Zizzi Eric A, Cavaglià Marco, Tuszynski Jack A, Deriu Marco A
PolitoMed Lab, Department of Mechanical and Aerospace Engineering, Politecnico di Torino, 10129 Turin, Italy.
Department of Physics, University of Alberta, Edmonton, AB, Canada.
iScience. 2022 Feb 18;25(3):103946. doi: 10.1016/j.isci.2022.103946. eCollection 2022 Mar 18.
Very few drugs in clinical practice feature the chemical diversity, narrow therapeutic window, unique route of administration, and reversible cognitive effects of volatile anesthetics. The correlation between their hydrophobicity and their potency and the increasing amount of evidence suggesting that anesthetics exert their action on transmembrane proteins, justifies the investigation of their effects on phospholipid bilayers at the molecular level, given the strong functional and structural link between transmembrane proteins and the surrounding lipid matrix. Molecular dynamics simulations of a model lipid bilayer in the presence of ethylene, desflurane, methoxyflurane, and the nonimmobilizer 1,2-dichlorohexafluorocyclobutane (also called F6 or 2N) at different concentrations highlight the structural consequences of VA partitioning in the lipid phase, with a decrease of lipid order and bilayer thickness, an increase in overall lipid lateral mobility and area-per-lipid, and a marked reduction in the mechanical stiffness of the membrane, that strongly correlates with the compounds' hydrophobicity.
临床实践中,很少有药物具有挥发性麻醉剂那样的化学多样性、狭窄的治疗窗口、独特的给药途径以及可逆的认知效应。它们的疏水性与其效力之间的相关性,以及越来越多的证据表明麻醉剂对跨膜蛋白起作用,鉴于跨膜蛋白与周围脂质基质之间存在强大的功能和结构联系,这使得在分子水平上研究它们对磷脂双层的影响具有合理性。在不同浓度的乙烯、地氟烷、甲氧氟烷以及非固定剂1,2 - 二氯六氟环丁烷(也称为F6或2N)存在的情况下,对模型脂质双层进行分子动力学模拟,突出了挥发性麻醉剂在脂质相中的分配所产生的结构后果,包括脂质有序性和双层厚度的降低、整体脂质横向流动性和每脂质面积的增加,以及膜的机械刚度的显著降低,而这与化合物的疏水性密切相关。