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Chemical-Sensing Catheters for Long-Term and Personalized Therapeutic Management.

Created on 22 Jul 2026

Authors

Yiran Li, Xinyin Cao, Qianming Li, Xinyu Liu, Haifeng Sun, Yiding Jiao, Guanheng Huang, Linfeng Han, Jiang Lu, Kuangyi Zou, Dan Li, Wenxuan Guo, Tingting Ye, Jiacheng Wang, Er He, Fangyan Li, Yuanzhen Wang, Shuo Yang, Chenyu Bai, Jie Song, Xusong Li, Hanting Zhang, Haidong Wang, Yuxia Zhang, Ye Zhang

Published in

Advanced materials (Deerfield Beach, Fla.). Pages e74221. Jul 22, 2026. Epub Jul 22, 2026.

Abstract

Long-term intravenous catheterization is vital for delivering chemotherapy to cancer patients and parenteral nutrition to those with intestinal failure, but it inevitably leads to complications, including metabolic disorders, bloodstream infection, liver injury, and kidney injury. Clinical monitoring methods show notable delays, while real-time blood monitoring devices fail to ensure long-term stability in vivo. Here, we present a chemical-sensing catheter that integrates multiple analyte sensors, including creatinine, taurocholic acid, bilirubin, and taurine, for real-time monitoring of complications in patients receiving long-term chemotherapy or parenteral nutrition in situ. The design of the metalgel preserves signal integrity through 1 million bending deformations, and a dual-network molecularly imprinted polymer suppresses in vivo performance degradation, enabling stable long-term operation of the chemical-sensing catheter over a 3 month implantation period. In chemotherapy and parenteral nutrition applications, early monitoring of liver and kidney injury, combined with prognostic intervention, mitigates risks such as bile stasis, hepatitis, and hepatic steatosis. With the integration of machine learning analysis of multimodal sensor data, this technology provides early prediction of complications and establishes a new paradigm for personalized therapeutic management.

PMID:
42484513
Bibliographic data and abstract were imported from PubMed on 22 Jul 2026.

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