Naumann Aleksandra, Alesio Jessica, Poonia Monika, Bothun Geoffrey D
Department of Chemical Engineering, University of Rhode Island, 2 East Alumni Ave, Kingston, RI, 02881.
J Environ Chem Eng. 2022 Apr;10(2). doi: 10.1016/j.jece.2022.107351. Epub 2022 Feb 9.
Poly- and Perfluoroalkyl substances (PFASs) are pollutants of emerging concern that persist in nature and pose environmental health and safety risks. PFAS disrupt biological membranes resulting in cellular inhibition, but the mechanism of disruption and the role of lipid composition remain unclear. We examine the role of phospholipid saturation and headgroup charge on the interactions between PFASs and phospholipid monolayers comprised of synthetic phosphocholine (PC) and phosphoglycerol (PG) lipids and prepared from bacteria membrane extracts rich in PG lipids from an environmentally relevant marine bacterium . When deposited on a buffered subphase containing PFAS, PFAS mixed within and fluidized zwitterionic and net-anionic monolayers leading to increases in monolayer compressibility that were driven by a combination of PFAS hydrophobicity and monolayer charge density. Differences in the monolayer response using saturated or unsaturated lipids are attributed to the ability of the unsaturated lipids to accommodate PFAS within 'void space' arising from the bent lipid tails. Similar fluidization and compressibility behavior were also observed in lipid monolayers. This work provides new insight into PFAS partitioning into bacterial membranes and the effect PFAS have on the physicomechanical properties of zwitterionic and charged lipid monolayers.
多氟烷基和全氟烷基物质(PFASs)是新出现的令人担忧的污染物,它们在自然界中持久存在,并对环境健康和安全构成风险。PFAS会破坏生物膜,导致细胞抑制,但破坏机制以及脂质组成的作用仍不清楚。我们研究了磷脂饱和度和头部基团电荷对PFAS与由合成磷酸胆碱(PC)和磷酸甘油(PG)脂质组成的磷脂单层之间相互作用的影响,这些磷脂单层是由富含PG脂质的细菌膜提取物制备而成,该细菌膜提取物来自一种与环境相关的海洋细菌。当沉积在含有PFAS的缓冲亚相上时,PFAS在两性离子和净阴离子单层内混合并使其流化,导致单层压缩性增加,这是由PFAS疏水性和单层电荷密度共同驱动的。使用饱和或不饱和脂质时单层响应的差异归因于不饱和脂质在由弯曲的脂质尾部产生的“空隙空间”内容纳PFAS的能力。在脂质单层中也观察到了类似的流化和压缩性行为。这项工作为PFAS在细菌膜中的分配以及PFAS对两性离子和带电脂质单层物理机械性质的影响提供了新的见解。