Sun Zejun, Jin Hui, Sun Yujiao, Jiang Xiaowen, Gui Rijun
College of Chemistry and Chemical Engineering, Intellectual Property Research Institute, Qingdao University, Shandong 266071, P.R. China.
Nanoscale. 2020 Jul 21;12(27):14538-14548. doi: 10.1039/d0nr02342f. Epub 2020 Jul 2.
Herein, we report the preparation of Mn-doped Ni-based metal-organic frameworks (Mn-MOF) with 3D hierarchical flower-like superstructures through solvothermal synthesis. The Mn-MOF was assembled with 2D black phosphorous nanosheets (BPNSs) to achieve novel 2D/3D BPNSs/Mn-MOF nanocomposites, followed by the direct coupling of methylene blue (MB)-labeled DNA aptamer on the interface of the nanocomposites-modified glassy carbon electrode (GCE). The aptamer/BPNSs/Mn-MOF/GCE platform was utilized for the capture and efficient detection of stress-induced phosphoprotein 1 (STIP1). Experimental results confirmed that Mn-doping-induced the hierarchical petal growth of the flower-like 3D MOF and its assembly with BPNSs. GCE surface modifications with various components were studied by measuring electrochemical curves. The morphologies, microstructures and spectra of products were characterized. The optimal conditions used for electrochemical measurements were assessed. A smart aptasensor was explored by the aptamer/BPNSs/Mn-MOF/GCE that had multiple attractive merits, including synergistic effects of components, porous superstructures of hierarchical flower-like 3D Mn-MOF and specific aptamer-target recognition. The merits endowed this aptasensor with selective and sensitive signal responses to STIP1 over interferences. This aptasensor enabled the efficient detection of STIP1 in a broad range of 2 × 10-1 × 10 ng mL, accompanied by a low limit of detection of 1 pg mL. This aptasensor realized the successful determination of STIP1 in practical samples, exhibiting high reliability and practicability.
在此,我们报道了通过溶剂热合成法制备具有三维分级花状超结构的锰掺杂镍基金属有机框架(Mn-MOF)。将Mn-MOF与二维黑磷纳米片(BPNSs)组装,以获得新型的二维/三维BPNSs/Mn-MOF纳米复合材料,随后在纳米复合材料修饰的玻碳电极(GCE)界面上直接偶联亚甲基蓝(MB)标记的DNA适配体。该适配体/BPNSs/Mn-MOF/GCE平台用于捕获和高效检测应激诱导磷蛋白1(STIP1)。实验结果证实,锰掺杂诱导了花状三维MOF的分级花瓣生长及其与BPNSs的组装。通过测量电化学曲线研究了GCE表面用各种组分进行的修饰。对产物的形貌、微观结构和光谱进行了表征。评估了用于电化学测量的最佳条件。通过适配体/BPNSs/Mn-MOF/GCE探索了一种智能适配体传感器,其具有多种吸引人的优点,包括组分的协同效应、分级花状三维Mn-MOF的多孔超结构和特定的适配体-靶标识别。这些优点使该适配体传感器对STIP1具有选择性和灵敏的信号响应,而不受干扰。该适配体传感器能够在2×10⁻¹×10 ng mL的宽范围内高效检测STIP1,检测限低至1 pg mL。该适配体传感器实现了实际样品中STIP1的成功测定,具有高可靠性和实用性。