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PCR 的活性诊断成分 (ADIs):一种使用固定化 R5-激酶的二氧化硅生产 dNTP 的微型生物反应器。

Active diagnostic ingredients (ADIs) for PCR: A mini-bioreactor producing dNTPs with silica immobilized R5-kinases.

机构信息

Chemical Engineering and Biotechnology, University of Cambridge, Cambridge, UK.

出版信息

Biotechnol Bioeng. 2024 Dec;121(12):3834-3847. doi: 10.1002/bit.28837. Epub 2024 Sep 18.

Abstract

Low availability of routine nucleic acid amplification testing (NAAT) during infection outbreaks, especially in less resourced environments, was highlighted by the Covid pandemic. One of the barriers lies with the supply chain and cost of the active diagnostic ingredients (ADIs) that are the reagents for NAATs. This work explores a novel synthesis method to produce a key NAAT reagent, namely the 2'-deoxynucleoside 5'-triphosphate (dNTPs), via a reusable enzyme bioreactor, that can be integrated into a NAAT workflow. A self-immobilizing R5-silaffin kinase fusion enzyme was designed for immobilization on silica, converting dNMPs to their respective dNTP ADIs for PCR in a R5-kinase mini-bioreactor, designed to be implemented in a reusable device, stable over 2 months, when stored at 4°C. The performance is demonstrated for PCR reactions of the lambda genome and showed successful amplification up to 7.5 kb. In comparison with commercial dNTPs, in Plasmodium malariae NAATs, a high linear correlation was shown between the C value and the log(Copy Number), with lower incidence of false positives than with the commercial dNTPs. Overall a pathway to generate deoxynucleotides from monophosphate precursors was demonstrated, and an immobilized enzyme mini-bioreactor investigated as a proof-of-principle for work-flow integration with NAAT in low-resource research and diagnostics labs.

摘要

在感染爆发期间,常规核酸扩增检测(NAAT)的可用性较低,尤其是在资源较少的环境中,这一点在新冠疫情中得到了凸显。其中一个障碍在于供应链和用于 NAAT 的活性诊断成分(ADI)的成本。这项工作探索了一种通过可重复使用的酶生物反应器生产关键 NAAT 试剂 2'-脱氧核苷 5'-三磷酸(dNTPs)的新合成方法,该方法可集成到 NAAT 工作流程中。设计了一种自固定的 R5-丝氨酸蛋白酶激酶融合酶,用于固定在二氧化硅上,将 dNMP 转化为各自的 dNTP ADI,用于 R5-激酶微型生物反应器中的 PCR,该微型生物反应器旨在设计为可重复使用的装置,在 4°C 下储存时稳定 2 个月以上。该性能已通过 lambda 基因组的 PCR 反应得到证明,并成功扩增至 7.5kb。与商业 dNTPs 相比,在恶性疟原虫 NAATs 中,C 值与对数(拷贝数)之间显示出高度线性相关,假阳性率低于商业 dNTPs。总之,已经证明了从单磷酸盐前体生成脱氧核苷酸的途径,并研究了固定化酶微型生物反应器作为与低资源研究和诊断实验室中的 NAAT 集成的工作流程的原理验证。

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