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Updated: Jan 14, 2026

Dual-modality Molecular Cartography: Integrating Multiplex mRNA Detection with Protein Imaging Mass Cytometry
Published on: November 14, 2025
Valence-Manipulated Coordination MOF-Based Probes for Multidimensional Point-of-Care Diagnosis
Xuewen Peng1, Niu Feng1, Yongkun Zhao1
1College of Food Science and Technology, Huazhong Agricultural University, Wuhan 430070, China.
Abstract:
Accurate diagnosis of disease is crucial for high-quality healthcare services. Biosensors based on colorimetric signals made efforts to rapidly and accurately analyze clinical biosamples. Herein, a microfluidic chip for multicategory marker diagnostics is presented as a platform for the in situ synthesis of MOF-Assisted Reduced Snowflake-like copper nanoparticles (MARS-Cu). MARS-Cu can be rapidly synthesized in 40 s at room temperature and atmospheric pressure and possesses the property of "reversibility" with valence manipulation. The versatile, rapid (approximately 25 min), and multicategory determination of procalcitonin and ascorbic acid using a MARS-Cu-based sensor in a microfluidic chip has been achieved for the accurate assessment of sepsis. The diagnostic accuracy of sepsis was increased from 84.3% using the procalcitonin indicator to 100% using two clinical indicators. The strategy implements "one-chip operation" and "multi-category analysis" and effectively serves as a robust tool and timely strategy for clinical diagnostics and ensuring public health safety.

