State Key Lab of Food Science and Technology, Jiangnan University, Wuxi, Jiangsu, 214122, P. R. China.
Internatioal joint Research Laboratory for Biointerface and Biodetection Collaborative Innovationcenter of Food Safety and Quality Control in Jiangsu Province, and School of Food Science and Technology, Jiangnan University, Wuxi, 214122, P.R. China.
Adv Mater. 2017 Nov;29(42). doi: 10.1002/adma.201703410. Epub 2017 Oct 5.
Assemblies of nanomaterials for biological applications in living cells have attracted much attention. Herein, graphene oxide (GO)-gold nanoparticle (Au NP) assemblies are driven by a splint DNA strand, which is designed with two regions at both ends that are complementary with the DNA sequence anchored on the surface of the GO and the Au NPs. In the presence of microRNA (miR)-21 and epithelial cell-adhesion molecule (EpCAM), the hybridization of miR-21 with a molecular probe leads to the separation of 6-fluorescein-phosphoramidite-modified Au NPs from GO, resulting in a decrease in the Raman signal, while EpCAM recognition reduces circular dichroism (CD) signals. The CD signals reverse from negative in original assemblies into positive when reacted with cells, which correlates with two enantiomer geometries. The EpCAM detection has a good linear range of 8.47-74.78 pg mL and a limit of detection (LOD) of 3.63 pg mL , whereas miR-21 detection displays an outstanding linear range of 0.07-13.68 amol ng and LOD of 0.03 amol ng . All the results are in good agreement with those of the Raman and confocal bioimaging. The strategy opens up an avenue to allow the highly accurate and reliable diagnosis (dual targets) of clinic diseases.
用于活细胞中生物应用的纳米材料组装体引起了广泛关注。在此,通过一段拼接 DNA 链驱动氧化石墨烯(GO)-金纳米粒子(Au NP)组装体,该 DNA 链的两端设计有两个区域,与 GO 和 Au NPs 表面锚定的 DNA 序列互补。在 microRNA(miR)-21 和上皮细胞黏附分子(EpCAM)存在的情况下,miR-21 与分子探针的杂交导致 6-荧光素-磷酰胺修饰的 Au NPs 从 GO 上分离,导致拉曼信号降低,而 EpCAM 识别则降低圆二色性(CD)信号。当与细胞反应时,CD 信号从原始组装体的负向变为正向,这与两种对映体几何形状相关。EpCAM 的检测具有 8.47-74.78 pg mL 的良好线性范围和 3.63 pg mL 的检测限(LOD),而 miR-21 的检测具有 0.07-13.68 amol ng 的出色线性范围和 0.03 amol ng 的 LOD。所有结果均与拉曼和共聚焦生物成像的结果吻合良好。该策略为临床疾病的高度准确和可靠诊断(双重靶标)开辟了一条途径。