首页> 外文期刊>Analytical chemistry >Regulated Attachment Method for Reconstituting Lipid Bilayers of Prescribed Size within Flexible Substrates
【24h】

Regulated Attachment Method for Reconstituting Lipid Bilayers of Prescribed Size within Flexible Substrates

机译:规整的附着方法在柔性基板中重构规定大小的脂质双层。

获取原文
获取原文并翻译 | 示例
           

摘要

A new method called the regulated attachment method (RAM) for reproducibly forming lipid bilayers within flexible substrates has been developed that enables precise control over the size of the bilayer. This technique uses a deformable flexible substrate to open and close an aperture that subdivides aqueous volumes submersed in an organic solvent. Phospholipids incorporated as vesicles in the aqueous phase self-assemble at the oil/water interface to form lipid monolayers that encapsulate each aqueous volume. Controlled attachment of opposing lipid monolayers is achieved by regulating the dimensions of the aperture in the substrate that separates the adjacent aqueous volumes. In this manner, the size of a lipid bilayer formed within a flexible substrate is a function of the substrate and aperture dimensions, and not determined by the sizes or shapes of the aqueous volumes. Lipid bilayers formed within the prototype flexible substrate exhibit DC resistances consistently higher than 10 G(OMEGA) and can survive 20-30X changes in area without rupture. Furthermore, RAM permits lipid bilayers to be completely unzipped after thinning by applying sufficient force to fully close the dividing aperture and even allows the introduction of species, such as alamethicin channels, into preformed lipid bilayers via controlled injection through an intersecting channel within the substrate. Controlling the size of the interface through indirect interactions with the supporting substrate offers a new platform for assembling durable lipid bilayers. We envision that this technology can be scaled to higher dimensions consisting of multiple apertures required for creating aqueous networks partitioned by functional lipid bilayers and to smaller length scales to produce very small lipid bilayers capable of hosting single proteins.
机译:已经开发出一种新的方法,称为可调控附着方法(RAM),用于在柔性基材中可重复形成脂质双层,从而可以精确控制双层的大小。该技术使用可变形的柔性基板来打开和关闭孔,该孔细分了浸入有机溶剂中的水体积。作为囊泡掺入水相中的磷脂在油/水界面处自组装,形成脂质单层,囊封每个水溶液。通过调节分离相邻水体积的基质中孔的尺寸,可以实现相对的脂质单层的受控附着。以这种方式,在柔性基底内形成的脂质双层的尺寸是基底和孔尺寸的函数,而不是由含水体积的尺寸或形状决定。在原型柔性基板内形成的脂质双层表现出的直流电阻始终高于10 G(OMEGA),并且可以承受20-30倍的面积变化而不会破裂。此外,RAM通过施加足够的力以完全关闭分隔孔,使脂质双层在变薄后完全解压缩,甚至允许通过受控注射通过基质内的相交通道将诸如阿乐美辛通道之类的物质引入到预先形成的脂质双层中。通过与支撑底物的间接相互作用来控制界面的大小,为组装耐用的脂质双层提供了一个新的平台。我们设想该技术可以按比例缩放到更高的尺寸,该尺寸包括创建由功能性脂质双分子层分隔的水性网络所需的多个孔,并缩小到较小的长度尺度,以产生能够容纳单个蛋白质的非常小的脂质双分子层。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号