Hövelmann Svenja C, Röhrl Michael, Dieball Ella, Dargasz Michelle, Kuhn Jule, Giri Rajendra P, Reise Franziska, Soloviov Dmytro, Blanchet Clement E, Paulus Michael, Lindhorst Thisbe K, Murphy Bridget M
Institute of Experimental and Applied Physics Kiel University Leibnizstraße 19 24118Kiel Germany.
Ruprecht Haensel Laboratory Deutsche Elektronen-Synchrotron DESY Notkestraße 85 22607Hamburg Germany.
J Appl Crystallogr. 2025 Jul 8;58(Pt 4):1322-1331. doi: 10.1107/S1600576725004923. eCollection 2025 Aug 1.
This study focuses on the kinetics of light-induced mesophase transitions in lyotropic liquid crystals containing a mixture of phospho-lipids and azo-benzene amphiphiles. Lipid membranes organize in a wide range of morphologies, directly influencing their functionality and the efficiency of associated components such as proteins. Transitions between mesophases occur naturally during membrane fusion and can also be triggered by multiple factors, such as pH, salinity, temperature and light. Employing light to isomerize artificial photoswitchable lipids in mixed model membranes containing 1,2-dipalmitoyl-phos-pha-tidylcholine or 1,2-didecanoyl-phosphatidylcholine revealed light-induced structural changes including mesophase transitions from a lamellar to a cubic 3 phase. Performing time-resolved small-angle X-ray scattering measurements, the kinetics of the change in membrane repeat distance and the transition from a lamellar to a bicontinuous cubic phase could be captured on the timescale of tens of seconds. The results demonstrate new possibilities for investigating intermediate states during mesophase transitions that are important to understand membrane fusion, and they highlight the potential of photoswitchable lipids for designing bespoke drug delivery systems.
本研究聚焦于含有磷脂和偶氮苯两亲物混合物的溶致液晶中光诱导中间相转变的动力学。脂质膜呈现出多种形态,直接影响其功能以及诸如蛋白质等相关组分的效率。中间相之间的转变在膜融合过程中自然发生,也可由多种因素触发,如pH值、盐度、温度和光。在含有1,2 - 二棕榈酰磷脂酰胆碱或1,2 - 二癸酰磷脂酰胆碱的混合模型膜中利用光使人工光开关脂质异构化,揭示了光诱导的结构变化,包括从层状到立方相3的中间相转变。通过进行时间分辨小角X射线散射测量,可在几十秒的时间尺度上捕捉膜重复距离的变化动力学以及从层状到双连续立方相的转变。这些结果展示了研究中间相转变过程中对理解膜融合至关重要的中间状态的新可能性,并且突出了光开关脂质在设计定制药物递送系统方面的潜力。