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An Optical Urate Biosensor Based on Urate Oxidase and Long-Lifetime Metalloporphyrins

机译:基于尿酸氧化酶和长寿命金属卟啉的光尿生物传感器

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摘要

Gout is a condition that affects over 8 million Americans. This condition is characterized by severe pain, and in more advanced cases, bone erosion and joint destruction. This study explores the fabrication and characterization of an optical, enzymatic urate biosensor for gout management, and the optimization of the biosensor response through the tuning of hydrogel matrix properties. Sensors were fabricated through the co-immobilization of oxygen-quenched phosphorescent probes with an oxidoreductase within a biocompatible copolymer hydrogel matrix. Characterization of the spectral properties and hydrogel swelling was conducted, as well as evaluation of the response sensitivity and long-term stability of the urate biosensor. The findings indicate that increased acrylamide concentration improved the biosensor response by yielding an increased sensitivity and reduced lower limit of detection. However, the repeatability and stability tests highlighted some possible areas of improvement, with a consistent response drift observed during repeatability testing and a reduction in response seen after long-term storage tests. Overall, this study demonstrates the potential of an on-demand, patient-friendly gout management tool, while paving the way for a future multi-analyte biosensor based on this sensing platform.
机译:痛风是影响超过800万美国人的条件。这种情况的特征在于严重疼痛,并且在更先进的情况下,骨腐蚀和联合破坏。该研究探讨了用于痛风管理的光学,酶促尿剂生物传感器的制造和表征,以及通过调谐水凝胶基质特性的生物传感器响应的优化。通过在生物相容性共聚物水凝胶基质中与氧化还原酶共固化氧猝灭磷光探针来制造传感器。进行光谱性能和水凝胶溶胀的表征,以及评估尿液生物传感器的响应敏感性和长期稳定性。结果表明,通过产生增加的灵敏度和降低的检测限来,增加的丙烯酰胺浓度提高了生物传感器响应。然而,可重复性和稳定性测试突出了一些可能的改进区域,在重复性测试期间观察到一致的响应漂移,并且在长期存储测试之后看到的响应的减少。总体而言,这项研究表明,按需,患者友好的痛风管理工具的潜力,同时铺平了基于该传感平台的未来多分析物生物传感器的方式。

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