Tianjin Key Laboratory of Industrial Microbiology, Tianjin University of Science and Technology, No.29 of 13th Street, TEDA, Tianjin, 300457, PR China.
Talanta. 2024 Dec 1;280:126724. doi: 10.1016/j.talanta.2024.126724. Epub 2024 Aug 20.
The identification of phosphates holds significant importance in many physiological processes and disease diagnosis, and traditional detection techniques struggle to simultaneously detect and distinguish phosphates. The complexity of synthesizing sensing units restricts the construction of sensor arrays as well. In this study, a bifunctional dicopper chloride trihydroxide (CuCl(OH)) nanozyme with conspicuous laccase- and peroxidase-like activities has been synthesized in basic deep eutectic solvents (DES). Exploiting the various regulatory impacts of multiple phosphates on the dual-enzyme mimicking activities, the sensor array based on the laccase mimic and peroxidase mimic properties of CuCl(OH) was designed, which has been successfully harnessed for the identification of eight phosphates (ATP, ADP, AMP, PPi, Pi, GTP, GDP, and GMP). This approach streamlines the creation of sensor arrays. Besides, the three simulated actual samples (healthy individuals, moderately ill patients, and severely ill patients) have been accurately distinguished. This work makes a substantial contribution to enhancing the highly effective construction of array channels and promoting discrimination of phosphates in intricate samples.
在许多生理过程和疾病诊断中,磷酸盐的鉴定都具有重要意义,而传统的检测技术难以同时检测和区分磷酸盐。合成传感单元的复杂性也限制了传感器阵列的构建。在这项研究中,在碱性深共晶溶剂(DES)中合成了具有明显漆酶和过氧化物酶样活性的双功能二氯化铜三羟基(CuCl(OH))纳米酶。利用多种磷酸盐对双酶模拟活性的各种调节影响,设计了基于 CuCl(OH)漆酶模拟和过氧化物酶模拟特性的传感器阵列,该阵列已成功用于鉴定八种磷酸盐(ATP、ADP、AMP、PPi、Pi、GTP、GDP 和 GMP)。这种方法简化了传感器阵列的创建。此外,还可以准确地区分三个模拟实际样本(健康个体、中度病患者和重病患者)。这项工作为增强高效构建阵列通道和促进复杂样本中磷酸盐的鉴别做出了重要贡献。