Brozell Adrian M, Muha Michelle A, Sanii Babak, Parikh Atul N
Department of Applied Science, University of California, Davis, CA 95616, USA.
J Am Chem Soc. 2006 Jan 11;128(1):62-3. doi: 10.1021/ja056701j.
We report the formation of a new class of supported membranes consisting of a fluid phospholipid bilayer coupled directly to a broadly tunable colloidal crystal with a well-defined photonic band gap. For nanoscale colloidal crystals exhibiting a band gap at the optical frequencies, substrate-induced vesicle fusion gives rise to a surface bilayer riding onto the crystal surface. The bilayer is two-dimensionally continuous, spanning multiple beads with lateral mobilities which reflect the coupling between the bilayer topography and the curvature of the supporting colloidal surface. In contrast, the spreading of vesicles on micrometer scale colloidal crystals results in the formation of bilayers wrapping individual colloidal beads. We show that simple UV photolithography of colloidal crystals produces binary patterns of crystal wettabilities, photonic stopbands, and corresponding patterns of lipid mono- and bilayer morphologies. We envisage that these approaches will be exploitable for the development of optical transduction assays and microarrays for many membrane-mediated processes, including transport and receptor-ligand interactions.
我们报道了一类新型支撑膜的形成,该膜由直接与具有明确光子带隙的可广泛调谐胶体晶体耦合的流体磷脂双层组成。对于在光频率下呈现带隙的纳米级胶体晶体,底物诱导的囊泡融合会产生一个位于晶体表面的表面双层。该双层在二维上是连续的,跨越多个珠子,其横向迁移率反映了双层形貌与支撑胶体表面曲率之间的耦合。相比之下,囊泡在微米级胶体晶体上的铺展会导致形成包裹单个胶体珠子的双层。我们表明,胶体晶体的简单紫外光刻会产生晶体润湿性、光子阻带的二元图案以及脂质单层和双层形态的相应图案。我们设想,这些方法将可用于开发许多膜介导过程的光学转导分析和微阵列,包括运输和受体 - 配体相互作用。