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Folate Receptor-Targeting Gold Nanoclusters as Fluorescence Enzyme Mimetic Nanoprobes for Tumor Molecular Colocalization Diagnosis

机译:叶酸受体靶向金纳米团簇作为荧光酶模拟纳米探针的肿瘤分子共定位诊断。

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Nanoprobes with enzyme-like properties attracted a growing interest in early screening and diagnosis of cancer. To achieve high accuracy and specificity of tumor detection, the design and preparation of enzyme mimetic nanoprobes with high enzyme activity, tumor targeting and excellent luminescence property is highly desirable. Herein, we described a novel kind of fluorescence enzyme mimetic nanoprobe based on folate receptor-targeting Au nanoclusters. The nanoprobes exhibited excellent stability, low cytotoxicity, high fluorescence and enzyme activity. We demonstrated that the nanoprobes could be used for tumor tissues fluorescence/visualizing detection. For the same tumor tissue slice, the nanoprobes peroxidase staining and fluorescent staining were obtained simultaneously, and the results were mutually complementary. Therefore, the fluorescence enzyme mimetic nanoprobes could provide a molecular colocalization diagnosis strategy, efficiently avoid false-positive and false-negative results, and further improve the accuracy and specificity of cancer diagnoses. By examining different clinical samples, we demonstrated that the nanoprobes could distinguish efficiently cancerous cells from normal cells, and exhibit a clinical potential for cancer diagnosis.
机译:具有酶样性质的纳米探针在癌症的早期筛查和诊断中引起了越来越多的兴趣。为了实现肿瘤检测的高精度和特异性,非常需要设计和制备具有高酶活性,肿瘤靶向性和优异的发光性质的酶模拟纳米探针。在这里,我们描述了一种新型的基于叶酸受体的金纳米簇的荧光酶模拟纳米探针。纳米探针表现出优异的稳定性,低细胞毒性,高荧光和酶活性。我们证明了纳米探针可用于肿瘤组织的荧光/可视化检测。对于相同的肿瘤组织切片,同时获得了纳米探针过氧化物酶染色和荧光染色,并且结果是相互补充的。因此,荧光酶模拟纳米探针可以提供分子共定位诊断策略,有效避免假阳性和假阴性结果,进一步提高癌症诊断的准确性和特异性。通过检查不同的临床样本,我们证明了纳米探针可以有效地将癌细胞与正常细胞区分开,并具有临床诊断癌症的潜力。

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