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Design and application of stimulus-responsive droplets and bubbles stabilized by phospholipid monolayers

机译:磷脂单层稳定刺激响应液滴和气泡的设计与应用

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摘要

Biomimetic colloidal particles are promising agents for bio-sensing, but current technologies fall far short of Nature's capabilities for sensing, assessing, and responding to stimuli. Phospholipid-containing cell membranes are capable of binding and responding to an enormous variety of biomolecules by virtue of membrane organization and the presence of receptor proteins. By tuning the composition and functionalization of simulated membranes, soft colloids such as droplets and bubbles can be designed to respond to various stimuli. Moreover, because lipid monolayers can surround almost any hydrophobic phase, the interior of the colloid can be selected to provide a sensitive readout, for example in the form of optical microscopy or acoustic detection. In this work, we review some advances made by our group and others in the formulation of lipid-coated particles with different internal phases such as fluorocarbons, hydrocarbons, or liquid crystals. In some cases, binding or displacement of stabilizing lipids gives rise to conformational changes or disruptions in local membrane geometry, which can be amplified by the interior phase. In other cases, multivalent analytes can promote aggregation or even membrane fusion, which can be utilized for an optical or acoustic readout. By highlighting a few recent examples, we hope to show that lipid monolayers represent a versatile biosensing platform that can react to and detect biomolecules by leveraging the unique capabilities of phospholipid membranes.
机译:仿生胶体颗粒是生物传感的有前途的药剂,但目前的技术远远缩短了大自然的传感,评估和响应刺激的能力。含磷脂的细胞膜能够通过膜组织和受体蛋白质的存在结合和响应各种各样的生物分子。通过调节模拟膜的组成和官能化,可以设计液滴和气泡的软胶体以响应各种刺激。此外,因为脂质单层可以围绕几乎任何疏水相,所以可以选择胶体的内部以提供敏感读出,例如以光学显微镜或声学检测的形式。在这项工作中,我们审查了我们的组和其他在制定具有不同内部相如氟碳,烃类或液晶的脂质涂覆的颗粒中的一些进展。在一些情况下,稳定脂质的结合或移位使局部膜几何形状的构象变化或破坏,其可以通过内部阶段扩增。在其他情况下,多价分析物可以促进聚集或甚至膜融合,其可用于光学或声学读数。通过突出几个最近的例子,我们希望展示脂质单层代表一个通用的生物传感平台,可以通过利用磷脂膜的独特能力来反应和检测生物分子。

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