Wei Wei, Zhang Yiyi, Yang Fan, Zhou Liping, Zhang Yufan, Wang Yeyu, Yang Shuangshuang, Li Jinze, Dong Haifeng
Marshall Laboratory of Biomedical Engineering, Shenzhen Key Laboratory for Nano-Biosensing Technology, School of Biomedical Engineering, Shenzhen University Medical School, Shenzhen University 518060 Guangdong China
Beijing Key Laboratory for Bioengineering and Sensing Technology, School of Chemistry and Bioengineering, University of Science and Technology Beijing 30 Xueyuan Road 100083 Beijing China.
Chem Sci. 2023 Apr 20;14(20):5503-5509. doi: 10.1039/d3sc00563a. eCollection 2023 May 24.
Multiplexed microRNA (miRNA) profiling of more than four types in living cells is challenging due to fluorescent spectral overlap, representing a significant limitation in studying the complex interactions related to the occurrence and development of diseases. Herein, we report a multiplexed fluorescent imaging strategy based on an orthometric multicolor encoded hybridization chain reaction amplifier named multi-HCR. The targeting miRNA can trigger this multi-HCR strategy due to the specific sequence recognition, and then its self-assembly to amplify the programmability signals. We take the four-colored chain amplifiers, showing that the multi-HCR can form 15 combinations simultaneously. In a living process of hypoxia-induced apoptosis and autophagy under complicated mitochondria and endoplasmic reticulum stress, the multi-HCR demonstrates excellent performance in detecting eight different miRNA changes. The multi-HCR provides a robust strategy for simultaneously profiling multiplexed miRNA biomarkers in studying complicated cellular processes.
由于荧光光谱重叠,对活细胞中四种以上类型的多重微小RNA(miRNA)进行分析具有挑战性,这在研究与疾病发生和发展相关的复杂相互作用方面是一个重大限制。在此,我们报告了一种基于正交多色编码杂交链式反应放大器(名为multi-HCR)的多重荧光成像策略。由于特定的序列识别,靶向miRNA可以触发这种multi-HCR策略,然后其自组装以放大可编程信号。我们采用四色链放大器,表明multi-HCR可以同时形成15种组合。在复杂的线粒体和内质网应激下缺氧诱导的细胞凋亡和自噬的生命过程中,multi-HCR在检测八种不同的miRNA变化方面表现出优异的性能。multi-HCR为在研究复杂细胞过程中同时分析多重miRNA生物标志物提供了一种强大的策略。