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用于通过快速探针组修饰进行多重生物分子检测的链霉亲和素与编码水凝胶微粒的直接共轭

Direct Conjugation of Streptavidin to Encoded Hydrogel Microparticles for Multiplex Biomolecule Detection with Rapid Probe-Set Modification.

作者信息

Roh Yoon Ho, Kim Ju Yeon, Mun Seok Joon, Lee Hye Sun, Hwang Changhyun, Park Kyong Hwa, Bong Ki Wan

机构信息

Department of Chemical and Biological Engineering, Korea University, Seoul 02841, Korea.

Division of Oncology/Hematology, Department of Internal Medicine, Korea University College of Medicine, Seoul 02841, Korea.

出版信息

Polymers (Basel). 2020 Mar 3;12(3):546. doi: 10.3390/polym12030546.

Abstract

Encoded hydrogel microparticles synthesized via flow lithography have drawn attention for multiplex biomarker detection due to their high multiplex capability and solution-like hybridization kinetics. However, the current methods for preparing particles cannot achieve a flexible, rapid probe-set modification, which is necessary for the production of various combinations of target panels in clinical diagnosis. In order to accomplish the unmet needs, streptavidin was incorporated into the encoded hydrogel microparticles to take advantage of the rapid streptavidin-biotin interactions that can be used in probe-set modification. However, the existing methods suffer from low efficiency of streptavidin conjugation, cause undesirable deformation of particles, and impair the assay capability. Here, we present a simple and powerful method to conjugate streptavidin to the encoded hydrogel microparticles for better assay performance and rapid probe-set modification. Streptavidin was directly conjugated to the encoded hydrogel microparticles using the aza-Michael addition click reaction, which can proceed in mild, aqueous condition without catalysts. A highly flexible and sensitive assay was developed to quantify DNA and proteins using streptavidin-conjugated encoded hydrogel microparticles. We also validated the potential applications of our particles conducting multiplex detection of cancer-related miRNAs.

摘要

通过流动光刻合成的编码水凝胶微粒因其高多重检测能力和类似溶液的杂交动力学而在多重生物标志物检测中受到关注。然而,目前制备微粒的方法无法实现灵活、快速的探针组修饰,而这对于临床诊断中各种靶标组合的生产是必不可少的。为了满足这一未满足的需求,将链霉亲和素掺入编码水凝胶微粒中,以利用可用于探针组修饰的快速链霉亲和素-生物素相互作用。然而,现有方法存在链霉亲和素偶联效率低、导致微粒出现不良变形以及损害检测能力等问题。在此,我们提出一种简单而有效的方法,将链霉亲和素偶联到编码水凝胶微粒上,以实现更好的检测性能和快速的探针组修饰。使用氮杂迈克尔加成点击反应将链霉亲和素直接偶联到编码水凝胶微粒上,该反应可在温和的水性条件下无催化剂进行。开发了一种高度灵活且灵敏的检测方法,使用链霉亲和素偶联的编码水凝胶微粒对DNA和蛋白质进行定量。我们还验证了我们的微粒在进行癌症相关miRNA多重检测方面的潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23e4/7182943/14eb5b673fb8/polymers-12-00546-g001.jpg

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