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用于流式细胞免疫分析、酶滴定和定量聚合酶链反应的生物微珠。

Biological microbeads for flow-cytometric immunoassays, enzyme titrations, and quantitative PCR.

作者信息

Pataki Judit, Szabó Miklós, Lantos Erika, Székvölgyi Lóránt, Molnár Mónika, Hegedüs Eva, Bacsó Zsolt, Kappelmayer János, Lustyik György, Szabó Gábor

机构信息

Department of Biophysics and Cell Biology, Medical and Health Science Center, University of Debrecen, Debrecen, Hungary.

出版信息

Cytometry A. 2005 Nov;68(1):45-52. doi: 10.1002/cyto.a.20180.

Abstract

BACKGROUND

Introduction of microbeads into flow-cytometry has created a new scenario, making quantitative measurement of molecules dispersed in a homogeneous phase, with an extremely wide realm of already realized and potential applications possible. Development of this field has lead to specialized instrumentation and microbead arrays, dedicated to certain applications.

METHODS

Formaldehyde-fixed yeast and bacterial cells were conjugated with avidin and applied as microbeads, to establish a simple, convenient, flexible, and inexpensive flow-cytometric platform for various immunological and biochemical assays.

RESULTS

We have tested these "biological microbeads" for the simultaneous titration of human alpha-fetoprotein (AFP) and human Chorionic Gonadotropin (betahCG) hormone levels, for the titration of proteolytic and nucleolytic (restriction) enzymes, and for quantitative PCR, using biotinylated and fluorescent primers.

CONCLUSIONS

The use of biological microbeads for various immunological and biochemical assays has been demonstrated. The flow-cytometric methods proved to be at least as sensitive as the standard biochemical or immunological tests. For proteinase K activity measurements, a single enzyme molecule in the sample could be detected. The sensitivity, versatility, and low cost of the assays may advance flow-cytometry to become a central methodological platform in most laboratories. The biological microbeads offer virtually unlimited possibilities for fluorescent labeling (addressing), conjugation of ligand binding molecules, and they are easy to handle and perform well in a multiplex format.

摘要

背景

将微珠引入流式细胞术创造了一种新的局面,使得对分散在均相中的分子进行定量测量成为可能,其已实现的应用领域极为广泛,潜在应用领域也很广阔。该领域的发展催生了专门用于特定应用的仪器和微珠阵列。

方法

用抗生物素蛋白偶联甲醛固定的酵母和细菌细胞,并将其用作微珠,以建立一个简单、便捷、灵活且廉价的用于各种免疫和生化分析的流式细胞术平台。

结果

我们已使用这些“生物微珠”对人甲胎蛋白(AFP)和人绒毛膜促性腺激素(βhCG)水平进行同步滴定,对蛋白水解酶和核酸水解(限制性)酶进行滴定,并使用生物素化荧光引物进行定量PCR。

结论

已证明生物微珠可用于各种免疫和生化分析。流式细胞术方法被证明至少与标准生化或免疫测试一样灵敏。对于蛋白酶K活性测量,样品中的单个酶分子都能被检测到。这些分析的灵敏度、多功能性和低成本可能推动流式细胞术成为大多数实验室的核心方法平台。生物微珠在荧光标记(寻址)、配体结合分子偶联方面几乎具有无限可能性,并且易于操作,能以多重形式良好运行。

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