Department of Chemical Engineering, Institute of Chemical Technology, Matunga (E), Mumbai 400019, India.
Department of Chemical Engineering, Institute of Chemical Technology, Matunga (E), Mumbai 400019, India.
Int J Biol Macromol. 2017 Aug;101:931-957. doi: 10.1016/j.ijbiomac.2017.03.055. Epub 2017 Mar 14.
The increasing interest of industrial enzymes demands for development of new downstream strategies for maximizing enzyme recovery. The significant efforts have been focused on the development of newly adapted technologies to purify enzymes in catalytically active form. Recently, an aqueous two phase system (ATPS) is emerged as powerful tools for efficient extraction and purification of enzymes due to their versatility, lower cost, process integration capability and easy scale-up. The present review gives an overview of effect of parameters such as tie line length, pH, neutral salts, properties of polymer and salt involved in traditional polymer/polymer and polymer/salt ATPS for enzyme recovery. Further, advanced ATPS have been developed based on alcohols, surfactants, micellar compounds to avoid tedious recovery steps for getting desired enzyme. In order to improve the selectivity and efficiency of ATPS, recent approaches of conventional ATPS combined with different techniques like affinity ligands, ionic liquids, thermoseparating polymers and microfluidic device based ATPS have been reviewed. Moreover, three phase partitioning is also highlighted for enzymes enrichment as a blooming technology for efficiently integrated bioseparation techniques. At the end, it includes an overview of CLEAs technology and organic-inorganic nanoflowers preparation as novel strategies for simultaneous extraction, purification and immobilization of enzymes.
工业酶日益受到关注,这就要求开发新的下游策略来最大限度地回收酶。人们已经做出了巨大努力,专注于开发新的适应技术,以催化活性形式纯化酶。最近,双水相系统(ATPS)作为一种有效的萃取和纯化酶的工具而出现,因为它具有多功能性、低成本、过程集成能力和易于放大等特点。本文综述了影响参数对酶回收的影响,如相图组成、pH 值、中性盐、聚合物和盐的性质等。此外,还基于醇、表面活性剂、胶束化合物开发了先进的 ATPS,以避免繁琐的回收步骤来获得所需的酶。为了提高 ATPS 的选择性和效率,本文综述了传统 ATPS 与亲和配体、离子液体、热分离聚合物和基于微流控装置等不同技术相结合的最新方法。此外,三相分配也被强调用于酶的富集,作为一种有效的集成生物分离技术。最后,本文还介绍了 CLEAs 技术和有机-无机纳米花的制备作为同时提取、纯化和固定化酶的新策略。