Biothermodynamics, TUM School of Life Sciences Weihenstephan, Technical University of Munich, 85354 Freising, Germany; email:
Annu Rev Chem Biomol Eng. 2021 Jun 7;12:495-518. doi: 10.1146/annurev-chembioeng-101420-033548. Epub 2021 Apr 13.
Since its first appearance in the 1960s, solid support-free liquid-liquid chromatography has played an ever-growing role in the field of natural products research. The use of the two phases of a liquid biphasic system, the mobile and stationary phases, renders the technique highly versatile and adaptable to a wide spectrum of target molecules, from hydrophobic to highly polar small molecules to proteins. Generally considered a niche technique used only for small-scale preparative separations, liquid-liquid chromatography currently lags far behind conventional liquid-solid chromatography and liquid-liquid extraction in process modeling and industrial acceptance. This review aims to expose a broader audience to this high-potential separation technique by presenting the wide variety of available operating modes and solvent systems as well as structured, model-based design approaches. Topics currently offering opportunities for further investigation are also addressed.
自 20 世纪 60 年代首次出现以来,无固相支撑的液-液色谱在天然产物研究领域发挥了越来越重要的作用。使用双液相系统的两个相,即流动相和固定相,使该技术具有高度的通用性和适应性,可以分离各种目标分子,从疏水性到高极性小分子再到蛋白质。通常被认为是一种仅用于小规模制备分离的利基技术,液-液色谱目前在过程建模和工业接受度方面远远落后于传统的液-固色谱和液-液萃取。本综述旨在通过介绍各种可用的操作模式和溶剂系统以及结构化、基于模型的设计方法,将这一高潜力的分离技术介绍给更广泛的受众。还讨论了目前提供进一步研究机会的主题。