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通过表面酶促转化创建先进的多功能生物传感器。

Creating advanced multifunctional biosensors with surface enzymatic transformations.

作者信息

Lee Hye Jin, Wark Alastair W, Corn Robert M

机构信息

Department of Chemistry, University of California-Irvine, Irvine, California 92697, USA.

出版信息

Langmuir. 2006 Jun 6;22(12):5241-50. doi: 10.1021/la060223o.

Abstract

This paper summarizes our recent work on the coupling of surface enzyme chemistry and bioaffinity interactions on biopolymer microarrays for the creation of multiplexed biosensors with enhanced selectivity and sensitivity. The surface sensitive techniques of surface plasmon resonance imaging (SPRI) and surface plasmon fluorescence spectroscopy (SPFS) are used to detect the surface enzymatic transformations in real time. Three specific examples of novel coupled surface bioaffinity/surface enzymatic processes are demonstrated: (i) a surface enzymatic amplification method utilizing the enzyme ribonuclease H (RNase H) in conjunction with RNA microarrays that permits the ultrasensitive direct detection of genomic DNA at a concentration of 1 fM without labeling or PCR amplification, (ii) the use of RNA-DNA ligation chemistry to create renewable RNA microarrays from single stranded DNA microarrays, and (iii) the application of T7 RNA polymerase for the on-chip replication of RNA from double stranded DNA microarray elements. In addition, a simple yet powerful theoretical framework that includes the contributions of both enzyme adsorption and surface enzyme kinetics is used to quantitate surface enzyme reactivity. This model is successfully applied to SPRI and SPFS measurements of surface hydrolysis reactions of RNase H and Exonuclease III (Exo III) on oligonucleotide microarrays.

摘要

本文总结了我们近期在生物聚合物微阵列上进行表面酶化学与生物亲和相互作用耦合的工作,旨在创建具有更高选择性和灵敏度的多重生物传感器。利用表面等离子体共振成像(SPRI)和表面等离子体荧光光谱(SPFS)等表面敏感技术实时检测表面酶促反应。展示了三种新型耦合表面生物亲和/表面酶促过程的具体实例:(i)一种表面酶促扩增方法,利用核糖核酸酶H(RNase H)结合RNA微阵列,可在无需标记或PCR扩增的情况下,以1 fM的浓度超灵敏直接检测基因组DNA;(ii)使用RNA-DNA连接化学方法从单链DNA微阵列创建可再生RNA微阵列;(iii)应用T7 RNA聚合酶从双链DNA微阵列元件进行芯片上RNA复制。此外,还使用了一个简单而强大的理论框架,该框架包括酶吸附和表面酶动力学的贡献,用于定量表面酶反应性。该模型成功应用于RNase H和核酸外切酶III(Exo III)在寡核苷酸微阵列上表面水解反应的SPRI和SPFS测量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f274/2515861/fbb5148de939/nihms-60991-f0001.jpg

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