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◆ ACS measurement science au2026-08-19

β‑Anomeric Mannopentaose-Based Nonenzymatic NIR Glucose Sensor Enabling Cost-Effective Continuous Monitoring.

Sayantan Tripathy, Diana Al Husseini, Carolina I Martinez, Anthony Dongchau, Samyucktha Ganesapandian, Melissa A Grunlan, Gerard L Cote

原始摘要(英文原文)· Original abstract
In this study, we present a novel, fully injectable, nonenzymatic glucose biosensing platform that uses NIR fluorescence from a PEGylated-ConA and Cy5.5-β-mannopentaose complex to achieve highly sensitive and stable detection. The proof-of-concept assay is designed for high sensitivity, long-term stability, a small size to permit injectability or minimal invasiveness, suitability across all skin tones, and cost-effectiveness. As a control, an analogous assay was prepared with the α-anomeric form (i.e., Cy5.5-α-mannopentaose), which is 10X costlier. Using fluorescence anisotropy, a computational model was developed to optimize the concentration ratios of assay components for sensitive glucose detection within the physiological range. Both conjugates demonstrated comparable responsiveness across physiological glucose concentrations, with Cy5.5-β-mannopentaose exhibiting a broader dynamic range (25-400 mg/dL) in buffer and comparable binding affinity. In addition, performance was validated in artificial interstitial fluid with Cy5.5-β-mannopentaose showing reproducible solvatochromism across the full blood glucose range (25-400 mg/dL), with strong responsiveness maintained within the physiologically relevant subcutaneous window. To further validate its ability to be housed in a membrane carrier, the Cy5.5-β-mannopentaose solution was placed in the cavity of a hollow hydrogel rod with known antifouling properties and mesh size, and >94% was retained over a 7-day period. These results establish β-mannopentaose as a promising low-cost ligand for ConA-based glucose sensing systems and support its potential use in the future development of minimally invasive and scalable glucose sensing approaches.
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β‑Anomeric Mannopentaose-Based Nonenzymatic NIR Glucose Sensor Enabling Cost-Effective Continuous Monitoring. — 科研速览 Science Skim