Okamoto Yukihiro, Hamaguchi Kaito, Watanabe Mayo, Watanabe Nozomi, Umakoshi Hiroshi
Division of Chemical Engineering, Graduate School of Engineering Science, Osaka University, 1-3 Machikaneyama-cho, Toyonaka, Osaka 560-8531, Japan.
Membranes (Basel). 2022 Aug 9;12(8):770. doi: 10.3390/membranes12080770.
The lipid membrane forms nanodomains (rafts) and shows heterogeneous properties. These nanodomains relate to significant roles in various cell functions, and thus the analysis of the nanodomains in phase-separated lipid membranes is important to clarify the function and role of the nanodomains. However, the lipid membrane possesses small-sized nanodomains and shows a small height difference between the nanodomains and their surroundings at certain lipid compositions. In addition, nanodomain analysis sometimes requires highly sensitive and expensive apparatus, such as a two-photon microscope. These have prevented the analysis by the conventional fluorescence microscope and by the topography of the scanning probe microscope (SPM), even though these are promising methods in macroscale and microscale analysis, respectively. Therefore, this study aimed to overcome these problems in nanodomain analysis. We successfully demonstrated that solvatochromic dye, LipiORDER, could analyze the phase state of the lipid membrane at the macroscale with low magnification lenses. Furthermore, we could prove that the phase mode of SPM was effective in the visualization of specific nanodomains by properties difference as well as topographic images of SPM. Hence, this combination method successfully gave much information on the phase state at the micro/macro scale, and thus this would be applied to the analysis of heterogeneous lipid membranes.
脂质膜形成纳米结构域(筏)并表现出异质性。这些纳米结构域在各种细胞功能中发挥着重要作用,因此分析相分离脂质膜中的纳米结构域对于阐明纳米结构域的功能和作用很重要。然而,脂质膜具有小尺寸的纳米结构域,并且在某些脂质组成下,纳米结构域与其周围环境之间的高度差很小。此外,纳米结构域分析有时需要高灵敏度和昂贵的设备,如双光子显微镜。这些因素阻碍了传统荧光显微镜和扫描探针显微镜(SPM)形貌分析方法的应用,尽管它们分别是宏观和微观分析中很有前景的方法。因此,本研究旨在克服纳米结构域分析中的这些问题。我们成功证明,溶剂化显色染料LipiORDER可以用低倍物镜在宏观尺度上分析脂质膜的相态。此外,我们可以证明,SPM的相模式通过性质差异以及SPM的形貌图像,在可视化特定纳米结构域方面是有效的。因此,这种组合方法成功地提供了关于微/宏观尺度相态的大量信息,因此可应用于异质脂质膜的分析。