Faculty of Chemistry, Jagiellonian University, Gronostajowa 2, 30-387 Kraków, Poland.
J R Soc Interface. 2024 Jan;21(210):20230559. doi: 10.1098/rsif.2023.0559. Epub 2024 Jan 10.
The Langmuir monolayer technique has been successfully used for decades to model biological membranes and processes occurring at their interfaces. Classically, this method involves surface pressure measurements to study interactions within membrane components as well as between external bioactive molecules (e.g. drugs) and the membrane. In recent years, surface-sensitive techniques were developed to investigate monolayers ; however, the obtained results are in many cases insufficient for a full characterization of biomolecule-membrane interactions. As result, description of systems using parameters such as mixing or excess thermodynamic functions is still relevant, valuable and irreplaceable in biophysical research. This review article summarizes the theory of thermodynamics of single- and multi-component Langmuir monolayers. In addition, recent applications of this approach to characterize surface behaviour and interactions (e.g. orientation of bipolar molecules, drug-membrane affinity, lateral membrane heterogeneity) are presented.
朗缪尔单层技术已成功应用数十年,用于模拟生物膜及其界面处发生的过程。传统上,该方法涉及表面压力测量,以研究膜成分内部以及外部生物活性分子(例如药物)与膜之间的相互作用。近年来,已经开发出了表面敏感技术来研究单层;然而,在许多情况下,获得的结果不足以充分表征生物分子-膜相互作用。因此,使用混合或过量热力学函数等参数来描述系统仍然在生物物理研究中具有相关性、价值和不可替代性。本文综述了单组分和多组分朗缪尔单层的热力学理论。此外,还介绍了该方法在表面行为和相互作用(例如双极分子的取向、药物-膜亲和力、膜的横向异质性)表征方面的最新应用。