Hunan Provincial Key Laboratory of Micro & Nano Materials Interface Science, College of Chemistry and Chemical Engineering, Central South University, Changsha, 410083, China.
Hengnan No.9 Middle School, Hengyang, 421171, China.
Mikrochim Acta. 2023 Apr 5;190(5):173. doi: 10.1007/s00604-023-05748-5.
Adenosine as a potential tumor marker is of great value for clinical disease diagnosis. Since the CRISPR-cas12a system is only capable of recognizing nucleic acid targets we expanded the CRISPR-cas12a system to determine small molecules by designing a duplexed aptamer (DA) converting g-RNA recognition of adenosine to recognition of aptamer complementary DNA strands (ACD). To further improve the sensitivity of determination, we designed a molecule beacon (MB)/gold nanoparticle (AuNP)-based reporter, which has higher sensitivity than traditional ssDNA reporter. In addition, the AuNP-based reporter enables more efficient and fast determination. The determination of adenosine under 488-nm excitation can be realized within 7 min, which is more than 4 times faster than traditional ssDNA reporter. The linear determination range of the assay to adenosine was 0.5-100 μM with the determination limit of 15.67 nM. The assay was applied to recovery determination of adenosine in serum samples with satisfactory results. The recoveries were between 91 and 106% and the RSD values of different concertation were below 4.8%. This sensitive, highly selective, and stable sensing system is expected to play a role in the clinical determination of adenosine and other biomolecules.
腺苷作为一种潜在的肿瘤标志物,对临床疾病诊断具有重要价值。由于 CRISPR-cas12a 系统只能识别核酸靶标,我们通过设计双链适体(DA)将 CRISPR-cas12a 系统扩展到用于确定小分子,将 g-RNA 对腺苷的识别转换为对适体互补 DNA 链(ACD)的识别。为了进一步提高测定的灵敏度,我们设计了基于分子信标(MB)/金纳米颗粒(AuNP)的报告分子,其灵敏度高于传统的 ssDNA 报告分子。此外,基于 AuNP 的报告分子能够实现更高效和快速的测定。在 488nm 激发下,腺苷的测定可以在 7 分钟内完成,比传统的 ssDNA 报告分子快 4 倍以上。该测定方法对腺苷的线性测定范围为 0.5-100 μM,测定限为 15.67 nM。该测定方法用于血清样品中腺苷的回收测定,结果令人满意。回收率在 91%至 106%之间,不同浓度的 RSD 值低于 4.8%。这种灵敏、高选择性和稳定的传感系统有望在腺苷和其他生物分子的临床测定中发挥作用。