Department of Clinical Laboratory Medicine, Southwest Hospital, Third Military Medical University (Army Medical University), Chongqing, 400038, P. R. China.
Key Laboratory for Biorheological Science and Technology of Ministry of Education, State and Local Joint Engineering Laboratory for Vascular Implants, Bioengineering College of Chongqing University, Chongqing, 400044, PR China.
J Nanobiotechnology. 2024 May 22;22(1):274. doi: 10.1186/s12951-024-02546-w.
Small extracellular vesicle-derived microRNAs (sEV-miRNAs) have emerged as promising noninvasive biomarkers for early cancer diagnosis. Herein, we developed a molecular probe based on three-dimensional (3D) multiarmed DNA tetrahedral jumpers (mDNA-Js)-assisted DNAzyme activated by Na, combined with a disposable paper-based electrode modified with a Zr-MOF-rGO-Au NP nanocomplex (ZrGA) to fabricate a novel biosensor for sEV-miRNAs Assay. Zr-MOF tightly wrapped by rGO was prepared via a one-step method, and it effectively aids electron transfer and maximizes the effective reaction area. In addition, the mechanically rigid, and nanoscale-addressable mDNA-Js assembled from the bottom up ensure the distance and orientation between fixed biological probes as well as avoid probe entanglement, considerably improving the efficiency of molecular hybridization. The fabricated bioplatform achieved the sensitive detection of sEV-miR-21 with a detection limit of 34.6 aM and a dynamic range from100 aM to 0.2 µM. In clinical blood sample tests, the proposed bioplatform showed results highly consistent with those of qRT-PCRs and the signal increased proportionally with the NSCLC staging. The proposed biosensor with a portable wireless USB-type analyzer is promising for the fast, easy, low-cost, and highly sensitive detection of various nucleic acids and their mutation derivatives, making it ideal for POC biosensing.
小细胞外囊泡衍生的 microRNAs(sEV-miRNAs)已成为有前途的非侵入性癌症早期诊断生物标志物。在此,我们开发了一种基于三维(3D)多臂 DNA 四面体跳跃物(mDNA-Js)辅助 Na 激活的 DNA 酶的分子探针,结合了一种带有 Zr-MOF-rGO-Au NP 纳米复合物(ZrGA)修饰的一次性纸质电极,用于制造新型用于 sEV-miRNAs 分析的生物传感器。通过一步法制备了由 rGO 紧密包裹的 Zr-MOF,它有效地辅助了电子转移并最大化了有效反应面积。此外,由底部向上组装的机械刚性和纳米级可寻址的 mDNA-Js 确保了固定生物探针之间的距离和方向,并避免了探针缠结,大大提高了分子杂交的效率。所制备的生物平台实现了 sEV-miR-21 的灵敏检测,检测限为 34.6 aM,动态范围为 100 aM 至 0.2 µM。在临床血液样本测试中,所提出的生物平台与 qRT-PCR 的结果高度一致,并且信号与 NSCLC 分期成正比增加。该生物传感器与便携式无线 USB 型分析仪相结合,有望实现各种核酸及其突变衍生物的快速、简便、低成本和高灵敏度检测,非常适合 POCT 生物传感。