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A Membrane Interferometer

机译:膜干涉仪

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摘要

Freestanding phospholipid bilayers have been assembled spanning shallow, micrometer-sized wells etched into a Si wafer substrate so that the bilayers are near (within hundreds of nanometers) but not in contact with the wafer surface. The proximity of the bilayers to the highly reflective Si/SiO_2 interface allows them to be probed by using fluorescence-interference techniques. These interferometry measurements show that the bilayers are curved and that the curvature can be varied by changes in osmotic pressure. Furthermore, the ionophore gramicidin can be incorporated into the bilayers, making them selectively permeable to monovalent cations. This freestanding architecture may overcome surface-interaction problems that occur when cell membrane proteins are introduced into solid supported bilayers, while also allowing for high-precision measurements of changes in fluorophore position by interferometry.
机译:独立的磷脂双层已经被组装成跨过被蚀刻到Si晶圆基板中的,微米级的浅孔中,从而使双层接近(在数百纳米之内)但不与晶圆表面接触。双层与高反射Si / SiO_2界面的接近程度使它们可以使用荧光干涉技术进行探测。这些干涉测量结果表明双层是弯曲的,并且曲率可以通过渗透压的变化而变化。此外,可将离子载体短杆菌肽掺入双层中,使它们对单价阳离子具有选择性的渗透性。这种独立的体系结构可以克服将细胞膜蛋白引入固相支持的双层时发生的表面相互作用问题,同时还可以通过干涉法高精度测量荧光团位置的变化。

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