Geriatrics Department , Hubei Provincial Hospital of Traditional Chinese Medicine , Wuhan 430061 , China.
Clinical Laboratory , Wuhan No. 1 Hospital , Wuhan 430022 , China.
Anal Chem. 2019 Oct 15;91(20):13198-13205. doi: 10.1021/acs.analchem.9b03622. Epub 2019 Oct 4.
Exosomal microRNAs are essential in intercellular communications and disease progression, yet it remains challenging to quantify the expression level due to their small size and low abundance in blood. Here, we report a "sandwich" electrochemical exosomal microRNA sensor (SEEmiR) to detect target microRNA with high sensitivity and specificity. In SEEmiR, neutrally charged peptide nucleic acid (PNA) enables kinetically favorable hybridization with the microRNA target relative to negatively charged DNA, particularly in a short sequence (10 nt). More importantly, this property allows PNA to cooperate with a spherical nucleic acid (SNA) nanoprobe that heavily loads with oligonucleotide-adsorbed electroactive tags to enhance detection sensitivity and specificity. Such a PNA-microRNA-SNA sandwich construct is able to minimize the background noise via PNA, thereby maximizing the SNA-mediated signal amplification in electrostatic adsorption-based SEEmiR. The synergy between PNA and SNA makes the SEEmiR sensor able to achieve a broad dynamic range (from 100 aM to 1 nM) with a detection limit down to 49 aM (2 orders of magnitude lower than that without SNA) and capable of distinguishing a single-base mismatch. This ultrasensitive sensor provides label-free and enzyme-independent microRNA detection in cell lysates, unpurified tumor exosomal lysates, cancer patients' blood, and accurately differentiates the patients with breast cancer from the healthy ones, suggesting its potential as a promising tool in cancer diagnostics.
外泌体 microRNAs 在细胞间通讯和疾病进展中至关重要,但由于其在血液中的体积小、丰度低,因此定量其表达水平仍然具有挑战性。在这里,我们报告了一种“三明治”电化学外泌体 microRNA 传感器(SEEmiR),用于高灵敏度和特异性地检测靶标 microRNA。在 SEEmiR 中,中性肽核酸(PNA)能够与 microRNA 靶标进行动力学上有利的杂交,与带负电荷的 DNA 相比,这在短序列(10nt)中尤其如此。更重要的是,这种特性允许 PNA 与负载大量寡核苷酸吸附的电活性标记的球形核酸(SNA)纳米探针合作,以增强检测的灵敏度和特异性。这种 PNA-microRNA-SNA 三明治结构能够通过 PNA 最小化背景噪声,从而最大限度地提高静电吸附型 SEEmiR 中 SNA 介导的信号放大。PNA 和 SNA 之间的协同作用使 SEEmiR 传感器能够实现从 100aM 到 1nM 的宽动态范围,检测限低至 49aM(比没有 SNA 时低 2 个数量级),并能够区分单碱基错配。这种超灵敏传感器提供了无标记和无酶的细胞裂解物、未纯化的肿瘤外泌体裂解物、癌症患者血液中的 microRNA 检测,并能够准确地区分乳腺癌患者和健康人群,表明其在癌症诊断中具有广阔的应用前景。