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Updated: May 5, 2026

Nanosensors to Detect Protease Activity In Vivo for Noninvasive Diagnostics
Published on: July 16, 2018
A Diffusion-Driven Chromogenic Reagent-Free Viscosity-Based Sensor with Dual Signals for the Visual Detection of
Yanhui Bi1,2,3, Mei Zhao1,2, Wenli Wu1,2
1Qilu University of Technology (Shandong Academy of Sciences), Shandong Analysis and Test Center, Jinan, Shandong 250014, China.
Abstract:
Point-of-care testing (POCT) requires simple and cost-effective strategies to enhance reliability and practicality. Here, a state-of-the-art, dual-mode viscosity-based sensor (DM vis-sensor) is developed by leveraging the diffusion-driven viscosity differentiation on the mesoporous membrane. The rapid and visual detection of hyaluronidase (HAase) is demonstrated as a model. The sensor exploits the enzymatic cleavage of hyaluronic acid (HA) by HAase, which reduces solution viscosity, thereby altering the solution diffusion pattern on the mesoporous membrane. High-viscosity HA solutions form small and dark diffusion spots with short diameters and low grayscale ratio (GR) values, while HAase-treated HA solutions yield large and light diffusion spots with long diameters and high GR values. This dual-mode sensor, which combines distance and color readouts, enables intuitive and instrument-free detection of HAase without the need of chromogenic agents. It demonstrates high sensitivity to HAase, with detection limits of 0.12 U/mL (distance-based readout) and 0.16 U/mL (grayscale-based readout). Additionally, it is successfully validated through the quantification of HAase in human urine samples. Notably, its simplicity, low cost, and dual-readout reliability make it a promising POCT tool for early diagnosis and monitoring, especially in resource-limited settings. Therefore, this work highlights the potential of the development of dual-mode viscosity-based sensors for POCT applications.

