Sharma V K, Srinivasan H, Gupta J, Mitra S
Solid State Physics Division, Bhabha Atomic Research Centre, Mumbai, 400085, India.
Homi Bhabha National Institute, Mumbai, 400094, India.
Soft Matter. 2024 Oct 9;20(39):7763-7796. doi: 10.1039/d4sm00597j.
The lateral diffusion of lipids within a membrane is of paramount importance, serving as a central mechanism in numerous physiological processes including cell signaling, membrane trafficking, protein activity regulation, and energy transduction pathways. This review offers a comprehensive overview of lateral lipid diffusion in model biomembrane systems explored through the lens of neutron scattering techniques. We examine diverse models of lateral diffusion and explore the various factors influencing this fundamental process in membrane dynamics. Additionally, we offer a thorough summary of how different membrane-active compounds, including drugs, antioxidants, stimulants, and membrane proteins, affect lipid lateral diffusion. Our analysis unveils the intricate interplay between these additives and membranes, shedding light on their dynamic interactions. We elucidate that this interaction is governed by a complex combination of multiple factors including the physical state and charge of the membrane, the concentration of additives, the molecular architecture of the compounds, and their spatial distribution within the membrane. In conclusion, we briefly discuss the future directions and areas requiring further investigation in the realm of lateral lipid diffusion, highlighting the need to study more realistic membrane systems.
脂质在膜内的横向扩散至关重要,是众多生理过程的核心机制,包括细胞信号传导、膜运输、蛋白质活性调节和能量转导途径。本综述全面概述了通过中子散射技术研究的模型生物膜系统中的脂质横向扩散。我们研究了横向扩散的不同模型,并探讨了影响膜动力学这一基本过程的各种因素。此外,我们还全面总结了不同的膜活性化合物,包括药物、抗氧化剂、兴奋剂和膜蛋白,如何影响脂质横向扩散。我们的分析揭示了这些添加剂与膜之间复杂的相互作用,阐明了它们的动态相互作用。我们阐明,这种相互作用受多种因素的复杂组合支配,包括膜的物理状态和电荷、添加剂的浓度、化合物的分子结构及其在膜内的空间分布。总之,我们简要讨论了脂质横向扩散领域未来的方向和需要进一步研究的领域,强调了研究更实际的膜系统的必要性。