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微流控技术作为在体外环境中进行定量细胞分析的平台。

Microfluidic technologies as platforms for performing quantitative cellular analyses in an in vitro environment.

作者信息

Martin R Scott, Root Paul D, Spence Dana M

机构信息

Department of Chemistry, Saint Louis University, St. Louis, MO 63103, USA.

出版信息

Analyst. 2006 Nov;131(11):1197-206. doi: 10.1039/b611041j. Epub 2006 Oct 6.

Abstract

Quite often, important cellular events occur in environments that are either not amenable to implanted sensors or other types of molecular probes. In such cases, a viable alternative to taking the sensor or probe to the biological sample of interest is to bring the sample of interest out of its natural environment to one that is more conducive to the measurement scheme. The disadvantage of the latter approach is that the sample may not behave in the same manner in vitro as it does in vivo, or that the agonists and other stimuli to which the sample is subjected to in vivo are no longer present. In this Tutorial Review, the authors attempt to provide some guidance, based on their own experiences and those of other scientists, to performing cellular measurements in a quantitative manner under in vitro conditions. Due to the expansive literature on analyses involving cells, the authors have limited this Tutorial Review to those methods involving microfluidic technologies, both in microbore tubing and in microfabricated channels. Initial reports of analyses involving cells in microbore tubing were first reported nearly two decades ago, while those in microfabricated fluidic devices appeared over a decade ago. However, more recently, the complexity of cell analyses using fabricated microfluidic devices (as opposed to microbore tubing) has increased due in part to the improvements in fabrication technologies, fluid handling and delivery capabilities, advances in coatings of the channels within the microfluidic device, and integrated detection schemes. Examples of cellular analyses in microbore tubing and in fabricated microfluidic devices will be given, as well as associated advantages and challenges. Finally, the authors' thoughts on cellular analyses are presented here using the classical steps in an analysis as a guide.

摘要

很多时候,重要的细胞事件发生在不适合植入传感器或其他类型分子探针的环境中。在这种情况下,将传感器或探针带到感兴趣的生物样本处的可行替代方法是将感兴趣的样本从其天然环境中取出,置于更有利于测量方案的环境中。后一种方法的缺点是样本在体外的行为可能与在体内不同,或者样本在体内所受到的激动剂和其他刺激不再存在。在本教程综述中,作者试图根据自己以及其他科学家的经验,为在体外条件下进行定量细胞测量提供一些指导。由于涉及细胞分析的文献数量众多,作者将本教程综述限制在那些涉及微流体技术的方法上,包括微管和微制造通道。关于微管中细胞分析的初步报告早在近二十年前就首次报道了,而微制造流体装置中的报告则出现在十多年前。然而,最近,使用制造的微流体装置(与微管相对)进行细胞分析的复杂性有所增加,部分原因是制造技术、流体处理和输送能力的改进,微流体装置内通道涂层的进展以及集成检测方案。将给出微管和制造的微流体装置中细胞分析的示例,以及相关的优点和挑战。最后,作者在此以分析中的经典步骤为指导,阐述对细胞分析的看法。

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