Ober Martina F, Müller-Deku Adrian, Baptist Anna, Ajanović Benjamin, Amenitsch Heinz, Thorn-Seshold Oliver, Nickel Bert
Faculty of Physics and CeNS, Ludwig-Maximilians-Universiät München, Geschwister-Scholl-Platz 1, Munich 80539, Germany.
Department of Pharmacy, Ludwig-Maximilians-Universität München, Butenandtstraße 5-13, Munich 81377, Germany.
Nanophotonics. 2022 Apr 15;11(10):2361-2368. doi: 10.1515/nanoph-2022-0053. eCollection 2022 May.
Photoresponsive materials feature properties that can be adjusted by light near-instantaneously, reversibly, and with high spatiotemporal precision. There is considerable interest in maximising the degree of photoswitching, and in measuring this degree during illumination in complex environments. We study the switching of photoresponsive lipid membranes that allow for precise and reversible manipulation of membrane shape, permeability, and fluidity. Though these macroscopic responses are clear, it is unclear how large the changes of / ratio are, and whether they can be improved. Here, we used small-angle X-ray scattering to measure the thickness of photoswitchable lipid membranes, and we correlate lipid bilayer thickness to / ratios. This reveals an unexpected dependency of photoswitching ratio upon aqueous phase composition. In buffer with ionic strength, we observe thickness variations twice as large as previously observed. Furthermore, soft X-rays can quantitatively isomerise photolipid membranes to the all- state; enabling X-ray-based membrane control. High energy X-rays do not influence the state of the photoswitches, presumably because they deposit less dose in the sample.
光响应材料具有可通过光近乎即时、可逆且以高时空精度进行调节的特性。人们对最大化光开关程度以及在复杂环境光照期间测量该程度有着浓厚兴趣。我们研究了光响应脂质膜的开关特性,这些脂质膜能够对膜的形状、通透性和流动性进行精确且可逆的操控。尽管这些宏观响应很明显,但尚不清楚/比率的变化有多大,以及它们是否能够得到改善。在此,我们利用小角X射线散射来测量可光开关脂质膜的厚度,并将脂质双层厚度与/比率相关联。这揭示了光开关比率对水相组成的意外依赖性。在具有离子强度的缓冲液中,我们观察到厚度变化是先前观察到的两倍大。此外,软X射线可将光脂质膜定量异构化为全态;从而实现基于X射线的膜控制。高能X射线不会影响光开关的状态,大概是因为它们在样品中沉积的剂量较少。