Kovrigina Elizaveta A, Kovrigin Evgenii L
Chemistry Department, Marquette University, PO Box 1881, Milwaukee, WI, 53201, USA.
J Fluoresc. 2016 Mar;26(2):379-83. doi: 10.1007/s10895-015-1743-6. Epub 2015 Dec 11.
Supported phospholipid bilayers are a convenient model of cellular membranes in studies of membrane biophysics and protein-lipid interactions. Traditionally, supported lipid bilayers are formed on a flat surface of a glass slide to be observed through fluorescence microscopes. This paper describes a method to enable fluorescence detection from the supported lipid bilayers using standard horizontal-beam spectrofluorometers instead of the microscopes. In the proposed approach, the supported lipid bilayers are formed on the inner optical surfaces of the standard fluorescence microcell. To enable observation of the bilayer absorbed on the cell wall, the microcell is placed in a standard fluorometer cell holder and specifically oriented to expose the inner cell walls to both excitation and emission channels with a help of the custom cell adaptor. The signal intensity from supported bilayers doped with 1 % (mol) of rhodamine-labeled lipid in the standard 3-mm optical microcell was equivalent to fluorescence of the 70-80 nM reference solution of rhodamine recorded in a commercial microcell adaptor. Because no modifications to the instruments are required in this method, a variety of steady-state and time-domain fluorescence measurements of the supported phospholipid bilayers may be performed with the spectral resolution using standard horizontal-beam spectrofluorometers.
在膜生物物理学和蛋白质-脂质相互作用的研究中,支撑磷脂双层是细胞膜的一种便捷模型。传统上,支撑脂质双层是在载玻片的平面上形成,以便通过荧光显微镜进行观察。本文描述了一种使用标准水平光束荧光分光光度计而非显微镜对支撑脂质双层进行荧光检测的方法。在所提出的方法中,支撑脂质双层在标准荧光微型样品池的内部光学表面上形成。为了能够观察吸附在样品池壁上的双层,将微型样品池放置在标准荧光计样品池支架中,并借助定制的样品池适配器进行特定定向,以使样品池内壁同时暴露于激发通道和发射通道。在标准的3毫米光学微型样品池中,掺杂1%(摩尔)罗丹明标记脂质的支撑双层的信号强度与在商用样品池适配器中记录的70 - 80 nM罗丹明参考溶液的荧光相当。由于该方法无需对仪器进行修改,因此可以使用标准水平光束荧光分光光度计以光谱分辨率对支撑磷脂双层进行各种稳态和时域荧光测量。