Department of Chemistry, National University of Singapore, 3 Science Drive 3, Singapore 117543, Singapore.
National University of Singapore Graduate School, Integrative Sciences and Engineering Programme (ISEP), National University of Singapore, University Hall, Tan Chin Tuan Wing, 21 Lower Kent Ridge Road, No. 04-02, Singapore 119077, Singapore.
Anal Chem. 2021 Sep 7;93(35):12081-12089. doi: 10.1021/acs.analchem.1c02385. Epub 2021 Aug 26.
Precise detection of cancer-related mRNAs can significantly benefit the early diagnosis and potential therapy of cancers. Herein, we report organic dark quencher-encapsulated surface-cross-linked micelles (SCMs) as a new sort of nanoquencher for construction of potential multiple-color fluorescence imaging nanosensors. Such nanoquenchers featured simple preparation (one-pot), broad-spectrum quenching (450-800 nm), high quenching efficiency (>94%), good stability, negligible cargo leakage, facile covalent surface modification, and finally excellent modularity. As a proof-of-concept demonstration, a mRNA-detecting SCM nanosensor was generated, capable of simultaneous live-cell imaging of endogenous actin mRNA (a house-keeping gene) and cancer-related survivin mRNA. This nanosensor was found to be GSH- and DNase I-resistant, and with actin mRNA as an intrinsic reference, it was used to image the precise survivin mRNA expression across different mammalian cells through convenient normalization of the signal readouts. Moreover, the nanosensor was further used to quantitatively image the downregulation of endogenous survivin mRNA in HeLa cells upon treatment of YM155 (an imidazolium bioactive compound known to suppresses endogenous survivin mRNA expression). These results clearly demonstrated the promising application of these SCMs as new nanoquenchers in potential multicolor imaging of various endogenous biomarkers.
精确检测与癌症相关的 mRNAs 可以显著促进癌症的早期诊断和潜在治疗。在此,我们报告了一种新型纳米猝灭剂——有机暗猝灭剂包封的表面交联胶束(SCMs),用于构建潜在的多色荧光成像纳米传感器。这种纳米猝灭剂具有简单的制备方法(一锅法)、广谱猝灭(450-800nm)、高猝灭效率(>94%)、良好的稳定性、几乎没有货物泄漏、易于共价表面修饰,最终具有优异的模块性。作为概念验证的演示,我们构建了一种可以同时对细胞内源性肌动蛋白 mRNA(管家基因)和与癌症相关的生存素 mRNA 进行实时细胞成像的 mRNA 检测 SCM 纳米传感器。该纳米传感器具有 GSH 和 DNase I 抗性,并且由于肌动蛋白 mRNA 作为内参,通过方便地对信号读数进行归一化,可以用于对不同哺乳动物细胞中精确的生存素 mRNA 表达进行成像。此外,该纳米传感器还用于定量成像 YM155(一种已知能抑制内源性生存素 mRNA 表达的咪唑生物活性化合物)处理 HeLa 细胞后内源性生存素 mRNA 的下调。这些结果清楚地表明,这些 SCMs 作为新型纳米猝灭剂,有望应用于各种内源性生物标志物的潜在多色成像。