Department of Chemistry "Giacomo Ciamician", University of Bologna, 40126 Bologna, Italy.
byFlow srl, 40129 Bologna, Italy.
Molecules. 2023 Aug 23;28(17):6201. doi: 10.3390/molecules28176201.
Field-flow fractionation (FFF) is a family of single-phase separative techniques exploited to gently separate and characterize nano- and microsystems in suspension. These techniques cover an extremely wide dynamic range and are able to separate analytes in an interval between a few nm to 100 µm size-wise (over 15 orders of magnitude mass-wise). They are flexible in terms of mobile phase and can separate the analytes in native conditions, preserving their original structures/properties as much as possible. Molecular biology is the branch of biology that studies the molecular basis of biological activity, while biotechnology deals with the technological applications of biology. The areas where biotechnologies are required include industrial, agri-food, environmental, and pharmaceutical. Many species of biological interest belong to the operational range of FFF techniques, and their application to the analysis of such samples has steadily grown in the last 30 years. This work aims to summarize the main features, milestones, and results provided by the application of FFF in the field of molecular biology and biotechnology, with a focus on the years from 2000 to 2022. After a theoretical background overview of FFF and its methodologies, the results are reported based on the nature of the samples analyzed.
场流分离(FFF)是一类单相分离技术,用于温和地分离和表征悬浮液中的纳米和微系统。这些技术涵盖了极其广泛的动态范围,能够在数纳米至 100 微米的大小范围内(超过 15 个数量级的质量范围)分离分析物。它们在流动相方面具有灵活性,可以在天然条件下分离分析物,尽可能多地保留其原始结构/性质。分子生物学是生物学的一个分支,研究生物活性的分子基础,而生物技术则涉及生物学的技术应用。生物技术需要应用的领域包括工业、农业食品、环境和制药。许多具有生物学意义的物种都属于 FFF 技术的操作范围,并且在过去 30 年中,FFF 技术在这些样品分析中的应用稳步增长。本工作旨在总结 FFF 在分子生物学和生物技术领域的主要特点、里程碑和成果,重点关注 2000 年至 2022 年的研究。在对 FFF 及其方法进行理论背景概述之后,根据分析样品的性质报告结果。