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关于糖苷酶法制备的五年专利期限。

Five years patenting time frame concerning enzymatic preparation of glycosides.

作者信息

Trincone Antonio

机构信息

Istituto di Chimica Biomolecolare, Consiglio Nazionale delle Ricerche, Pozzuoli (Napoli), Italy.

出版信息

Recent Pat Biotechnol. 2010 Jan;4(1):30-47. doi: 10.2174/187220810790069532.

Abstract

Carbohydrates are important molecules in various technological fields. The regio- and stereoselective synthesis of oligosaccharides for food and pharmaceutical molecular design and the selective glycosylation of peptides, proteins and drugs, as well as the selective hydrolysis of natural abundant saccharidic materials affording low molecular weight high value- added products, can be all considered significant aspects. Advance in the chemical synthesis of glycosidic bond represents one of the most successful topic in organic synthetic chemistry in the last half century for the intrinsic difficulties chemists have to face dealing with carbohydrates: yields and selectivity. Biocatalytic strategies selected for high-yield and stereospecific construction of glycosidic bonds are based principally on the action of two classes of enzymes, namely glycoside hydrolases (endo- and exo-glycosidases) and glycosyltransferases although only enzymes of the second class are devoted to synthetic action in nature. Reviewing patents on the preparation of glycosides is hard to manage, here a five years time frame for this review is set, considering it a suitable compromise in terms of amount of innovation and numbers of patents to analyze. Interest of researchers for the natural sources of biocatalysts, with particular emphasis on modified enzymes and lists of the most innovative patents in cosmetic, fine chemicals and food fields will be commented. Biomolecular asset of selected patents related to glycosides will be expressly considered. Large number of enzymes will be required in future in order to realize more sustainable new enzymatic processes to answer human needs.

摘要

碳水化合物在各个技术领域都是重要的分子。用于食品和药物分子设计的寡糖的区域和立体选择性合成、肽、蛋白质和药物的选择性糖基化,以及天然丰富的糖类物质的选择性水解以提供低分子量高附加值产品,都可被视为重要方面。糖苷键的化学合成进展是过去半个世纪有机合成化学中最成功的课题之一,因为化学家在处理碳水化合物时必须面对内在困难:产率和选择性。为高产率和立体特异性构建糖苷键而选择的生物催化策略主要基于两类酶的作用,即糖苷水解酶(内切和外切糖苷酶)和糖基转移酶,尽管在自然界中只有第二类酶专门用于合成作用。回顾糖苷制备方面的专利很难管理,因此本综述设定了五年的时间框架,认为这在创新量和要分析的专利数量方面是一个合适的折衷方案。将评论研究人员对生物催化剂天然来源的兴趣,特别强调修饰酶以及化妆品、精细化学品和食品领域最具创新性的专利清单。将明确考虑与糖苷相关的选定专利的生物分子资产。为满足人类需求,未来需要大量酶来实现更可持续的新酶促过程。

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