型食品(食品),医疗,制药和化妆品工业中,已经报道了这种有益糖的许多应用。海藻糖类似物,如乳果糖海藻糖(α-d-吡喃葡萄糖基α-d-半乳糖吡喃糖苷)或半乳果糖海藻糖(α-d-半乳糖吡喃糖基α-d-吡喃半乳糖苷)提供与海藻糖相似的益处,但显示出其他优点,例如益生元或低热量甜味剂由于它们在消化过程中具有抗水解性。不幸的是,由于缺乏有效的合成方法,目前尚不容易获得海藻糖类似物的大规模化学生产方法。文献中报道的大多数方法收率低,成本增加,并且不环保。在生物催化领域中发现的“更绿色”替代品,包括半乳糖苷酶,海藻糖磷酸化酶和TreT型海藻糖合酶,被建议作为海藻糖类似物生产的主要替代品。在过去的十年中,已经取得了重大进展,将其转变为高效的生物催化剂,并扩大了有用的供体糖和受体糖的种类。在这篇综述中,我们旨在概述海藻糖类似物化学,应用和生产途径的最新见解和未来观点,重点是生物催化。

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