Related Experiment Video
Updated: Jan 7, 2026

Open-Source Miniature Fluorimeter to Monitor Real-Time Isothermal Nucleic Acid Amplification Reactions in Resource-Limited Settings
Published on: February 3, 2021
Apt-Nanogel-Kit for Real-Time Quantitative Monitoring of the Released H2O2 from Living Cells and Point-of-Care
1College of Chemistry and Molecular Engineering, Nanjing Tech University, Nanjing 211816, China.
Abstract:
Hydrogen peroxide (H2O2) is a key redox signaling molecule that plays a vital regulatory role in diverse physiological processes. However, existing tools for near-real-time H2O2 detection are often constrained by limited applicability in dynamic biological environments. To address these challenges, we developed a point-of-care aptamer-functionalized nanozyme-hydrogel kit (Apt-ngel-kit) that integrates nanozyme-based homogeneous catalytic fluorescence with digital signal processing, enabling highly sensitive, quantitative, and near-real-time monitoring of in situ H2O2 secretion. The system leverages the exceptional enzymatic activity of ferromanganese silicate nanozymes (FMSN), which were immobilized in a polyacrylamide hydrogel coloaded with the catalytic substrate o-Phenylenediamine (OPD) to create a homogeneous, stable, and reproducible catalytic nanoplatform. Furthermore, to detect the near-real-time secretion of H2O2 within cells, we conjugated Apt to the nanogel surface to improve the biocompatibility of the Apt-ngel-kit. It is noteworthy that this system not only achieves an ultralow in situ detection limit of 8.32 × 10-23 M, but also quantifies H2O2 released by individual cells and distinguishes the secretion characteristics between cancer patients and healthy individuals, demonstrating its potential as a rapid and effective tool for early disease diagnosis.
More Related Videos
11:20An Integrated System to Remotely Trigger Intracellular Signal Transduction by Upconversion Nanoparticle-mediated Kinase Photoactivation
Published on: August 30, 2017
08:57Simultaneous Measurement of Superoxide/Hydrogen Peroxide and NADH Production by Flavin-containing Mitochondrial Dehydrogenases
Published on: February 24, 2018