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Infrared scanning near-field optical microscopy investigates order and clusters in model membranes

机译:红外扫描近场光学显微镜研究模型膜中的有序和簇

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Due to its surface sensitivity and high spatial resolution, scanning near-field optical microscopy (SNOM) has a significant potential to study the lateral organization of membrane domains and clusters. Compared to other techniques, infrared near-field microscopy in the spectroscopic mode has the advantage to be sensitive to specific chemical bonds. In fact, spectroscopic SNOM in the infrared spectral range (IR-SNOM) reveals the chemical content of the sample with a lateral resolution around 100 nm (Cricenti et al., 1998a, 1998b, 2003). Model lipid membranes were studied by IR-SNOM at several wavelengths. Topographical micrographs reveal the presence of islands at the surface and the optical images indicate the formation of locally ordered multiple bilayers - both critically important features for biotechnology and medical applications.
机译:由于其表面敏感性和高空间分辨率,扫描近场光学显微镜(SNOM)具有研究膜结构域和簇的横向组织的巨大潜力。与其他技术相比,光谱模式的红外近场显微镜具有对特定化学键敏感的优势。实际上,红外光谱范围内的光谱SNOM(IR-SNOM)揭示了样品的化学成分,横向分辨率约为100 nm(Cricenti等,1998a,1998b,2003)。通过IR-SNOM在几个波长下研究了模型脂质膜。形貌显微照片揭示了表面上存在岛状物,光学图像表明形成了局部有序的多层膜,这对生物技术和医学应用而言都是至关重要的特征。

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