Related Experiment Video
Updated: Jan 11, 2026

Author Spotlight: Development of a Smartphone-Enhanced Paper-Based Device for Rapid Dengue NS1 Detection
Published on: January 26, 2024
Ultra-small manganese dioxide nanozyme-packaged aptameric DNA hydrogel for highly sensitive xanthine detection
Mengzhu Zhang1, Mei Han1, Rui Su1
1State Key Laboratory of Inorganic Synthesis and Preparative Chemistry, College of Chemistry, Jilin University, Changchun, 130012, China.
None:
Herein, a biosensor was constructed based on ultra-small manganese dioxide (MnO2) nanozyme-encapsulated aptameric DNA hydrogel (MnO2@DNA hydrogel) for the sensitive and portable detection of xanthine (XA). This DNA hydrogel was fabricated via complementary base pairing-mediated self-assembly. Upon the binding of XA to the aptamer, the aptamer undergoes a conformational change, which reduces cross-linking density of DNA hydrogel and thereby facilitates the release of pre-encapsulated MnO2 nanozymes. These nanozymes exhibited oxidase-like activity, enabling the oxidation of ABTS into a measurable quantifiable signal. The biosensor demonstrated a linear detection range of 0.01-50 μM for XA, with a low limit of detection of 4.68 × 10-3 μM. Notably, it showed excellent specificity toward interfering substances. More importantly, the proposed sensor exhibited reliable performance in biological samples, with recoveries ranging from 98.50 % to 105.70 %. and relative standard deviations below 6 %. Smartphone-assisted detection, which quantified signals through extracted RGB/HSV parameters, correlated well with ultraviolet-visible spectroscopy results. Compared to ultraviolet-visible spectroscopy-based detection methodologies, the smartphone-assisted approach, while exhibiting marginally lower sensitivity, enabled rapid on-site testing. This platform thus provides a promising tool for ultra-sensitive detection of XA in clinical diagnostics and resource-constrained settings.

