2023•Chemical CommunicationsOpen access

A separable nanodevice enables multilayer imaging of diverse biomarkers for precise diagnosis

Sha Yu, Yao Sun, Jingyi Cai, Yuanzhen Zhou, Jun‐Jie Zhu

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Abstract

An acid-driven separable nanodevice based on a pH-sensitive structure and the like-catalytic hairpin assembly-assisted target amplification strategy for in situ multilayer imaging of extracellular pH and cytoplasmic miR-125a with high sensitivity.

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An acid-driven separable nanodevice based on a pH-sensitive structure and the like-catalytic hairpin assembly-assisted target amplification strategy for in situ multilayer imaging of extracellular pH and cytoplasmic miR-125a with high sensitivity.

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Available abstract

An acid-driven separable nanodevice based on a pH-sensitive structure and the like-catalytic hairpin assembly-assisted target amplification strategy for in situ multilayer imaging of extracellular pH and cytoplasmic miR-125a with high sensitivity.

Key concepts: Nanodevice, Separable space, Extracellular, Nanotechnology, Intracellular, Materials science, Computer science, Chemistry

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