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微型化生物分析系统:通过脂质体提高性能。

Miniaturized bioanalytical systems: enhanced performance through liposomes.

机构信息

Cornell University, Department of Biological and Environmental Engineering, Ithaca, NY 14853, United States.

出版信息

Curr Opin Chem Biol. 2012 Aug;16(3-4):444-52. doi: 10.1016/j.cbpa.2012.05.182. Epub 2012 Jun 4.

Abstract

Biorecognition-element labeled liposomes are simple and versatile tools used to amplify signals for the detection of analytes of environmental, clinical, food safety, and national security interest. Relying on measurement of encapsulated species via electrochemical or spectroscopic techniques, or properties inherent to liposomes themselves (such as mass, refractive index, or charge), many advances have been made in both bench-scale and microfluidic applications. Some of these measurement techniques are inherently sensitivity limited, but through the inclusion of liposomes, reduced limits of detection potentially broaden the utility towards otherwise challenging levels of analytes. Other advances took advantage of the hydrophobic environment required by many biorecognition elements to expand the target selectivity range or utilized the amphipathic nature of the lipid bilayer to provide enhanced separation capabilities. Novel handling approaches included wavelength-specific release of contents encapsulated within thermosensitive liposomes or application of electric fields to move, concentrate, and strategically lyse liposomes. These and other topics are discussed in terms of either present incorporation or adaptation to microfluidic devices.

摘要

生物识别元件标记脂质体是一种简单而通用的工具,用于放大分析物的信号检测,这些分析物涉及环境、临床、食品安全和国家安全利益。通过电化学或光谱技术测量包裹的物质,或脂质体本身固有的性质(如质量、折射率或电荷),在台式和微流控应用中都取得了许多进展。其中一些测量技术本身的灵敏度就有限,但通过包含脂质体,可以降低检测极限,从而使分析物的检测能力更上一层楼,甚至可以检测到更具挑战性的水平。其他进展则利用了许多生物识别元件所需的疏水环境,来扩大目标选择性范围,或者利用脂质双层的两亲性来提供增强的分离能力。新颖的处理方法包括热敏脂质体中封装的物质的波长特异性释放,或应用电场来移动、浓缩和策略性地裂解脂质体。这些和其他主题都将根据当前的应用或适应微流控设备的情况进行讨论。

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