School of Chemistry and Chemical Engineering, Jiangsu University, Zhenjiang, China.
Institute of Theoretical and Computational Chemistry, Key Laboratory of Mesoscopic Chemistry of MOE, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing, China.
Luminescence. 2023 Nov;38(11):1968-1976. doi: 10.1002/bio.4589. Epub 2023 Sep 14.
Broadly, the industrial applications of hydrazine cause environmental pollution and damage to living organisms because of the high toxicity of hydrazine. Therefore, monitoring hydrazine in the environmental system is of great significance to human health. Here, a new fluorescent probe PC-N H based on corrole dye was developed for the detection of hydrazine that had excellent specificity, low limit of detection (LOD: 88 nM), and a wide pH range (6-12). Upon addition of hydrazine into the probe solution, the strong red fluorescence was 'turned on' centred at 653 nm with a 127-fold fluorescence intensity enhancement. The detection mechanism was proved using ESI-MS, H NMR, and density functional theoretical calculations. Importantly, the probe was utilized to fabricate a ready-to-use test strip to realize the visual inspection of hydrazine. Furthermore, PC-N H was successfully applied for practical detection of hydrazine in water samples with satisfactory recoveries ranging from 96.2% to 105.0%, and indicating that the designed PC-N H is highly promising for hydrazine detection in an aqueous environment. Considering the diverse toxicological functions of hydrazine, PC-N H was also successfully used to image exogenous hydrazine in HeLa cells and zebrafish.
总的来说,由于联氨的高毒性,其在工业上的应用会导致环境污染和对生物体的损害。因此,监测环境系统中的联氨对人类健康具有重要意义。在这里,开发了一种基于卟啉染料的新型荧光探针 PC-NH 用于检测联氨,该探针具有出色的特异性、低检测限(LOD:88 nM)和较宽的 pH 范围(6-12)。向探针溶液中加入联氨后,以 653nm 为中心的强红光荧光“开启”,荧光强度增强了 127 倍。通过 ESI-MS、 1 H NMR 和密度泛函理论计算证明了检测机制。重要的是,该探针被用于制备即用型测试条,以实现对联氨的目视检查。此外,PC-NH 成功地用于水样中实际检测联氨,回收率在 96.2%至 105.0%之间,表明设计的 PC-NH 非常有希望用于水环境中的联氨检测。考虑到联氨的多种毒理学功能,PC-NH 还成功地用于 HeLa 细胞和斑马鱼中外源联氨的成像。