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Low-cost and user-friendly biosensor to test the integrity of mRNA molecules suitable for field applications

机译:低成本和用户友好的生物传感器,用于测试适用于现场应用的mRNA分子的完整性

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摘要

The use of mRNA in biotechnology has expanded with novel applications such as vaccines and therapeutic mRNA delivery recently demonstrated. For mRNA to be used in patients, quality control assays will need to be routinely established. Currently, there is a gap between the highly sophisticated RNA integrity tests available and broader application of mRNA-based products by non-specialist users, e.g. in mass vaccination campaigns. Therefore, the aim of this work was to develop a low-cost biosensor able to test the integrity of a mRNA molecule with low technological requirements and easy end-user application. The biosensor is based on a bi-functional fusion protein, composed by the lambda N peptide that recognizes its cognate aptamer encoded on the 5' end of the RNA under study and beta-lactamase, which is able to produce a colorimetric response through a simple test. We propose two different mechanisms for signal processing adapted to two levels of technological sophistication, one based on spectrophotometric measurements and other on visual inspection. We show that the proposed lambda N-beta Lac chimeric protein specifically targets its cognate RNA aptamer, boxB, using both gel shift and biolayer interferometry assays. More importantly, the results presented confirm the biosensor performs reliably, with a wide dynamic range and a proportional response at different percentages of full-length RNA, even when genesized mRNAs were used. Thus, the features of the proposed biosensor would allow to end-users of products such as mRNA vaccines to test the integrity of the product before its application in a low-cost fashion, enabling a more reliable application of these products.
机译:在生物技术中使用mRNA已经扩展了新的应用,例如最近证明的疫苗和治疗mRNA递送。对于患者使用的mRNA,需要常规建立质量控制测定。目前,在高度复杂的RNA完整性测试之间存在差距,并通过非专业用户提供更广泛的MRNA的产品,例如,MRNA的产品。在大规模疫苗接种活动中。因此,这项工作的目的是开发一种低成本的生物传感器,能够用低技术要求和容易的最终用户应用来测试mRNA分子的完整性。生物传感器基于双官能融合蛋白,由λN肽组成,该蛋白质由鉴定其在研究和β-内酰胺酶的RNA的5'末端编码的同源适体,能够通过简单地产生比色响应测试。我们提出了两种不同的机制,用于适应两级技术复杂程度的信号处理,一个基于分光光度测量和其他目视检查。我们表明,所提出的Lambda n-Beta Lac嵌合蛋白使用凝胶移位和Biolayer干涉测定测定法具体靶向其同源RNA适体,BACKB。更重要的是,即使使用基因化MRNA,呈现出呈现的结果确认生物传感器可靠地执行,具有宽的动态范围和不同百分比的全长RNA的比例响应。因此,所提出的生物传感器的特征将允许产品如mRNA疫苗的最终用户以低成本方式在其应用前测试产品的完整性,从而可以更可靠地应用这些产品。

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