Department of Physiology and Medical Physics, Division of Physiology, Medical University of Innsbruck, Schöpfstrasse 41, A-6020 Innsbruck, Austria.
Department of Biochemistry, Faculty of Biology, Universidad Complutense, Jose Antonio Novais 2, E-28040 Madrid, Spain.
Biochim Biophys Acta Biomembr. 2018 May;1860(5):1152-1161. doi: 10.1016/j.bbamem.2018.01.010. Epub 2018 Jan 6.
In alveolar type II (AT II) cells, pulmonary surfactant (PS) is synthetized, stored and exocytosed from lamellar bodies (LBs), specialized large secretory organelles. By applying polarization microscopy (PM), we confirm a specific optical anisotropy of LBs, which indicates a liquid-crystalline mesophase of the stored surfactant phospholipids (PL) and an unusual case of a radiation-symmetric, spherocrystalline organelle. Evidence is shown that the degree of anisotropy is dependent on the amount of lipid layers and their degree of hydration, but unaffected by acutely modulating vital cell parameters like intravesicular pH or cellular energy supply. In contrast, physiological factors that perturb this structure include osmotic cell volume changes and LB exocytosis. In addition, we found two pharmaceuticals, Amiodarone and Ambroxol, both of which severely affect the liquid-crystalline order. Our study shows that PM is an easy, very sensitive, but foremost non-invasive and label-free method able to collect important structural information of PS assembly in live AT II cells which otherwise would be accessible by destructive or labor intense techniques only. This may open new approaches to dynamically investigate LB biosynthesis - the incorporation, folding and packing of lipid membranes - or the initiation of pathological states that manifest in altered LB structures. Due to the observed drug effects, we further suggest that PM provides an appropriate way to study unspecific drug interactions with alveolar cells and even drug-membrane interactions in general.
在肺泡 II 型 (AT II) 细胞中,肺表面活性剂 (PS) 从板层小体 (LB) 合成、储存和胞吐,LB 是一种特殊的大型分泌细胞器。通过应用偏光显微镜 (PM),我们确认了 LB 具有特定的光学各向异性,这表明储存的 PS 磷脂 (PL) 处于液晶中间相,并且是一种特殊的辐射对称的球晶状细胞器。有证据表明,各向异性的程度取决于脂质层的数量及其水合程度,但不受腔内 pH 值或细胞能量供应等关键细胞参数的急性调节的影响。相比之下,会破坏这种结构的生理因素包括渗透细胞体积变化和 LB 胞吐。此外,我们发现两种药物,胺碘酮和氨溴索,都严重影响了液晶态的有序性。我们的研究表明,PM 是一种简单、非常敏感、但首先是非侵入性和无标记的方法,能够收集活 AT II 细胞中 PS 组装的重要结构信息,而这些信息只能通过破坏性或劳动强度大的技术获得。这可能为动态研究 LB 生物合成 - 脂质膜的掺入、折叠和包装 - 或表现为 LB 结构改变的病理状态的起始,开辟新的途径。由于观察到的药物作用,我们进一步认为 PM 提供了一种合适的方法来研究肺泡细胞与非特异性药物相互作用,甚至一般的药物-膜相互作用。