Key Laboratory of Medicinal Chemistry and Molecular Diagnosis, Ministry of Education, Key Laboratory of Analytical Science and Technology of Hebei Province, College of Chemistry and Materials Science, Institute of Life Science and Green Development, Hebei University, Baoding, 071002, China.
Anal Methods. 2024 Oct 17;16(40):6872-6876. doi: 10.1039/d4ay01206b.
In this assay, based on the terminal protection of small-molecule-linked DNA, a new ultrasensitive real-time fluorescence strategy combined with an isothermal exponential amplification reaction (IEXPAR) has been established for protein assay. By the clever design of DNA, terminal protection is combined with efficient IEXPAR. The target protein explicitly binds to small molecules attached to the template DNA, protecting the template DNA from exonuclease I (Exo I) degradation. The added DNA primer hybridizes with the protected template DNA and triggers the following IEXPAR. IEXPAR has a super amplification efficiency of 10-10 times. The IEXPAR yields numerous double-stranded DNA (dsDNA) molecules. The fluorescence dye SYBR Green I (SG), which is sensitive to dsDNA, is used to determine the real-time fluorescence of the IEXPAR. Conversely, without the target protein, the template DNA is hydrolyzed by Exo I, failing to trigger the IEXPAR. The intriguing combination of IEXPAR and terminal protection realizes the ultrasensitive detection of protein. As low as 100 fmol L SA and 200 pg mL folic acid (FR) are accurately detected.
在本测定法中,基于小分子连接的 DNA 的末端保护,建立了一种新的超灵敏实时荧光策略,结合等温指数扩增反应(IEXPAR),用于蛋白质测定。通过巧妙的 DNA 设计,将末端保护与高效的 IEXPAR 相结合。目标蛋白明确地与附着在模板 DNA 上的小分子结合,保护模板 DNA 免受核酸外切酶 I(Exo I)的降解。添加的 DNA 引物与受保护的模板 DNA 杂交,并引发以下 IEXPAR。IEXPAR 具有 10-10 倍的超扩增效率。IEXPAR 产生大量的双链 DNA(dsDNA)分子。荧光染料 SYBR Green I(SG)对 dsDNA 敏感,用于测定 IEXPAR 的实时荧光。相反,没有目标蛋白时,模板 DNA 被 Exo I 水解,无法触发 IEXPAR。IEXPAR 和末端保护的有趣组合实现了蛋白质的超灵敏检测。可准确检测低至 100 fmol L 的 SA 和 200 pg mL 的叶酸(FR)。