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Target-Cell-Specific Fluorescence Silica Nanoprobes for Imaging and Theranostics of Cancer Cells

机译:用于癌细胞成像和治疗的靶细胞特异性荧光二氧化硅纳米探针

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MicroRNAs (miRNAs) has been identified as diagnostic and prognostic biomarkers and predictors of drug response for many diseases, including a broad range of cancers, heart disease, and neurological diseases. The noninvasive theranostics system for miRNAs is very important for diagnosis and therapy of the cellular disease. Herein, a target-cell-specific theranostics nanoprobe for target-cell-specific delivery, cancer cells and intracellular miRNA-21 imaging, and cancer cell growth inhibition was proposed. The nanoprobe (FS-AS/MB) was prepared by simultaneously coupling of the AS1411 aptamer and miRNA-21 molecular beacon (miR-21-MB) onto the surface of Ru(bpy)_3~(2+)-encapsulated silica (FS) nanoparticles. The FS nanoparticles synthesized by a facile reverse microemulsion method showed nearly monodisperse spherical shape with a smooth surface, good colloidal stability, a fluorescence quantum yield of ~21%, and low cytotoxicity. The antibiofouling polymer PEG grafted onto a silica shell reduced nonspecific uptake of cells. The ability of FS-AS/MB for target-specific cells delivery, simultaneous cancer cells, intracellular miRNA-21 imaging, and inhibition of miRNA-21 function and suppression of cell growth in vitro, were also demonstrated. The results of the present study suggested that the proposed nanoprobes would be a promising theranostics for different cancers by imaging and inhibiting other intracellular genes.
机译:MicroRNA(miRNA)已被确定为许多疾病的诊断和预后生物标志物以及药物反应的预测因子,包括广泛的癌症,心脏病和神经系统疾病。 miRNA的无创治疗学系统对于细胞疾病的诊断和治疗非常重要。在本文中,提出了用于靶细胞特异性递送,癌细胞和细胞内miRNA-21成像以及癌细胞生长抑制的靶细胞特异性治疗学纳米探针。通过将AS1411适体和miRNA-21分子信标(miR-21-MB)同时偶联到Ru(bpy)_3〜(2+)包封的二氧化硅(FS)表面上来制备纳米探针(FS-AS / MB) )纳米粒子。通过简便的反向微乳液法合成的FS纳米颗粒具有接近单分散的球形,表面光滑,胶体稳定性好,荧光量子产率约为21%,细胞毒性低。接枝到二氧化硅壳上的抗污垢聚合物PEG减少了细胞的非特异性摄取。还证明了FS-AS / MB用于靶标特异性细胞递送,同步癌细胞,细胞内miRNA-21成像以及miRNA-21功能抑制和体外细胞生长抑制的能力。本研究的结果表明,通过成像和抑制其他细胞内基因,拟议的纳米探针将是一种针对不同癌症的有前途的治疗学。

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