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Post-Translational Modification of Bionanoparticles as a Modular Platform for Biosensor Assembly

机译:平移后修饰的Bionanoparticles作为生物传感器组装的模块化平台。

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摘要

Context driven biosensor assembly with modular targeting and detection moieties is gaining significant attentions. Although protein-based nanoparticles have emerged as an excellent platform for biosensor assembly, current strategies of decorating bionanoparticles with targeting and detection moieties often suffer from unfavorable spacing and orientation as well as bionanoparticle aggregation. Herein, we report a highly modular post-translational modification approach for biosensor assembly based on sortase A-mediated ligation. This approach enables the simultaneous modifications of the Bacillus stearothermophilus E2 nanoparticles with different functional moieties for anti-body, enzyme, DNA aptamer, and dye decoration. The resulting easy-purification platform offers a high degree of targeting and detection modularity with signal amplification. This flexibility is demonstrated for the detection of both immobilized antigens and cancer cells.
机译:具有模块化目标和检测部分的上下文驱动生物传感器组件正受到广泛关注。尽管基于蛋白质的纳米粒子已成为生物传感器组装的绝佳平台,但目前使用靶向和检测部分修饰生物纳米粒子的策略通常遭受不利的间距和方向以及生物纳米粒子聚集的困扰。在本文中,我们报告了基于分选酶A介导的连接的高度模块化的生物传感器组装的翻译后修饰方法。这种方法可以同时修饰具有不同功能部分的嗜热脂肪芽孢杆菌E2纳米颗粒,以用于抗体,酶,DNA适体和染料修饰。最终的易纯化平台可通过信号放大提供高度的靶向和检测模块。这种灵活性可用于固定抗原和癌细胞的检测。

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