Sun Jingbo, Long Tiantian, Chen Zihan, Luo Hongmei, Cao Jiafeng, Xu Dong, Yuan Zhiqin
National Engineering Laboratory for Rice and By-products Further Processing, College of Food Science and Engineering, Central South University of Forestry & Technology, Changsha, 410004, China.
National Engineering Laboratory for Rice and By-products Further Processing, College of Food Science and Engineering, Central South University of Forestry & Technology, Changsha, 410004, China.
Anal Chim Acta. 2025 Jan 22;1336:343524. doi: 10.1016/j.aca.2024.343524. Epub 2024 Dec 5.
The rapid and sensitive detection of nitrite is important to human health protection due to its carcinogenic and teratogenic risks with excessive intake. The Griess assay is widely applied for the design of nitrite detection system. However, its relatively slow reaction kinetics and sole colorimetry mode might limit it's the sensitivity and practical application. Therefore, it is highly desirable to explore new detection method with rapid kinetics and multi-mode recognition characters.
We report a rapid and colorimetry and fluorimetry dual-mode sensing of nitrite by using N-(1-naphthalene)-ethylenediamine-derivated carbon dots (NETH-CDs) as the reporters. NETH-CDs show maximum excitation and emission around 359 nm and 431 nm, accompanying with a quantum yield of 27.1 %. The carbonization of NETH not only increases the fluorescence sensing mode, but also promotes the nanointerfacial Griess assay reaction kinetics within 1 min. High selectivity of dual-mode sensing is exhibited due to the specific reaction. The linear ranges in colorimetry and fluorimetry modes are 0.2-100 μM, and the corresponding limit of detection values are determined to be 0.10 and 0.08 μM, respectively. In addition, the accurate nitrite analysis in urine and serum samples with NETH-CDs nanoprobes. Moreover, the visual nitrite detection is achieved based on NETH-CD-loaded test strips.
This work reports a new dual mode nitrite detection method for the first time by NETH-CDs supported ultrafast interfacial Griess assay, it not only explores sensitive nitrite detection probe, but also provides deep understanding of the relationship between chemical reaction kinetics and interfacial interaction on nanosurface. We believe our findings would benefit the exploration of rapid and sensitive detection systems toward various targets by regulating interfacial chemistry.
由于过量摄入亚硝酸盐具有致癌和致畸风险,因此对其进行快速灵敏的检测对于保护人类健康至关重要。格里斯试剂法广泛应用于亚硝酸盐检测系统的设计。然而,其相对较慢的反应动力学和单一的比色法模式可能会限制其灵敏度和实际应用。因此,非常有必要探索具有快速动力学和多模式识别特性的新检测方法。
我们报道了一种以N-(1-萘基)-乙二胺衍生的碳点(NETH-CDs)作为报告分子的快速比色法和荧光法双模式检测亚硝酸盐的方法。NETH-CDs在359nm和431nm左右显示出最大激发和发射,量子产率为27.1%。NETH的碳化不仅增加了荧光传感模式,还在1分钟内促进了纳米界面格里斯试剂法反应动力学。由于特定反应,该双模式传感具有高选择性。比色法和荧光法模式的线性范围均为0.2-100μM,相应的检测限分别确定为0.10和0.08μM。此外,使用NETH-CDs纳米探针可对尿液和血清样本中的亚硝酸盐进行准确分析。此外,可以基于负载NETH-CD的试纸实现亚硝酸盐的可视化检测。
这项工作首次报道了一种基于NETH-CDs支持的超快界面格里斯试剂法新的双模式亚硝酸盐检测方法;它不仅探索了灵敏的亚硝酸盐检测探针,还深入了解了化学反应动力学与纳米表面界面相互作用之间的关系。我们相信,我们的发现将有助于通过调节界面化学来探索针对各种目标的快速灵敏检测系统。