Department of Chemistry, University of Delhi, Delhi-110 007, India.
Phys Chem Chem Phys. 2022 Jun 8;24(22):13474-13509. doi: 10.1039/d2cp00084a.
Deep eutectic solvents (DESs) have emerged as a new class of green, designer and biocompatible solvents, an alternative to conventional organic solvents and ionic liquids (ILs) which are comparatively toxic and non-biodegradable. DESs are eutectic mixtures that are formed when a hydrogen bond acceptor (HBA) is mixed with a hydrogen bond donor (HBD) at particular molar ratios by mechanical grinding or under mild heating conditions. Very recently, these solvents have been the center of attention for researchers in biotechnology, biomedicine and various scientific applications. These environmentally benign solvents have a close analogy with ILs; however, they offer certain unique merits over traditional ILs. DESs display remarkable properties such as easy preparation, tunable composition, biodegradability, recyclability, inherently low toxicity, sustainability and biocompatibility; these special features validate DESs as new potential solvents/co-solvents for biomolecules. Mechanistically, the biocompatibility and protein friendly nature of DESs depend on various factors, which include the composition of the DES, viscosity and hydration level. Therefore, it becomes an essential task to bring together all the studies related to protein behaviour in DESs to unlock their biomolecular proficiency. This review specifically highlights recent insights into the biomacromolecular functionality in DESs, including outlines of the solubilization and stabilization of proteins, long term protein packaging, different extraction methods and enzyme activation in the presence of DESs. A literature survey reveals that DESs act as green media in which the protein structure and activity are retained. In some cases, proteins refolded and enzymatic activity was enhanced several fold in the presence of DESs. Furthermore, we have reviewed the possible mechanistic behaviour behind protein stabilization, refolding and activation in DESs. Overall, the main objective of this review is to explicate the advantages of the introduction of DESs for biomolecules and to demonstrate the versatility of these eco-friendly solvents for future bio-based applications.
深共熔溶剂(DESs)作为一类新型的绿色、设计型和生物相容型溶剂,替代了传统的有机溶剂和离子液体(ILs),后者毒性较大且不可生物降解。DESs 是由氢键受体(HBA)与氢键供体(HBD)以特定摩尔比在机械研磨或温和加热条件下混合形成的共晶混合物。最近,这些溶剂成为生物技术、生物医学和各种科学应用领域研究人员关注的焦点。这些环境友好型溶剂与 ILs 非常相似;然而,它们相对于传统 ILs 具有某些独特的优势。DESs 具有易于制备、可调节组成、生物降解性、可回收性、固有低毒性、可持续性和生物相容性等显著特性;这些特殊性质使 DESs 成为生物分子的新型潜在溶剂/共溶剂。从机制上讲,DESs 的生物相容性和蛋白质亲和性取决于多种因素,包括 DES 的组成、粘度和水合程度。因此,将所有与 DES 中蛋白质行为相关的研究汇集在一起,以揭示其生物分子的效能,这是一项必不可少的任务。本综述特别强调了 DESs 中生物大分子功能的最新研究进展,包括蛋白质的溶解和稳定化、蛋白质的长期包装、不同的提取方法以及 DESs 存在下酶的激活等方面的概述。文献综述表明,DESs 作为绿色介质,可以保留蛋白质的结构和活性。在某些情况下,蛋白质在 DESs 的存在下重新折叠,酶活性增强了数倍。此外,我们还综述了 DESs 中蛋白质稳定化、重折叠和激活的可能机制行为。总的来说,本综述的主要目的是阐明 DESs 对生物分子的优势,并展示这些环保溶剂在未来基于生物的应用中的多功能性。