Department of Chemistry, Suleyman Demirel University, Isparta 32260, Turkey.
Department of Chemical and Biomedical Engineering, University of South Florida, Tampa, Florida 33620-5250, United States.
ACS Appl Bio Mater. 2021 Nov 15;4(11):7932-7941. doi: 10.1021/acsabm.1c00854. Epub 2021 Nov 3.
In this study, surface acoustic wave (SAW) systems are described for the removal of molecules that are unbound to micromotors, thereby lowering the detection limit of the cancer-related biomarker miRNA-21. For this purpose, in the first step, mass production of the Au/Pt bimetallic tubular micromotor was performed with a simple membrane template electrodeposition. The motions of catalytic Au/Pt micromotors in peroxide fuel media were analyzed under the SAW field effect. The changes in the micromotor speed were investigated depending on the type and concentration of surfactants in the presence and absence of SAW streaming. Our detection strategy was based on immobilization of probe dye-labeled single-stranded probe DNA (6-carboxyfluorescein dye-labeled-single-stranded DNA) to Au/Pt micromotors that recognize target miRNA-21. Before/after hybridization of miRNA-21 (for both w/o SAW and SAW streaming conditions), the changes in the speed of micromotors and their fluorescence intensities were studied. The response of fluorescence intensities was observed to be linearly varied with the increase of the miRNA-21 concentration from 0.5 to 5 nM under both w/o SAW and with SAW. The resulting fluorescence sensor showed a limit of detection of 0.19 nM, more than 2 folds lower compared to w/o SAW conditions. Thus, the sensor and behaviors of Au/Pt tubular micromotors were improved by acoustic removal systems.
在这项研究中,描述了用于去除与微马达未结合的分子的表面声波 (SAW) 系统,从而降低了癌症相关生物标志物 miRNA-21 的检测限。为此,在第一步中,使用简单的膜模板电沉积法进行了 Au/Pt 双金属管状微马达的大规模生产。在 SAW 场效应下分析了在过氧化物燃料介质中催化 Au/Pt 微马达的运动。研究了在存在和不存在 SAW 流的情况下,表面活性剂的类型和浓度对微马达速度变化的影响。我们的检测策略基于将探针染料标记的单链探针 DNA(6-羧基荧光素染料标记的单链 DNA)固定到识别靶 miRNA-21 的 Au/Pt 微马达上。在 miRNA-21 的杂交之前/之后(对于无 SAW 和有 SAW 流两种情况),研究了微马达速度及其荧光强度的变化。观察到荧光强度的响应随着 miRNA-21 浓度从 0.5 到 5 nM 的增加而呈线性变化,在无 SAW 和有 SAW 两种情况下均如此。由此产生的荧光传感器的检测限为 0.19 nM,比无 SAW 条件下低 2 倍以上。因此,通过声去除系统改善了 Au/Pt 管状微马达的传感器和行为。