Mashaghi Alireza, Swann Marcus, Popplewell Jonathan, Textor Marcus, Reimhult Erik
Laboratory for Surface Science and Technology, Department of Materials, ETH Zurich, Wolfgang-Pauli-Strasse 10, CH-8093 Zurich, Switzerland.
Anal Chem. 2008 May 15;80(10):3666-76. doi: 10.1021/ac800027s. Epub 2008 Apr 19.
Supramolecular conformation and molecular orientation was monitored during supported lipid bilayer (SLB) formation using dual polarization interferometry (DPI). DPI was shown to enable real time sensitive determination of birefringence of the lipid bilayer together with thickness or refractive index (with the other a fixed value). This approach removes differences in mass loading due to anisotropy, so the mass becomes solely a function of the lipid d n/d c value. DPI measurements show highly reproducible qualitative and quantitative results for adsorption of liposomes of different lipid compositions and in buffers with or without CaCl 2. The packing of solvent-free self-assembled SLBs is shown to differ from other preparation methods. Birefringence analysis accompanied by mass and thickness measurements shows characteristic features of vesicle adsorption and SLB formation kinetics previously not demonstrated by evanescent optical techniques, including indications of percolation-type rupture of clusters of liposomes on the surface and correlated adsorption kinetics induced by liposome charge repulsion. Our study demonstrates that understanding of mechanistic details for an adsorption process for which conformational changes and ordering occur can be elucidated using DPI and greatly enhanced by modeling of optical birefringence. The data is in some respects more detailed than what can be obtained with conventional biosensing techniques like surface plasmon resonance and complementary to methods such as the quartz crystal microbalance.
在支持脂质双层(SLB)形成过程中,使用双偏振干涉测量法(DPI)监测超分子构象和分子取向。结果表明,DPI能够实时灵敏地测定脂质双层的双折射以及厚度或折射率(另一个为固定值)。这种方法消除了由于各向异性导致的质量负载差异,因此质量仅成为脂质dn/dc值的函数。DPI测量显示,对于不同脂质组成的脂质体在含或不含CaCl2的缓冲液中的吸附,定性和定量结果具有高度可重复性。结果表明,无溶剂自组装SLB的堆积与其他制备方法不同。双折射分析结合质量和厚度测量显示了囊泡吸附和SLB形成动力学的特征,这些特征以前未被倏逝光学技术所证实,包括表面脂质体簇的渗流型破裂迹象以及脂质体电荷排斥引起的相关吸附动力学。我们的研究表明,对于发生构象变化和有序化的吸附过程,利用DPI可以阐明其机理细节,并且通过光学双折射建模可以大大增强对这些细节 的理解。在某些方面,这些数据比通过表面等离子体共振等传统生物传感技术获得的数据更详细,并且与石英晶体微天平等方法互补。