亚细胞定位
线粒体
分子成像
原位
信号(编程语言)
化学
分子探针
核糖体RNA
生物物理学
相关
计算生物学
细胞生物学
蛋白质亚细胞定位预测
生物
活体细胞成像
荧光寿命成像显微镜
光谱成像
模块化设计
功能成像
图像分辨率
计算机科学
作者
Xueyan Feng,Deyu Yi,Lele Li,Mengyuan Li
摘要
Despite significant advances in DNA-based signal amplification strategies for sensitive molecular imaging in live cells, achieving subcellular resolution remains challenging due to limited spatial precision. Here, we present a subcellular tandem-regulated, spatially selective signal amplification technology for molecular imaging in mitochondria. This platform integrates ribosomal RNA (rRNA)-activated target-aptamer recognition with enzyme-mediated cascade signal amplification, enabling in situ imaging of ATP within defined subcellular compartments (e.g., mitochondria) or membraneless regions (e.g., cytosol). The system facilitates in situ monitoring of ATP dynamics during drug intervention with enhanced spatial precision and sensitivity. Furthermore, by re-engineering the cascade-regulated sensor, we extended this approach to enable correlated imaging of mitochondrial ATP and microRNA. This strategy offers a powerful, modular tool for probing energy metabolism and regulatory networks across different subcellular environments.
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