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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Novel 'Lipid-Flow Chip' configuration to determine donor-to-acceptor ratio-dependent fluorescence resonance energy transfer efficiency
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Novel 'Lipid-Flow Chip' configuration to determine donor-to-acceptor ratio-dependent fluorescence resonance energy transfer efficiency

机译:新型“脂质流芯片”配置可确定供体与受体的比例依赖性荧光共振能量转移效率

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摘要

We report on the determination of fluorescence resonance energy transfer (FRET) efficiency, which is dependent on the donor-to-acceptor (D-A) ratio, by using a new type of microchannel device called a "lipid-flow chip". The chip comprises two supported lipid bilayers (SLBs) that self-spread from either side of 10 mu m wide straight lines and carry molecules embedded in them. We first show that the diffusion process that occurs when the two SLBs collide with each other in the channel and form a unified SLB can be expressed by a one-dimensional diffusion equation. Next we describe a method for determining the FRET efficiency between NBD (donor) and Texas Red (acceptor) from observations using the lipid-flow chip by employing a one-dimensional diffusion model. The advantages of our method are that all the D-A ratios are achieved in one chip, and a large number of data are recorded in one chip. The FRET efficiency varies depending on the D-A ratio under conditions whereby the concentration of the sum of the donors and acceptors is constant. The Forster radius is also estimated from our,results using a known model describing two-dimensional FRET systems, which yields a radius consistent with the previously reported value for NBD and Texas Red.
机译:我们报告了荧光共振能量转移(FRET)效率的确定,该效率取决于供体与受体(D-A)的比例,方法是使用一种新型的微通道装置,称为“脂质流芯片”。该芯片包含两个支持的脂质双层(SLB),它们从10微米宽的直线的任一侧自动铺开并携带嵌入其中的分子。我们首先表明,当两个SLB在通道中相互碰撞并形成统一的SLB时发生的扩散过程可以用一维扩散方程表示。接下来,我们描述一种通过使用一维扩散模型从使用脂质流动芯片的观测值确定NBD(供体)和Texas Red(受体)之间的FRET效率的方法。我们方法的优点是所有D-A比率都在一块芯片中实现,并且大量数据记录在一块芯片中。在供体和受体的总和浓度恒定的条件下,FRET效率根据D-A比而变化。我们的结果也使用描述二维FRET系统的已知模型从结果中估算出Forster半径,该模型得出的半径与先前报道的NBD和Texas Red值一致。

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