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首页> 外文期刊>Journal of Microscopy >Phase evolution in cholesterol/DPPC monolayers: atomic force microscopy and near field scanning optical microscopy studies.
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Phase evolution in cholesterol/DPPC monolayers: atomic force microscopy and near field scanning optical microscopy studies.

机译:胆固醇/ DPPC单层中的相演化:原子力显微镜和近场扫描光学显微镜研究。

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摘要

A combination of atomic force microscopy (AFM) and near field scanning optical microscopy has been used to study domain formation in dipalmitoylphosphatidylcholine (DPPC)/cholesterol monolayers with cholesterol concentrations ranging from 0 to 50%. The results show a clear evolution from a mixture of liquid expanded and liquid condensed phases for cholesterol concentrations < 10% to a mixture of liquid expanded and two cholesterol-containing phases at intermediate concentrations, and finally to a single homogeneous liquid ordered phase for 33% cholesterol. Mixtures of the various phases are clearly identified by height differences in AFM and in some cases by fluorescence imaging for samples containing 0.5% BODIPY dye, which localizes preferentially in the more fluid phase. Note that fluorescence imaging, at least with the dye used here, is unable to distinguish between the cholesterol-rich and cholesterol-poor phases detected at intermediate cholesterol concentrations. The combination of fluorescence and AFM imaging provides a more complete picture of the phase evolution for cholesterol/DPPC monolayers than could be obtained by either technique alone, and presents substantial advantages over conventional fluorescence microscopy in that submicrometre-sized domains can be readily detected.
机译:原子力显微镜(AFM)和近场扫描光学显微镜的结合已用于研究胆固醇浓度为0至50%的二棕榈酰磷脂酰胆碱(DPPC)/胆固醇单层中的结构域形成。结果表明,从胆固醇浓度<10%的液体膨胀相和液体浓缩相的混合物到中等浓度的液体膨胀相和两个含胆固醇相的混合物,到最后的单一均质液体有序相的混合物(33%),都有明显的演变。胆固醇。通过AFM中的高度差可以清楚地识别出各种相的混合物,在某些情况下,还可以通过荧光成像对含有0.5%BODIPY染料的样品进行荧光识别,该染料优先定位于流动性更高的相中。请注意,至少使用此处使用的染料进行的荧光成像无法区分在中等胆固醇浓度下检测到的富含胆固醇的阶段和缺乏胆固醇的阶段。荧光和AFM成像的结合提供了胆固醇/ DPPC单层相演化的更完整图片,比单独使用任何一种技术都可获得,并且与常规荧光显微镜相比,在亚微米大小的区域易于检测,它具有明显的优势。

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